id	sid	tid	token	lemma	pos
can-567	1	1	characterization	characterization	NOUN
can-567	1	2	and	and	CCONJ
can-567	1	3	application	application	NOUN
can-567	1	4	of	of	ADP
can-567	1	5	nanomaterials	nanomaterial	NOUN
can-567	1	6	(	(	PUNCT
can-567	1	7	2020	2020	NUM
can-567	1	8	)	)	PUNCT
can-567	1	9	volume	volume	NOUN
can-567	1	10	3	3	NUM
can-567	1	11	issue	issue	NOUN
can-567	1	12	2	2	NUM
can-567	1	13	doi:10.24294	doi:10.24294	NOUN
can-567	1	14	/	/	SYM
can-567	1	15	can.v3i2.567	can.v3i2.567	PROPN
can-567	1	16	49	49	NUM
can-567	1	17	original	original	ADJ
can-567	1	18	research	research	NOUN
can-567	1	19	article	article	NOUN
can-567	1	20	effect	effect	NOUN
can-567	1	21	of	of	ADP
can-567	1	22	heating	heating	NOUN
can-567	1	23	and	and	CCONJ
can-567	1	24	resistance	resistance	NOUN
can-567	1	25	on	on	ADP
can-567	1	26	emission	emission	NOUN
can-567	1	27	properties	property	NOUN
can-567	1	28	of	of	ADP
can-567	1	29	carbon	carbon	NOUN
can-567	1	30	nanotubes	nanotube	NOUN
can-567	1	31	sergey	sergey	PROPN
can-567	1	32	v.	v.	ADP
can-567	1	33	bulyarskiy	bulyarskiy	PROPN
can-567	1	34	1	1	NUM
can-567	1	35	*	*	NOUN
can-567	1	36	,	,	PUNCT
can-567	1	37	alexander	alexander	PROPN
can-567	1	38	a.	a.	PROPN
can-567	1	39	dudin	dudin	VERB
can-567	1	40	1	1	NUM
can-567	1	41	,	,	PUNCT
can-567	1	42	alexander	alexander	PROPN
can-567	1	43	v.	v.	PROPN
can-567	1	44	lakalin	lakalin	PROPN
can-567	1	45	1	1	NUM
can-567	1	46	,	,	PUNCT
can-567	1	47	andrey	andrey	PROPN
can-567	1	48	p.	p.	NOUN
can-567	1	49	orlov	orlov	PROPN
can-567	1	50	1	1	NUM
can-567	1	51	,	,	PUNCT
can-567	1	52	alexander	alexander	PROPN
can-567	1	53	a.	a.	PROPN
can-567	1	54	pavlov	pavlov	PROPN
can-567	1	55	1	1	NUM
can-567	1	56	,	,	PUNCT
can-567	1	57	roman	roman	ADJ
can-567	1	58	m.	m.	NOUN
can-567	1	59	ryazanov	ryazanov	PROPN
can-567	1	60	2	2	NUM
can-567	1	61	,	,	PUNCT
can-567	1	62	artemiy	artemiy	PROPN
can-567	1	63	a.	a.	NOUN
can-567	1	64	shamanaev	shamanaev	NOUN
can-567	1	65	2	2	NUM
can-567	1	66	1	1	NUM
can-567	1	67	institute	institute	NOUN
can-567	1	68	of	of	ADP
can-567	1	69	nanotechnology	nanotechnology	PROPN
can-567	1	70	of	of	ADP
can-567	1	71	microelectronics	microelectronic	NOUN
can-567	1	72	of	of	ADP
can-567	1	73	the	the	DET
can-567	1	74	russian	russian	PROPN
can-567	1	75	academy	academy	PROPN
can-567	1	76	of	of	ADP
can-567	1	77	sciences	sciences	PROPN
can-567	1	78	,	,	PUNCT
can-567	1	79	32a	32a	NOUN
can-567	1	80	leninskii	leninskii	ADJ
can-567	1	81	pr	pr	NOUN
can-567	1	82	.	.	PUNCT
can-567	1	83	,	,	PUNCT
can-567	1	84	moscow	moscow	PROPN
can-567	1	85	,	,	PUNCT
can-567	1	86	119991	119991	NUM
can-567	1	87	,	,	PUNCT
can-567	1	88	russia	russia	PROPN
can-567	1	89	;	;	PUNCT
can-567	1	90	e	e	X
can-567	1	91	-	-	NOUN
can-567	1	92	mail	mail	NOUN
can-567	1	93	:	:	PUNCT
can-567	2	1	bulyar2954@mail.ru	bulyar2954@mail.ru	PUNCT
can-567	2	2	2	2	NUM
can-567	2	3	scientific	scientific	ADJ
can-567	2	4	-	-	PUNCT
can-567	2	5	manufacturing	manufacture	VERB
can-567	2	6	complex	complex	ADJ
can-567	2	7	«	«	PUNCT
can-567	2	8	technological	technological	ADJ
can-567	2	9	centre	centre	NOUN
can-567	2	10	»	»	PUNCT
can-567	2	11	build	build	VERB
can-567	2	12	1	1	NUM
can-567	2	13	,	,	PUNCT
can-567	2	14	shokin	shokin	X
can-567	2	15	sq	sq	PROPN
can-567	2	16	.	.	PROPN
can-567	2	17	,	,	PUNCT
can-567	2	18	zelenograd	zelenograd	PROPN
can-567	2	19	,	,	PUNCT
can-567	2	20	moscow	moscow	PROPN
can-567	2	21	,	,	PUNCT
can-567	2	22	124498	124498	NUM
can-567	2	23	,	,	PUNCT
can-567	2	24	russia	russia	PROPN
can-567	2	25	abstract	abstract	NOUN
can-567	2	26	we	we	PRON
can-567	2	27	have	have	AUX
can-567	2	28	studied	study	VERB
can-567	2	29	the	the	DET
can-567	2	30	effect	effect	NOUN
can-567	2	31	of	of	ADP
can-567	2	32	the	the	DET
can-567	2	33	series	series	NOUN
can-567	2	34	resistance	resistance	NOUN
can-567	2	35	on	on	ADP
can-567	2	36	the	the	DET
can-567	2	37	heating	heating	NOUN
can-567	2	38	of	of	ADP
can-567	2	39	the	the	DET
can-567	2	40	cathode	cathode	NOUN
can-567	2	41	,	,	PUNCT
can-567	2	42	which	which	PRON
can-567	2	43	is	be	AUX
can-567	2	44	based	base	VERB
can-567	2	45	on	on	ADP
can-567	2	46	carbon	carbon	NOUN
can-567	2	47	nanotubes	nanotube	NOUN
can-567	2	48	and	and	CCONJ
can-567	2	49	serves	serve	VERB
can-567	2	50	to	to	PART
can-567	2	51	realize	realize	VERB
can-567	2	52	the	the	DET
can-567	2	53	field	field	NOUN
can-567	2	54	emission	emission	NOUN
can-567	2	55	of	of	ADP
can-567	2	56	electrons	electron	NOUN
can-567	2	57	into	into	ADP
can-567	2	58	the	the	DET
can-567	2	59	vacuum	vacuum	NOUN
can-567	2	60	.	.	PUNCT
can-567	3	1	the	the	DET
can-567	3	2	experiment	experiment	NOUN
can-567	3	3	was	be	AUX
can-567	3	4	performed	perform	VERB
can-567	3	5	with	with	ADP
can-567	3	6	the	the	DET
can-567	3	7	single	single	ADJ
can-567	3	8	multi	multi	ADJ
can-567	3	9	-	-	ADJ
can-567	3	10	walled	walled	ADJ
can-567	3	11	carbon	carbon	NOUN
can-567	3	12	nanotube	nanotube	NOUN
can-567	3	13	(	(	PUNCT
can-567	3	14	mcnt	mcnt	PROPN
can-567	3	15	)	)	PUNCT
can-567	3	16	that	that	PRON
can-567	3	17	was	be	AUX
can-567	3	18	separated	separate	VERB
can-567	3	19	from	from	ADP
can-567	3	20	the	the	DET
can-567	3	21	array	array	NOUN
can-567	3	22	grown	grow	VERB
can-567	3	23	by	by	ADP
can-567	3	24	cvd	cvd	PROPN
can-567	3	25	method	method	PROPN
can-567	3	26	with	with	ADP
can-567	3	27	thin	thin	ADJ
can-567	3	28	-	-	PUNCT
can-567	3	29	film	film	NOUN
can-567	3	30	ni	ni	ADJ
can-567	3	31	-	-	PUNCT
can-567	3	32	ti	ti	NOUN
can-567	3	33	catalyst	catalyst	NOUN
can-567	3	34	(	(	PUNCT
can-567	3	35	nickel	nickel	NOUN
can-567	3	36	4	4	NUM
can-567	3	37	nm	nm	NOUN
can-567	3	38	/	/	SYM
can-567	3	39	ti	ti	PROPN
can-567	3	40	10	10	NUM
can-567	3	41	nm	nm	NOUN
can-567	3	42	)	)	PUNCT
can-567	3	43	.	.	PUNCT
can-567	4	1	the	the	DET
can-567	4	2	heating	heating	NOUN
can-567	4	3	of	of	ADP
can-567	4	4	the	the	DET
can-567	4	5	cathode	cathode	NOUN
can-567	4	6	leads	lead	VERB
can-567	4	7	to	to	ADP
can-567	4	8	the	the	DET
can-567	4	9	appearance	appearance	NOUN
can-567	4	10	of	of	ADP
can-567	4	11	a	a	DET
can-567	4	12	current	current	NOUN
can-567	4	13	of	of	ADP
can-567	4	14	the	the	DET
can-567	4	15	thermionic	thermionic	ADJ
can-567	4	16	emission	emission	NOUN
can-567	4	17	.	.	PUNCT
can-567	5	1	the	the	DET
can-567	5	2	experimental	experimental	ADJ
can-567	5	3	voltage	voltage	NOUN
can-567	5	4	current	current	ADJ
can-567	5	5	characteristic	characteristic	NOUN
can-567	5	6	exhibited	exhibit	VERB
can-567	5	7	the	the	DET
can-567	5	8	negative	negative	ADJ
can-567	5	9	resistance	resistance	NOUN
can-567	5	10	region	region	NOUN
can-567	5	11	caused	cause	VERB
can-567	5	12	by	by	ADP
can-567	5	13	thermal	thermal	ADJ
can-567	5	14	field	field	NOUN
can-567	5	15	emission	emission	NOUN
can-567	5	16	.	.	PUNCT
can-567	6	1	this	this	DET
can-567	6	2	current	current	ADJ
can-567	6	3	increases	increase	NOUN
can-567	6	4	strongly	strongly	ADV
can-567	6	5	with	with	ADP
can-567	6	6	increasing	increase	VERB
can-567	6	7	voltage	voltage	NOUN
can-567	6	8	and	and	CCONJ
can-567	6	9	contributes	contribute	VERB
can-567	6	10	to	to	ADP
can-567	6	11	the	the	DET
can-567	6	12	degradation	degradation	NOUN
can-567	6	13	of	of	ADP
can-567	6	14	the	the	DET
can-567	6	15	cold	cold	ADJ
can-567	6	16	emitter	emitter	NOUN
can-567	6	17	.	.	PUNCT
can-567	7	1	the	the	DET
can-567	7	2	calculation	calculation	NOUN
can-567	7	3	of	of	ADP
can-567	7	4	the	the	DET
can-567	7	5	temperature	temperature	NOUN
can-567	7	6	of	of	ADP
can-567	7	7	the	the	DET
can-567	7	8	end	end	NOUN
can-567	7	9	of	of	ADP
can-567	7	10	the	the	DET
can-567	7	11	cathode	cathode	NOUN
can-567	7	12	is	be	AUX
can-567	7	13	made	make	VERB
can-567	7	14	taking	take	VERB
can-567	7	15	into	into	ADP
can-567	7	16	account	account	NOUN
can-567	7	17	the	the	DET
can-567	7	18	effect	effect	NOUN
can-567	7	19	of	of	ADP
can-567	7	20	the	the	DET
can-567	7	21	phenomenon	phenomenon	NOUN
can-567	7	22	that	that	PRON
can-567	7	23	warms	warm	VERB
can-567	7	24	up	up	ADP
can-567	7	25	and	and	CCONJ
can-567	7	26	cools	cool	VERB
can-567	7	27	the	the	DET
can-567	7	28	cathode	cathode	NOUN
can-567	7	29	.	.	PUNCT
can-567	8	1	we	we	PRON
can-567	8	2	have	have	AUX
can-567	8	3	developed	develop	VERB
can-567	8	4	a	a	DET
can-567	8	5	method	method	NOUN
can-567	8	6	for	for	ADP
can-567	8	7	processing	processing	NOUN
can-567	8	8	of	of	ADP
can-567	8	9	the	the	DET
can-567	8	10	emission	emission	NOUN
can-567	8	11	volt	volt	NOUN
can-567	8	12	-	-	PUNCT
can-567	8	13	ampere	ampere	NOUN
can-567	8	14	characteristics	characteristic	NOUN
can-567	8	15	of	of	ADP
can-567	8	16	a	a	DET
can-567	8	17	cathode	cathode	NOUN
can-567	8	18	,	,	PUNCT
can-567	8	19	which	which	PRON
can-567	8	20	relies	rely	VERB
can-567	8	21	on	on	ADP
can-567	8	22	a	a	DET
can-567	8	23	numerical	numerical	ADJ
can-567	8	24	calculation	calculation	NOUN
can-567	8	25	of	of	ADP
can-567	8	26	the	the	DET
can-567	8	27	field	field	NOUN
can-567	8	28	emission	emission	NOUN
can-567	8	29	current	current	NOUN
can-567	8	30	and	and	CCONJ
can-567	8	31	the	the	DET
can-567	8	32	comparison	comparison	NOUN
can-567	8	33	of	of	ADP
can-567	8	34	these	these	DET
can-567	8	35	calculations	calculation	NOUN
can-567	8	36	with	with	ADP
can-567	8	37	experiments	experiment	NOUN
can-567	8	38	.	.	PUNCT
can-567	9	1	the	the	DET
can-567	9	2	model	model	NOUN
can-567	9	3	of	of	ADP
can-567	9	4	the	the	DET
can-567	9	5	volt	volt	NOUN
can-567	9	6	-	-	PUNCT
can-567	9	7	ampere	ampere	NOUN
can-567	9	8	characteristic	characteristic	NOUN
can-567	9	9	takes	take	VERB
can-567	9	10	into	into	ADP
can-567	9	11	account	account	NOUN
can-567	9	12	the	the	DET
can-567	9	13	cnt	cnt	PROPN
can-567	9	14	’s	’s	PART
can-567	9	15	geometry	geometry	NOUN
can-567	9	16	,	,	PUNCT
can-567	9	17	properties	property	NOUN
can-567	9	18	,	,	PUNCT
can-567	9	19	its	its	PRON
can-567	9	20	contact	contact	NOUN
can-567	9	21	with	with	ADP
can-567	9	22	the	the	DET
can-567	9	23	catalyst	catalyst	NOUN
can-567	9	24	,	,	PUNCT
can-567	9	25	heating	heating	NOUN
can-567	9	26	and	and	CCONJ
can-567	9	27	simultaneous	simultaneous	ADJ
can-567	9	28	implementation	implementation	NOUN
can-567	9	29	of	of	ADP
can-567	9	30	the	the	DET
can-567	9	31	thermionic	thermionic	ADJ
can-567	9	32	and	and	CCONJ
can-567	9	33	field	field	NOUN
can-567	9	34	emission	emission	NOUN
can-567	9	35	.	.	PUNCT
can-567	10	1	the	the	DET
can-567	10	2	calculation	calculation	NOUN
can-567	10	3	made	make	VERB
can-567	10	4	it	it	PRON
can-567	10	5	possible	possible	ADJ
can-567	10	6	to	to	PART
can-567	10	7	determine	determine	VERB
can-567	10	8	a	a	DET
can-567	10	9	number	number	NOUN
can-567	10	10	of	of	ADP
can-567	10	11	important	important	ADJ
can-567	10	12	parameters	parameter	NOUN
can-567	10	13	,	,	PUNCT
can-567	10	14	including	include	VERB
can-567	10	15	the	the	DET
can-567	10	16	voltage	voltage	NOUN
can-567	10	17	and	and	CCONJ
can-567	10	18	current	current	NOUN
can-567	10	19	of	of	ADP
can-567	10	20	the	the	DET
can-567	10	21	beginning	beginning	NOUN
can-567	10	22	of	of	ADP
can-567	10	23	thermionic	thermionic	ADJ
can-567	10	24	emission	emission	NOUN
can-567	10	25	,	,	PUNCT
can-567	10	26	the	the	DET
can-567	10	27	temperature	temperature	NOUN
can-567	10	28	distribution	distribution	NOUN
can-567	10	29	along	along	ADP
can-567	10	30	the	the	DET
can-567	10	31	cathode	cathode	NOUN
can-567	10	32	and	and	CCONJ
can-567	10	33	the	the	DET
can-567	10	34	resistance	resistance	NOUN
can-567	10	35	of	of	ADP
can-567	10	36	the	the	DET
can-567	10	37	nanotube	nanotube	NOUN
can-567	10	38	.	.	PUNCT
can-567	11	1	the	the	DET
can-567	11	2	phenomenon	phenomenon	NOUN
can-567	11	3	of	of	ADP
can-567	11	4	thermionic	thermionic	ADJ
can-567	11	5	emission	emission	NOUN
can-567	11	6	from	from	ADP
can-567	11	7	cnts	cnts	PROPN
can-567	11	8	was	be	AUX
can-567	11	9	investigated	investigate	VERB
can-567	11	10	experimentally	experimentally	ADV
can-567	11	11	and	and	CCONJ
can-567	11	12	theoretically	theoretically	ADV
can-567	11	13	.	.	PUNCT
can-567	12	1	the	the	DET
can-567	12	2	conditions	condition	NOUN
can-567	12	3	of	of	ADP
can-567	12	4	this	this	DET
can-567	12	5	type	type	NOUN
can-567	12	6	emission	emission	NOUN
can-567	12	7	occurrence	occurrence	NOUN
can-567	12	8	were	be	AUX
can-567	12	9	defined	define	VERB
can-567	12	10	.	.	PUNCT
can-567	13	1	the	the	DET
can-567	13	2	results	result	NOUN
can-567	13	3	of	of	ADP
can-567	13	4	the	the	DET
can-567	13	5	study	study	NOUN
can-567	13	6	could	could	AUX
can-567	13	7	form	form	VERB
can-567	13	8	the	the	DET
can-567	13	9	basis	basis	NOUN
can-567	13	10	of	of	ADP
can-567	13	11	theory	theory	NOUN
can-567	13	12	of	of	ADP
can-567	13	13	cnt	cnt	PROPN
can-567	13	14	emitter	emitter	NOUN
can-567	13	15	’s	’s	PART
can-567	13	16	degradation	degradation	NOUN
can-567	13	17	.	.	PUNCT
can-567	14	1	keywords	keyword	NOUN
can-567	14	2	:	:	PUNCT
can-567	14	3	carbon	carbon	NOUN
can-567	14	4	nanotubes	nanotube	NOUN
can-567	14	5	;	;	PUNCT
can-567	14	6	field	field	NOUN
can-567	14	7	emission	emission	NOUN
can-567	14	8	;	;	PUNCT
can-567	14	9	thermionic	thermionic	ADJ
can-567	14	10	emission	emission	NOUN
can-567	14	11	;	;	PUNCT
can-567	14	12	volt	volt	NOUN
can-567	14	13	-	-	PUNCT
can-567	14	14	ampere	ampere	NOUN
can-567	14	15	characteristic	characteristic	NOUN
can-567	14	16	;	;	PUNCT
can-567	14	17	emitter	emitter	NOUN
can-567	14	18	temperature	temperature	NOUN
can-567	14	19	article	article	NOUN
can-567	14	20	info	info	NOUN
can-567	14	21	article	article	NOUN
can-567	14	22	history	history	NOUN
can-567	14	23	:	:	PUNCT
can-567	14	24	received	receive	VERB
can-567	14	25	11	11	NUM
can-567	14	26	october	october	PROPN
can-567	14	27	2020	2020	NUM
can-567	14	28	received	receive	VERB
can-567	14	29	in	in	ADP
can-567	14	30	revised	revise	VERB
can-567	14	31	form	form	NOUN
can-567	14	32	4	4	NUM
can-567	14	33	november	november	NOUN
can-567	14	34	2020	2020	NUM
can-567	14	35	accepted	accept	VERB
can-567	14	36	9	9	NUM
can-567	14	37	november	november	PROPN
can-567	14	38	2020	2020	NUM
can-567	14	39	available	available	ADJ
can-567	14	40	online	online	ADJ
can-567	14	41	21	21	NUM
can-567	14	42	november	november	NOUN
can-567	14	43	2020	2020	NUM
can-567	14	44	copyright	copyright	NOUN
can-567	14	45	copyright	copyright	NOUN
can-567	15	1	©	©	PROPN
can-567	15	2	2020	2020	NUM
can-567	15	3	sergey	sergey	PROPN
can-567	15	4	v.	v.	ADP
can-567	15	5	bulyarskiy	bulyarskiy	PROPN
can-567	15	6	et	et	PROPN
can-567	15	7	al	al	PROPN
can-567	15	8	.	.	PUNCT
can-567	15	9	doi	doi	PROPN
can-567	15	10	:	:	PUNCT
can-567	15	11	10.24294	10.24294	NUM
can-567	15	12	/	/	SYM
can-567	15	13	can.v3i2.567	can.v3i2.567	PROPN
can-567	15	14	enpress	enpress	NOUN
can-567	15	15	publisher	publisher	NOUN
can-567	15	16	llc	llc	PROPN
can-567	15	17	.	.	PUNCT
can-567	16	1	this	this	DET
can-567	16	2	work	work	NOUN
can-567	16	3	is	be	AUX
can-567	16	4	licensed	license	VERB
can-567	16	5	under	under	ADP
can-567	16	6	the	the	DET
can-567	16	7	creative	creative	ADJ
can-567	16	8	commons	common	NOUN
can-567	16	9	attribution	attribution	NOUN
can-567	16	10	-	-	PUNCT
can-567	16	11	noncommercial	noncommercial	ADJ
can-567	16	12	4.0	4.0	NUM
can-567	16	13	international	international	ADJ
can-567	16	14	license	license	NOUN
can-567	16	15	(	(	PUNCT
can-567	16	16	cc	cc	NOUN
can-567	16	17	by	by	ADP
can-567	16	18	-	-	PUNCT
can-567	16	19	nc	nc	PROPN
can-567	16	20	4.0	4.0	NUM
can-567	16	21	)	)	PUNCT
can-567	16	22	http://creativecommons.org/licenses/by/4.0/	http://creativecommons.org/licenses/by/4.0/	PROPN
can-567	16	23	1	1	NUM
can-567	16	24	.	.	PUNCT
can-567	17	1	introduction	introduction	NOUN
can-567	17	2	the	the	DET
can-567	17	3	carbon	carbon	NOUN
can-567	17	4	nanotubes	nanotube	NOUN
can-567	17	5	(	(	PUNCT
can-567	17	6	cnts	cnt	NOUN
can-567	17	7	)	)	PUNCT
can-567	17	8	have	have	VERB
can-567	17	9	the	the	DET
can-567	17	10	important	important	ADJ
can-567	17	11	practical	practical	ADJ
can-567	17	12	properties	property	NOUN
can-567	17	13	such	such	ADJ
can-567	17	14	as	as	ADP
can-567	17	15	high	high	ADJ
can-567	17	16	electrical	electrical	ADJ
can-567	17	17	and	and	CCONJ
can-567	17	18	thermal	thermal	ADJ
can-567	17	19	conductivity	conductivity	NOUN
can-567	17	20	,	,	PUNCT
can-567	17	21	suitable	suitable	ADJ
can-567	17	22	mechanical	mechanical	ADJ
can-567	17	23	properties	property	NOUN
can-567	17	24	,	,	PUNCT
can-567	17	25	and	and	CCONJ
can-567	17	26	ability	ability	NOUN
can-567	17	27	to	to	PART
can-567	17	28	absorb	absorb	VERB
can-567	17	29	and	and	CCONJ
can-567	17	30	emit	emit	VERB
can-567	17	31	electromagnetic	electromagnetic	ADJ
can-567	17	32	waves	wave	NOUN
can-567	17	33	[	[	X
can-567	17	34	1	1	X
can-567	17	35	]	]	PUNCT
can-567	17	36	.	.	PUNCT
can-567	18	1	scientists	scientist	NOUN
can-567	18	2	from	from	ADP
can-567	18	3	all	all	ADV
can-567	18	4	over	over	ADP
can-567	18	5	the	the	DET
can-567	18	6	world	world	NOUN
can-567	18	7	have	have	AUX
can-567	18	8	developed	develop	VERB
can-567	18	9	the	the	DET
can-567	18	10	variety	variety	NOUN
can-567	18	11	of	of	ADP
can-567	18	12	convenient	convenient	ADJ
can-567	18	13	technological	technological	ADJ
can-567	18	14	methods	method	NOUN
can-567	18	15	for	for	ADP
can-567	18	16	producing	produce	VERB
can-567	18	17	cnts	cnt	NOUN
can-567	18	18	,	,	PUNCT
can-567	18	19	which	which	PRON
can-567	18	20	promotes	promote	VERB
can-567	18	21	the	the	DET
can-567	18	22	development	development	NOUN
can-567	18	23	of	of	ADP
can-567	18	24	studies	study	NOUN
can-567	18	25	of	of	ADP
can-567	18	26	this	this	DET
can-567	18	27	allotropic	allotropic	ADJ
can-567	18	28	form	form	NOUN
can-567	18	29	of	of	ADP
can-567	18	30	carbon	carbon	NOUN
can-567	18	31	.	.	PUNCT
can-567	19	1	at	at	ADP
can-567	19	2	present	present	ADJ
can-567	19	3	,	,	PUNCT
can-567	19	4	various	various	ADJ
can-567	19	5	practical	practical	ADJ
can-567	19	6	applications	application	NOUN
can-567	19	7	of	of	ADP
can-567	19	8	nanotubes	nanotube	NOUN
can-567	19	9	are	be	AUX
can-567	19	10	shown	show	VERB
can-567	19	11	,	,	PUNCT
can-567	19	12	including	include	VERB
can-567	19	13	field	field	NOUN
can-567	19	14	-	-	PUNCT
can-567	19	15	effect	effect	NOUN
can-567	19	16	transistors	transistor	NOUN
can-567	19	17	,	,	PUNCT
can-567	19	18	lithium	lithium	NOUN
can-567	19	19	-	-	PUNCT
can-567	19	20	ion	ion	NOUN
can-567	19	21	batteries	battery	NOUN
can-567	19	22	,	,	PUNCT
can-567	19	23	radiation	radiation	NOUN
can-567	19	24	receivers	receiver	NOUN
can-567	19	25	,	,	PUNCT
can-567	19	26	interconnections	interconnection	NOUN
can-567	19	27	of	of	ADP
can-567	19	28	integrated	integrated	ADJ
can-567	19	29	microcircuits	microcircuit	NOUN
can-567	19	30	,	,	PUNCT
can-567	19	31	conductive	conductive	ADJ
can-567	19	32	composites	composite	NOUN
can-567	19	33	,	,	PUNCT
can-567	19	34	etc	etc	X
can-567	19	35	.	.	X
can-567	20	1	[	[	X
can-567	20	2	1	1	X
can-567	20	3	]	]	PUNCT
can-567	20	4	cnts	cnt	NOUN
can-567	20	5	have	have	VERB
can-567	20	6	a	a	DET
can-567	20	7	small	small	ADJ
can-567	20	8	diameter	diameter	NOUN
can-567	20	9	.	.	PUNCT
can-567	21	1	for	for	ADP
can-567	21	2	the	the	DET
can-567	21	3	case	case	NOUN
can-567	21	4	with	with	ADP
can-567	21	5	single	single	ADJ
can-567	21	6	-	-	PUNCT
can-567	21	7	walled	wall	VERB
can-567	21	8	cnt	cnt	PROPN
can-567	21	9	,	,	PUNCT
can-567	21	10	it	it	PRON
can-567	21	11	is	be	AUX
can-567	21	12	from	from	ADP
can-567	21	13	0.8	0.8	NUM
can-567	21	14	to	to	ADP
can-567	21	15	1.5	1.5	NUM
can-567	21	16	nm	nm	NOUN
can-567	21	17	;	;	PUNCT
can-567	21	18	for	for	ADP
can-567	21	19	multi	multi	ADJ
can-567	21	20	-	-	ADJ
can-567	21	21	walled	walled	ADJ
can-567	21	22	cnt	cnt	PROPN
can-567	21	23	—	—	PUNCT
can-567	21	24	from	from	ADP
can-567	21	25	units	unit	NOUN
can-567	21	26	to	to	ADP
can-567	21	27	tens	ten	NOUN
can-567	21	28	nanometers	nanometer	NOUN
can-567	21	29	,	,	PUNCT
can-567	21	30	cnt	cnt	PROPN
can-567	21	31	’s	’s	PART
can-567	21	32	diameter	diameter	NOUN
can-567	21	33	is	be	AUX
can-567	21	34	much	much	ADV
can-567	21	35	less	less	ADJ
can-567	21	36	than	than	ADP
can-567	21	37	their	their	PRON
can-567	21	38	mailto:bulyar2954@mail.ru	mailto:bulyar2954@mail.ru	PROPN
can-567	21	39	http://creativecommons.org/licenses/by/4.0/	http://creativecommons.org/licenses/by/4.0/	PROPN
can-567	21	40	50	50	NUM
can-567	21	41	length	length	NOUN
can-567	21	42	(	(	PUNCT
can-567	21	43	large	large	ADJ
can-567	21	44	aspect	aspect	NOUN
can-567	21	45	ratio	ratio	NOUN
can-567	21	46	)	)	PUNCT
can-567	21	47	,	,	PUNCT
can-567	21	48	which	which	PRON
can-567	21	49	results	result	VERB
can-567	21	50	in	in	ADP
can-567	21	51	enhancement	enhancement	NOUN
can-567	21	52	of	of	ADP
can-567	21	53	the	the	DET
can-567	21	54	electric	electric	ADJ
can-567	21	55	field	field	NOUN
can-567	21	56	near	near	ADP
can-567	21	57	the	the	DET
can-567	21	58	cnt	cnt	PROPN
can-567	21	59	’s	’s	PART
can-567	21	60	tip	tip	NOUN
can-567	21	61	and	and	CCONJ
can-567	21	62	contributes	contribute	VERB
can-567	21	63	to	to	ADP
can-567	21	64	field	field	NOUN
can-567	21	65	emission	emission	NOUN
can-567	21	66	.	.	PUNCT
can-567	22	1	several	several	ADJ
can-567	22	2	papers	paper	NOUN
can-567	22	3	that	that	PRON
can-567	22	4	appeared	appear	VERB
can-567	22	5	in	in	ADP
can-567	22	6	1995	1995	NUM
can-567	22	7	described	describe	VERB
can-567	22	8	the	the	DET
can-567	22	9	phenomenon	phenomenon	NOUN
can-567	22	10	of	of	ADP
can-567	22	11	field	field	NOUN
can-567	22	12	emission	emission	NOUN
can-567	22	13	in	in	ADP
can-567	22	14	cnts	cnts	PROPN
can-567	22	15	[	[	X
can-567	22	16	2	2	NUM
can-567	22	17	-	-	SYM
can-567	22	18	4	4	NUM
can-567	22	19	]	]	PUNCT
can-567	22	20	.	.	PUNCT
can-567	23	1	this	this	DET
can-567	23	2	phenomenon	phenomenon	NOUN
can-567	23	3	formed	form	VERB
can-567	23	4	the	the	DET
can-567	23	5	basis	basis	NOUN
can-567	23	6	for	for	ADP
can-567	23	7	a	a	DET
can-567	23	8	number	number	NOUN
can-567	23	9	of	of	ADP
can-567	23	10	important	important	ADJ
can-567	23	11	applications	application	NOUN
can-567	23	12	from	from	ADP
can-567	23	13	the	the	DET
can-567	23	14	point	point	NOUN
can-567	23	15	of	of	ADP
can-567	23	16	view	view	NOUN
can-567	23	17	of	of	ADP
can-567	23	18	practical	practical	ADJ
can-567	23	19	applications	application	NOUN
can-567	23	20	:	:	PUNCT
can-567	23	21	flatscreens	flatscreen	NOUN
can-567	23	22	[	[	X
can-567	23	23	5,6	5,6	NUM
can-567	23	24	]	]	PUNCT
can-567	23	25	,	,	PUNCT
can-567	23	26	miniature	miniature	ADJ
can-567	23	27	x	x	NOUN
can-567	23	28	-	-	NOUN
can-567	23	29	ray	ray	NOUN
can-567	23	30	tubes	tube	NOUN
can-567	23	31	[	[	X
can-567	23	32	7,8	7,8	NUM
can-567	23	33	]	]	PUNCT
can-567	23	34	,	,	PUNCT
can-567	23	35	light	light	NOUN
can-567	23	36	-	-	PUNCT
can-567	23	37	emitting	emit	VERB
can-567	23	38	devices	device	NOUN
can-567	23	39	[	[	X
can-567	23	40	9,10	9,10	X
can-567	23	41	]	]	PUNCT
can-567	23	42	,	,	PUNCT
can-567	23	43	miniature	miniature	ADJ
can-567	23	44	vacuum	vacuum	NOUN
can-567	23	45	lamps	lamp	NOUN
can-567	24	1	[	[	X
can-567	24	2	11,12	11,12	NUM
can-567	24	3	]	]	PUNCT
can-567	24	4	,	,	PUNCT
can-567	24	5	terahertz	terahertz	NOUN
can-567	24	6	amplifiers	amplifier	NOUN
can-567	24	7	[	[	X
can-567	24	8	13,14	13,14	NUM
can-567	24	9	]	]	PUNCT
can-567	24	10	,	,	PUNCT
can-567	24	11	and	and	CCONJ
can-567	24	12	high	high	ADJ
can-567	24	13	-	-	PUNCT
can-567	24	14	freq	freq	NOUN
can-567	24	15	uency	uency	NOUN
can-567	24	16	vacuum	vacuum	NOUN
can-567	24	17	switches	switch	NOUN
can-567	25	1	[	[	X
can-567	25	2	15	15	NUM
can-567	25	3	]	]	PUNCT
can-567	25	4	.	.	PUNCT
can-567	26	1	for	for	ADP
can-567	26	2	widespread	widespread	ADJ
can-567	26	3	use	use	NOUN
can-567	26	4	of	of	ADP
can-567	26	5	field	field	NOUN
can-567	26	6	emission	emission	NOUN
can-567	26	7	(	(	PUNCT
can-567	26	8	fe	fe	NOUN
can-567	26	9	)	)	PUNCT
can-567	26	10	,	,	PUNCT
can-567	26	11	it	it	PRON
can-567	26	12	is	be	AUX
can-567	26	13	necessary	necessary	ADJ
can-567	26	14	to	to	PART
can-567	26	15	study	study	VERB
can-567	26	16	the	the	DET
can-567	26	17	possibility	possibility	NOUN
can-567	26	18	of	of	ADP
can-567	26	19	achieving	achieve	VERB
can-567	26	20	high	high	ADJ
can-567	26	21	emission	emission	NOUN
can-567	26	22	current	current	ADJ
can-567	26	23	densities	density	NOUN
can-567	26	24	and	and	CCONJ
can-567	26	25	stability	stability	NOUN
can-567	26	26	of	of	ADP
can-567	26	27	this	this	DET
can-567	26	28	process	process	NOUN
can-567	26	29	.	.	PUNCT
can-567	27	1	these	these	DET
can-567	27	2	issues	issue	NOUN
can-567	27	3	are	be	AUX
can-567	27	4	discussed	discuss	VERB
can-567	27	5	in	in	ADP
can-567	27	6	detail	detail	NOUN
can-567	27	7	foremost	foremost	ADV
can-567	27	8	from	from	ADP
can-567	27	9	the	the	DET
can-567	27	10	theoretical	theoretical	ADJ
can-567	27	11	point	point	NOUN
can-567	27	12	of	of	ADP
can-567	27	13	view	view	NOUN
can-567	27	14	,	,	PUNCT
can-567	27	15	in	in	ADP
can-567	27	16	particular	particular	ADJ
can-567	27	17	,	,	PUNCT
can-567	27	18	the	the	DET
can-567	27	19	necessary	necessary	ADJ
can-567	27	20	information	information	NOUN
can-567	27	21	can	can	AUX
can-567	27	22	be	be	AUX
can-567	27	23	found	find	VERB
can-567	27	24	in	in	ADP
can-567	27	25	the	the	DET
can-567	27	26	reviews	review	NOUN
can-567	27	27	[	[	X
can-567	27	28	16,17	16,17	NUM
can-567	27	29	]	]	PUNCT
can-567	27	30	.	.	PUNCT
can-567	28	1	voltage	voltage	NOUN
can-567	28	2	-	-	PUNCT
can-567	28	3	current	current	ADJ
can-567	28	4	characteristic	characteristic	NOUN
can-567	28	5	of	of	ADP
can-567	28	6	cold	cold	ADJ
can-567	28	7	cathode	cathode	NOUN
can-567	28	8	in	in	ADP
can-567	28	9	the	the	DET
can-567	28	10	region	region	NOUN
can-567	28	11	of	of	ADP
can-567	28	12	prevalence	prevalence	NOUN
can-567	28	13	of	of	ADP
can-567	28	14	field	field	NOUN
can-567	28	15	emission	emission	NOUN
can-567	28	16	current	current	NOUN
can-567	28	17	is	be	AUX
can-567	28	18	generally	generally	ADV
can-567	28	19	described	describe	VERB
can-567	28	20	by	by	ADP
can-567	28	21	fowler	fowler	PROPN
can-567	28	22	-	-	PUNCT
can-567	28	23	nordheim	nordheim	PROPN
can-567	28	24	formula	formula	NOUN
can-567	28	25	.	.	PUNCT
can-567	29	1	detailed	detailed	ADJ
can-567	29	2	analysis	analysis	NOUN
can-567	29	3	of	of	ADP
can-567	29	4	this	this	DET
can-567	29	5	model	model	NOUN
can-567	29	6	and	and	CCONJ
can-567	29	7	its	its	PRON
can-567	29	8	transition	transition	NOUN
can-567	29	9	to	to	ADP
can-567	29	10	the	the	DET
can-567	29	11	region	region	NOUN
can-567	29	12	of	of	ADP
can-567	29	13	thermionic	thermionic	ADJ
can-567	29	14	emission	emission	NOUN
can-567	29	15	was	be	AUX
can-567	29	16	carried	carry	VERB
can-567	29	17	out	out	ADP
can-567	29	18	in	in	ADP
can-567	29	19	the	the	DET
can-567	29	20	studies	study	NOUN
can-567	29	21	of	of	ADP
can-567	29	22	rupesinghe	rupesinghe	PROPN
can-567	29	23	et	et	PROPN
can-567	29	24	al	al	PROPN
can-567	29	25	.	.	PROPN
can-567	29	26	,	,	PUNCT
can-567	29	27	eletskii	eletskii	ADJ
can-567	29	28	,	,	PUNCT
can-567	29	29	bocharov	bocharov	ADJ
can-567	29	30	&	&	CCONJ
can-567	29	31	eletskii	eletskii	PROPN
can-567	29	32	,	,	PUNCT
can-567	29	33	and	and	CCONJ
can-567	29	34	murphy	murphy	PROPN
can-567	30	1	[	[	X
can-567	30	2	15,18	15,18	X
can-567	30	3	]	]	PUNCT
can-567	30	4	.	.	PUNCT
can-567	31	1	the	the	DET
can-567	31	2	calculations	calculation	NOUN
can-567	31	3	of	of	ADP
can-567	31	4	field	field	NOUN
can-567	31	5	-	-	PUNCT
can-567	31	6	emission	emission	NOUN
can-567	31	7	current	current	NOUN
can-567	31	8	for	for	ADP
can-567	31	9	cnt	cnt	PROPN
can-567	31	10	were	be	AUX
can-567	31	11	shown	show	VERB
can-567	31	12	in	in	ADP
can-567	31	13	several	several	ADJ
can-567	31	14	studies	study	NOUN
can-567	31	15	,	,	PUNCT
can-567	31	16	for	for	ADP
can-567	31	17	example	example	NOUN
can-567	31	18	,	,	PUNCT
can-567	31	19	in	in	ADP
can-567	31	20	the	the	DET
can-567	31	21	studies	study	NOUN
can-567	31	22	of	of	ADP
can-567	31	23	rupesin	rupesin	PROPN
can-567	31	24	ghe	ghe	PROPN
can-567	31	25	et	et	PROPN
can-567	31	26	al	al	PROPN
can-567	31	27	.	.	PROPN
can-567	31	28	,	,	PUNCT
can-567	31	29	eletskii	eletskii	ADJ
can-567	31	30	,	,	PUNCT
can-567	31	31	bocharov	bocharov	ADJ
can-567	31	32	&	&	CCONJ
can-567	31	33	eletskii	eletskii	PROPN
can-567	31	34	,	,	PUNCT
can-567	31	35	murphy	murphy	PROPN
can-567	31	36	,	,	PUNCT
can-567	31	37	as	as	ADV
can-567	31	38	well	well	ADV
can-567	31	39	as	as	ADP
can-567	31	40	mayer	mayer	PROPN
can-567	31	41	&	&	CCONJ
can-567	31	42	lambin	lambin	PROPN
can-567	32	1	[	[	X
can-567	32	2	15	15	NUM
can-567	32	3	-	-	SYM
can-567	32	4	19	19	NUM
can-567	32	5	]	]	PUNCT
can-567	32	6	.	.	PUNCT
can-567	33	1	fowler	fowler	PROPN
can-567	33	2	-	-	PUNCT
can-567	33	3	nordheim	nordheim	PROPN
can-567	33	4	dependence	dependence	NOUN
can-567	33	5	in	in	ADP
can-567	33	6	usable	usable	ADJ
can-567	33	7	form	form	NOUN
can-567	33	8	has	have	VERB
can-567	33	9	a	a	DET
can-567	33	10	formula	formula	NOUN
can-567	33	11	[	[	X
can-567	33	12	20	20	NUM
can-567	33	13	]	]	PUNCT
can-567	33	14	:	:	PUNCT
can-567	33	15	(	(	PUNCT
can-567	33	16	1	1	X
can-567	33	17	)	)	PUNCT
can-567	33	18	where	where	SCONJ
can-567	33	19	:	:	PUNCT
can-567	33	20	,	,	PUNCT
can-567	33	21	,	,	PUNCT
can-567	33	22	,	,	PUNCT
can-567	33	23	,	,	PUNCT
can-567	33	24	e	e	X
can-567	33	25	is	be	AUX
can-567	33	26	elementary	elementary	ADJ
can-567	33	27	charge	charge	NOUN
can-567	33	28	(	(	PUNCT
can-567	33	29	c	c	NOUN
can-567	33	30	)	)	PUNCT
can-567	33	31	;	;	PUNCT
can-567	33	32	h	h	NOUN
can-567	33	33	is	be	AUX
can-567	33	34	plank	plank	ADV
can-567	33	35	constant	constant	ADJ
can-567	33	36	(	(	PUNCT
can-567	33	37	js	js	NUM
can-567	33	38	)	)	PUNCT
can-567	33	39	;	;	PUNCT
can-567	33	40	e	e	X
can-567	33	41	is	be	AUX
can-567	33	42	the	the	DET
can-567	33	43	local	local	ADJ
can-567	33	44	electric	electric	ADJ
can-567	33	45	field	field	NOUN
can-567	33	46	strength	strength	NOUN
can-567	33	47	near	near	ADP
can-567	33	48	the	the	DET
can-567	33	49	emitting	emit	VERB
can-567	33	50	surface	surface	NOUN
can-567	33	51	(	(	PUNCT
can-567	33	52	v	v	NOUN
can-567	33	53	/	/	SYM
can-567	33	54	m	m	NOUN
can-567	33	55	)	)	PUNCT
can-567	33	56	;	;	PUNCT
can-567	33	57			PROPN
can-567	33	58	is	be	AUX
can-567	33	59	work	work	NOUN
can-567	33	60	function	function	NOUN
can-567	33	61	of	of	ADP
can-567	33	62	an	an	DET
can-567	33	63	electron	electron	NOUN
can-567	33	64	from	from	ADP
can-567	33	65	a	a	DET
can-567	33	66	cnt	cnt	PROPN
can-567	33	67	(	(	PUNCT
can-567	33	68	j	j	PROPN
can-567	33	69	)	)	PUNCT
can-567	33	70	;	;	PUNCT
can-567	33	71	m	m	VERB
can-567	33	72	is	be	AUX
can-567	33	73	free	free	ADJ
can-567	33	74	-	-	PUNCT
can-567	33	75	electron	electron	NOUN
can-567	33	76	mass	mass	NOUN
can-567	33	77	;	;	PUNCT
can-567	33	78	j	j	PROPN
can-567	33	79	is	be	AUX
can-567	33	80	current	current	ADJ
can-567	33	81	density	density	NOUN
can-567	33	82	of	of	ADP
can-567	33	83	the	the	DET
can-567	33	84	fe	fe	X
can-567	33	85	(	(	PUNCT
can-567	33	86	a	a	PROPN
can-567	33	87	/	/	SYM
can-567	33	88	m	m	NOUN
can-567	33	89	2	2	NUM
can-567	33	90	)	)	PUNCT
can-567	33	91	.	.	PUNCT
can-567	34	1	t(y0	t(y0	NOUN
can-567	34	2	)	)	PUNCT
can-567	34	3	и	и	PROPN
can-567	34	4	v(y0	v(y0	NOUN
can-567	34	5	)	)	PUNCT
can-567	34	6	are	be	AUX
can-567	34	7	weakly	weakly	ADJ
can-567	34	8	varying	vary	VERB
can-567	34	9	functions	function	NOUN
can-567	34	10	that	that	PRON
can-567	34	11	can	can	AUX
can-567	34	12	be	be	AUX
can-567	34	13	taken	take	VERB
can-567	34	14	equal	equal	ADJ
can-567	34	15	to	to	ADP
can-567	34	16	unity	unity	NOUN
can-567	34	17	without	without	ADP
can-567	34	18	increasing	increase	VERB
can-567	34	19	the	the	DET
can-567	34	20	error	error	NOUN
can-567	34	21	in	in	ADP
can-567	34	22	determining	determine	VERB
can-567	34	23	the	the	DET
can-567	34	24	work	work	NOUN
can-567	34	25	function	function	NOUN
can-567	34	26	.	.	PUNCT
can-567	35	1	we	we	PRON
can-567	35	2	can	can	AUX
can-567	35	3	neglect	neglect	VERB
can-567	35	4	the	the	DET
can-567	35	5	weak	weak	ADJ
can-567	35	6	power	power	NOUN
can-567	35	7	dependence	dependence	NOUN
can-567	35	8	of	of	ADP
can-567	35	9	the	the	DET
can-567	35	10	functions	function	NOUN
can-567	35	11	t(y	t(y	ADV
can-567	35	12	)	)	PUNCT
can-567	35	13	and	and	CCONJ
can-567	35	14	(y	(y	NOUN
can-567	35	15	)	)	PUNCT
can-567	35	16	by	by	ADP
can-567	35	17	setting	set	VERB
can-567	35	18	t(y)1	t(y)1	PROPN
can-567	35	19	and	and	CCONJ
can-567	35	20	(y)1	(y)1	PROPN
can-567	35	21	.	.	PUNCT
can-567	36	1	this	this	DET
can-567	36	2	condition	condition	NOUN
can-567	36	3	allows	allow	VERB
can-567	36	4	us	we	PRON
can-567	36	5	to	to	PART
can-567	36	6	obtain	obtain	VERB
can-567	36	7	the	the	DET
can-567	36	8	following	follow	VERB
can-567	36	9	formula	formula	NOUN
can-567	36	10	for	for	ADP
can-567	36	11	calculating	calculate	VERB
can-567	36	12	of	of	ADP
can-567	36	13	the	the	DET
can-567	36	14	work	work	NOUN
can-567	36	15	function	function	NOUN
can-567	36	16	:	:	PUNCT
can-567	37	1			NOUN
can-567	37	2			NOUN
can-567	37	3			PROPN
can-567	37	4			NOUN
can-567	37	5			PROPN
can-567	37	6			NOUN
can-567	37	7			ADJ
can-567	37	8			NOUN
can-567	37	9			PROPN
can-567	37	10	e	e	PROPN
can-567	37	11	e	e	PROPN
can-567	37	12	j	j	PROPN
can-567	37	13	2/392	2/392	NUM
can-567	37	14	6	6	NUM
can-567	37	15	1083.6	1083.6	NUM
can-567	37	16	exp1054.1	exp1054.1	PROPN
can-567	37	17			ADJ
can-567	37	18			PROPN
can-567	37	19	(	(	PUNCT
can-567	37	20	2	2	NUM
can-567	37	21	)	)	PUNCT
can-567	37	22	where	where	SCONJ
can-567	37	23	:	:	PUNCT
can-567	38	1	[	[	X
can-567	38	2			PROPN
can-567	38	3	]	]	X
can-567	38	4	=	=	PUNCT
can-567	38	5	ev	ev	VERB
can-567	38	6	;	;	PUNCT
can-567	38	7	[	[	X
can-567	38	8	e	e	X
can-567	38	9	]	]	X
can-567	38	10	=	=	SYM
can-567	38	11	v	v	NOUN
can-567	38	12	/	/	SYM
can-567	38	13	m	m	PROPN
can-567	38	14	;	;	PUNCT
can-567	39	1	[	[	X
can-567	39	2	j	j	X
can-567	39	3	]	]	X
can-567	39	4	=	=	SYM
can-567	39	5	а	а	PROPN
can-567	39	6	/	/	SYM
can-567	39	7	m	m	PROPN
can-567	39	8	2	2	NUM
can-567	39	9	.	.	PUNCT
can-567	40	1	the	the	DET
can-567	40	2	experimental	experimental	ADJ
can-567	40	3	results	result	NOUN
can-567	40	4	are	be	AUX
can-567	40	5	often	often	ADV
can-567	40	6	represented	represent	VERB
can-567	40	7	in	in	ADP
can-567	40	8	the	the	DET
can-567	40	9	fowler	fowler	PROPN
can-567	40	10	-	-	PUNCT
can-567	40	11	nordheim	nordheim	PROPN
can-567	40	12	coordinates	coordinate	NOUN
can-567	40	13	:	:	PUNCT
can-567	40	14	ln	ln	X
can-567	40	15	(	(	PUNCT
can-567	40	16	j	j	PROPN
can-567	40	17	/	/	SYM
can-567	40	18	e	e	NOUN
can-567	40	19	2	2	NUM
can-567	40	20	)	)	PUNCT
can-567	40	21	=	=	PUNCT
can-567	41	1	f(1	f(1	PROPN
can-567	41	2	/	/	SYM
can-567	41	3	e	e	NOUN
can-567	41	4	)	)	PUNCT
can-567	41	5	.	.	PUNCT
can-567	42	1	a	a	DET
can-567	42	2	straight	straight	ADJ
can-567	42	3	line	line	NOUN
can-567	42	4	approximates	approximate	VERB
can-567	42	5	these	these	DET
can-567	42	6	results	result	NOUN
can-567	42	7	and	and	CCONJ
can-567	42	8	the	the	DET
can-567	42	9	work	work	NOUN
can-567	42	10	function	function	NOUN
can-567	42	11	is	be	AUX
can-567	42	12	calculated	calculate	VERB
can-567	42	13	from	from	ADP
can-567	42	14	the	the	DET
can-567	42	15	slope	slope	NOUN
can-567	42	16	of	of	ADP
can-567	42	17	which	which	PRON
can-567	42	18	.	.	PUNCT
can-567	43	1	the	the	DET
can-567	43	2	amount	amount	NOUN
can-567	43	3	of	of	ADP
can-567	43	4	the	the	DET
can-567	43	5	calculation	calculation	NOUN
can-567	43	6	these	these	DET
can-567	43	7	work	work	NOUN
can-567	43	8	function	function	NOUN
can-567	43	9	depends	depend	VERB
can-567	43	10	on	on	ADP
can-567	43	11	the	the	DET
can-567	43	12	choice	choice	NOUN
can-567	43	13	of	of	ADP
can-567	43	14	the	the	DET
can-567	43	15	initial	initial	ADJ
can-567	43	16	and	and	CCONJ
can-567	43	17	final	final	ADJ
can-567	43	18	electric	electric	ADJ
can-567	43	19	field	field	NOUN
can-567	43	20	strengths	strength	NOUN
can-567	43	21	,	,	PUNCT
can-567	43	22	which	which	PRON
can-567	43	23	specify	specify	VERB
can-567	43	24	the	the	DET
can-567	43	25	region	region	NOUN
can-567	43	26	of	of	ADP
can-567	43	27	the	the	DET
can-567	43	28	current	current	ADJ
can-567	43	29	-	-	PUNCT
can-567	43	30	voltage	voltage	NOUN
can-567	43	31	characteristic	characteristic	NOUN
can-567	43	32	.	.	PUNCT
can-567	44	1	in	in	ADP
can-567	44	2	generally	generally	ADV
can-567	44	3	,	,	PUNCT
can-567	44	4	this	this	DET
can-567	44	5	choice	choice	NOUN
can-567	44	6	is	be	AUX
can-567	44	7	not	not	PART
can-567	44	8	motivated	motivated	ADJ
can-567	44	9	.	.	PUNCT
can-567	45	1	therefore	therefore	ADV
can-567	45	2	,	,	PUNCT
can-567	45	3	the	the	DET
can-567	45	4	result	result	NOUN
can-567	45	5	of	of	ADP
can-567	45	6	calculating	calculate	VERB
can-567	45	7	contains	contain	VERB
can-567	45	8	significant	significant	ADJ
can-567	45	9	systematic	systematic	ADJ
can-567	45	10	errors	error	NOUN
can-567	45	11	.	.	PUNCT
can-567	46	1	even	even	ADV
can-567	46	2	in	in	ADP
can-567	46	3	the	the	DET
can-567	46	4	first	first	ADJ
can-567	46	5	papers	paper	NOUN
can-567	46	6	devoted	devote	VERB
can-567	46	7	to	to	ADP
can-567	46	8	field	field	NOUN
can-567	46	9	emission	emission	NOUN
can-567	46	10	,	,	PUNCT
can-567	46	11	it	it	PRON
can-567	46	12	was	be	AUX
can-567	46	13	found	find	VERB
can-567	46	14	that	that	SCONJ
can-567	46	15	cnt	cnt	PROPN
can-567	46	16	’s	’s	PART
can-567	46	17	tip	tip	NOUN
can-567	46	18	is	be	AUX
can-567	46	19	heated	heat	VERB
can-567	46	20	by	by	ADP
can-567	46	21	flow	flow	NOUN
can-567	46	22	of	of	ADP
can-567	46	23	field	field	NOUN
can-567	46	24	-	-	PUNCT
can-567	46	25	emission	emission	NOUN
can-567	46	26	current	current	NOUN
can-567	46	27	,	,	PUNCT
can-567	46	28	and	and	CCONJ
can-567	46	29	its	its	PRON
can-567	46	30	temperature	temperature	NOUN
can-567	46	31	is	be	AUX
can-567	46	32	proportional	proportional	ADJ
can-567	46	33	to	to	ADP
can-567	46	34	the	the	DET
can-567	46	35	square	square	NOUN
can-567	46	36	of	of	ADP
can-567	46	37	the	the	DET
can-567	46	38	current	current	ADJ
can-567	46	39	density	density	NOUN
can-567	47	1	[	[	X
can-567	47	2	19,21	19,21	NUM
can-567	47	3	]	]	PUNCT
can-567	47	4	,	,	PUNCT
can-567	47	5	which	which	PRON
can-567	47	6	is	be	AUX
can-567	47	7	quite	quite	ADV
can-567	47	8	obvious	obvious	ADJ
can-567	47	9	in	in	ADP
can-567	47	10	accordance	accordance	NOUN
can-567	47	11	with	with	ADP
can-567	47	12	the	the	DET
can-567	47	13	joule	joule	PROPN
can-567	47	14	-	-	PUNCT
can-567	47	15	lenz	lenz	PROPN
can-567	47	16	law	law	PROPN
can-567	47	17	.	.	PUNCT
can-567	48	1	models	model	NOUN
can-567	48	2	that	that	PRON
can-567	48	3	are	be	AUX
can-567	48	4	more	more	ADV
can-567	48	5	complex	complex	ADJ
can-567	48	6	were	be	AUX
can-567	48	7	considered	consider	VERB
can-567	48	8	in	in	ADP
can-567	48	9	the	the	DET
can-567	48	10	studies	study	NOUN
can-567	48	11	of	of	ADP
can-567	48	12	bocharov	bocharov	PROPN
can-567	48	13	et	et	PROPN
can-567	48	14	al	al	PROPN
can-567	48	15	.	.	PUNCT
can-567	49	1	[	[	X
can-567	49	2	16	16	NUM
can-567	49	3	]	]	PUNCT
can-567	49	4	and	and	CCONJ
can-567	49	5	murphy	murphy	PROPN
can-567	49	6	et	et	PROPN
can-567	49	7	al	al	PROPN
can-567	49	8	.	.	PUNCT
can-567	50	1	[	[	X
can-567	50	2	17	17	NUM
can-567	50	3	]	]	PUNCT
can-567	50	4	a	a	DET
can-567	50	5	single	single	ADJ
can-567	50	6	nanotube	nanotube	NOUN
can-567	50	7	has	have	VERB
can-567	50	8	a	a	DET
can-567	50	9	rather	rather	ADV
can-567	50	10	large	large	ADJ
can-567	50	11	thermal	thermal	ADJ
can-567	50	12	resistance	resistance	NOUN
can-567	50	13	.	.	PUNCT
can-567	51	1	this	this	DET
can-567	51	2	resistance	resistance	NOUN
can-567	51	3	prevents	prevent	VERB
can-567	51	4	the	the	DET
can-567	51	5	release	release	NOUN
can-567	51	6	of	of	ADP
can-567	51	7	heat	heat	NOUN
can-567	51	8	into	into	ADP
can-567	51	9	the	the	DET
can-567	51	10	substrate	substrate	NOUN
can-567	51	11	with	with	ADP
can-567	51	12	which	which	PRON
can-567	51	13	the	the	DET
can-567	51	14	lower	low	ADJ
can-567	51	15	end	end	NOUN
can-567	51	16	of	of	ADP
can-567	51	17	the	the	DET
can-567	51	18	nanotube	nanotube	NOUN
can-567	51	19	is	be	AUX
can-567	51	20	connected	connect	VERB
can-567	51	21	.	.	PUNCT
can-567	52	1	cnt	cnt	PROPN
can-567	52	2	’s	’s	PART
can-567	52	3	tip	tip	NOUN
can-567	52	4	heating	heating	NOUN
can-567	52	5	leads	lead	VERB
can-567	52	6	to	to	ADP
can-567	52	7	thermionic	thermionic	ADJ
can-567	52	8	emission	emission	NOUN
can-567	52	9	current	current	NOUN
can-567	52	10	,	,	PUNCT
can-567	52	11	which	which	PRON
can-567	52	12	may	may	AUX
can-567	52	13	be	be	AUX
can-567	52	14	large	large	ADJ
can-567	52	15	and	and	CCONJ
can-567	52	16	even	even	ADV
can-567	52	17	exceed	exceed	VERB
can-567	52	18	the	the	DET
can-567	52	19	field	field	NOUN
can-567	52	20	emission	emission	NOUN
can-567	52	21	current	current	NOUN
can-567	52	22	.	.	PUNCT
can-567	53	1	moreover	moreover	ADV
can-567	53	2	,	,	PUNCT
can-567	53	3	the	the	DET
can-567	53	4	resistance	resistance	NOUN
can-567	53	5	of	of	ADP
can-567	53	6	cnt	cnt	PROPN
can-567	53	7	’s	’s	PART
can-567	53	8	changes	change	NOUN
can-567	53	9	the	the	DET
can-567	53	10	voltage	voltage	NOUN
can-567	53	11	-	-	PUNCT
can-567	53	12	current	current	ADJ
can-567	53	13	characteristic	characteristic	NOUN
can-567	53	14	as	as	ADP
can-567	53	15	a	a	DET
can-567	53	16	function	function	NOUN
can-567	53	17	of	of	ADP
can-567	53	18	temperature	temperature	NOUN
can-567	53	19	and	and	CCONJ
can-567	53	20	current	current	ADJ
can-567	53	21	value	value	NOUN
can-567	53	22	due	due	ADP
can-567	53	23	to	to	ADP
can-567	53	24	an	an	DET
can-567	53	25	additional	additional	ADJ
can-567	53	26	voltage	voltage	NOUN
can-567	53	27	drop	drop	NOUN
can-567	53	28	.	.	PUNCT
can-567	54	1	cnt	cnt	PROPN
can-567	54	2	’s	’s	PART
can-567	54	3	resistance	resistance	NOUN
can-567	54	4	makes	make	VERB
can-567	54	5	a	a	DET
can-567	54	6	definite	definite	ADJ
can-567	54	7	contribution	contribution	NOUN
can-567	54	8	to	to	ADP
can-567	54	9	the	the	DET
can-567	54	10	form	form	NOUN
can-567	54	11	of	of	ADP
can-567	54	12	the	the	DET
can-567	54	13	voltage	voltage	NOUN
can-567	54	14	-	-	PUNCT
can-567	54	15	current	current	ADJ
can-567	54	16	characteristic	characteristic	NOUN
can-567	54	17	,	,	PUNCT
can-567	54	18	taking	take	VERB
can-567	54	19	part	part	NOUN
can-567	54	20	of	of	ADP
can-567	54	21	the	the	DET
can-567	54	22	voltage	voltage	NOUN
can-567	54	23	to	to	ADP
can-567	54	24	itself	itself	PRON
can-567	54	25	at	at	ADP
can-567	54	26	high	high	ADJ
can-567	54	27	current	current	ADJ
can-567	54	28	densities	density	NOUN
can-567	54	29	.	.	PUNCT
can-567	55	1	thus	thus	ADV
can-567	55	2	,	,	PUNCT
can-567	55	3	cnt	cnt	PROPN
can-567	55	4	’s	’s	PART
can-567	55	5	resistance	resistance	NOUN
can-567	55	6	leads	lead	VERB
can-567	55	7	to	to	ADP
can-567	55	8	a	a	DET
can-567	55	9	deviation	deviation	NOUN
can-567	55	10	of	of	ADP
can-567	55	11	the	the	DET
can-567	55	12	experimental	experimental	ADJ
can-567	55	13	results	result	NOUN
can-567	55	14	from	from	ADP
can-567	55	15	ed	ed	NOUN
can-567	55	16	.	.	PUNCT
can-567	56	1	(	(	PUNCT
can-567	56	2	1	1	NUM
can-567	56	3	)	)	PUNCT
can-567	56	4	.	.	PUNCT
can-567	57	1	therefore	therefore	ADV
can-567	57	2	,	,	PUNCT
can-567	57	3	when	when	SCONJ
can-567	57	4	researchers	researcher	NOUN
can-567	57	5	involve	involve	VERB
can-567	57	6	only	only	ADV
can-567	57	7	fowler	fowler	PROPN
can-567	57	8	nordheim	nordheim	PROPN
can-567	57	9	dependence	dependence	NOUN
can-567	57	10	to	to	PART
can-567	57	11	determine	determine	VERB
can-567	57	12	the	the	DET
can-567	57	13	work	work	NOUN
can-567	57	14	function	function	NOUN
can-567	57	15	,	,	PUNCT
can-567	57	16	they	they	PRON
can-567	57	17	admit	admit	VERB
can-567	57	18	two	two	NUM
can-567	57	19	systematic	systematic	ADJ
can-567	57	20	errors	error	NOUN
can-567	57	21	:	:	PUNCT
can-567	57	22	firstly	firstly	ADV
can-567	57	23	,	,	PUNCT
can-567	57	24	thermionic	thermionic	ADJ
can-567	57	25	emission	emission	NOUN
can-567	57	26	is	be	AUX
can-567	57	27	neglected	neglect	VERB
can-567	57	28	,	,	PUNCT
can-567	57	29	and	and	CCONJ
can-567	57	30	,	,	PUNCT
can-567	57	31	secondly	secondly	ADV
can-567	57	32	,	,	PUNCT
can-567	57	33	they	they	PRON
can-567	57	34	33.11107.01	33.11107.01	VERB
can-567	57	35	)	)	PUNCT
can-567	57	36	(	(	PUNCT
can-567	57	37	yyt	yyt	NOUN
can-567	57	38			PROPN
can-567	57	39	69.11	69.11	NUM
can-567	57	40	)	)	PUNCT
can-567	57	41	(	(	PUNCT
can-567	57	42	yy	yy	PROPN
can-567	57	43			PROPN
can-567	57	44			PROPN
can-567	57	45			PROPN
can-567	57	46			NOUN
can-567	57	47			NOUN
can-567	58	1			PROPN
can-567	58	2			PROPN
can-567	59	1			PROPN
can-567	59	2			NOUN
can-567	59	3			ADJ
can-567	60	1	eeh	eeh	INTJ
can-567	60	2	ym	ym	INTJ
can-567	61	1	yth	yth	PROPN
can-567	61	2	ee	ee	PROPN
can-567	61	3	j	j	PROPN
can-567	61	4			PROPN
can-567	61	5			PROPN
can-567	61	6			NOUN
can-567	61	7	eee	eee	NOUN
can-567	61	8	y	y	PROPN
can-567	61	9			PROPN
can-567	61	10	51	51	NUM
can-567	61	11	do	do	AUX
can-567	61	12	n’t	not	PART
can-567	61	13	take	take	VERB
can-567	61	14	into	into	ADP
can-567	61	15	account	account	NOUN
can-567	61	16	the	the	DET
can-567	61	17	voltage	voltage	NOUN
can-567	61	18	drop	drop	NOUN
can-567	61	19	on	on	ADP
can-567	61	20	the	the	DET
can-567	61	21	nanotube	nanotube	NOUN
can-567	61	22	.	.	PUNCT
can-567	62	1	in	in	ADP
can-567	62	2	this	this	DET
can-567	62	3	paper	paper	NOUN
can-567	62	4	,	,	PUNCT
can-567	62	5	the	the	DET
can-567	62	6	emission	emission	NOUN
can-567	62	7	currents	current	NOUN
can-567	62	8	of	of	ADP
can-567	62	9	a	a	DET
can-567	62	10	single	single	ADJ
can-567	62	11	multi	multi	ADJ
can-567	62	12	-	-	ADJ
can-567	62	13	walled	walled	ADJ
can-567	62	14	nanotube	nanotube	NOUN
can-567	62	15	have	have	AUX
can-567	62	16	been	be	AUX
can-567	62	17	studied	study	VERB
can-567	62	18	experimentally	experimentally	ADV
can-567	62	19	in	in	ADP
can-567	62	20	a	a	DET
can-567	62	21	wide	wide	ADJ
can-567	62	22	range	range	NOUN
can-567	62	23	of	of	ADP
can-567	62	24	current	current	ADJ
can-567	62	25	values	value	NOUN
can-567	62	26	.	.	PUNCT
can-567	63	1	the	the	DET
can-567	63	2	authors	author	NOUN
can-567	63	3	have	have	AUX
can-567	63	4	revealed	reveal	VERB
can-567	63	5	deviations	deviation	NOUN
can-567	63	6	of	of	ADP
can-567	63	7	the	the	DET
can-567	63	8	current	current	ADJ
can-567	63	9	-	-	PUNCT
can-567	63	10	volta	volta	NOUN
can-567	63	11	ge	ge	NOUN
can-567	63	12	characteristic	characteristic	ADJ
can-567	63	13	from	from	ADP
can-567	63	14	the	the	DET
can-567	63	15	fowler	fowler	PROPN
can-567	63	16	-	-	PUNCT
can-567	63	17	nordheim	nordheim	PROPN
can-567	63	18	dependence	dependence	NOUN
can-567	63	19	.	.	PUNCT
can-567	64	1	moreover	moreover	ADV
can-567	64	2	,	,	PUNCT
can-567	64	3	the	the	DET
can-567	64	4	calculation	calculation	NOUN
can-567	64	5	of	of	ADP
can-567	64	6	the	the	DET
can-567	64	7	temperature	temperature	NOUN
can-567	64	8	of	of	ADP
can-567	64	9	cnt	cnt	PROPN
can-567	64	10	’s	’s	PART
can-567	64	11	heating	heating	NOUN
can-567	64	12	has	have	AUX
can-567	64	13	been	be	AUX
can-567	64	14	carried	carry	VERB
can-567	64	15	out	out	ADP
can-567	64	16	,	,	PUNCT
can-567	64	17	and	and	CCONJ
can-567	64	18	the	the	DET
can-567	64	19	conditions	condition	NOUN
can-567	64	20	under	under	ADP
can-567	64	21	which	which	PRON
can-567	64	22	the	the	DET
can-567	64	23	nanotube	nanotube	ADJ
can-567	64	24	resistance	resistance	NOUN
can-567	64	25	and	and	CCONJ
can-567	64	26	the	the	DET
can-567	64	27	thermionic	thermionic	ADJ
can-567	64	28	emission	emission	NOUN
can-567	64	29	current	current	NOUN
can-567	64	30	have	have	VERB
can-567	64	31	a	a	DET
can-567	64	32	significant	significant	ADJ
can-567	64	33	effect	effect	NOUN
can-567	64	34	on	on	ADP
can-567	64	35	the	the	DET
can-567	64	36	voltage	voltage	NOUN
can-567	64	37	-	-	PUNCT
can-567	64	38	current	current	ADJ
can-567	64	39	characteristic	characteristic	ADJ
can-567	64	40	shape	shape	NOUN
can-567	64	41	were	be	AUX
can-567	64	42	analyzed	analyze	VERB
can-567	64	43	,	,	PUNCT
can-567	64	44	and	and	CCONJ
can-567	64	45	the	the	DET
can-567	64	46	algorithm	algorithm	NOUN
can-567	64	47	for	for	ADP
can-567	64	48	cnt	cnt	PROPN
can-567	64	49	parameters	parameter	NOUN
can-567	64	50	calculating	calculate	VERB
can-567	64	51	was	be	AUX
can-567	64	52	presented	present	VERB
can-567	64	53	,	,	PUNCT
can-567	64	54	namely	namely	ADV
can-567	64	55	,	,	PUNCT
can-567	64	56	the	the	DET
can-567	64	57	electrical	electrical	ADJ
can-567	64	58	resistance	resistance	NOUN
can-567	64	59	,	,	PUNCT
can-567	64	60	the	the	DET
can-567	64	61	dependence	dependence	NOUN
can-567	64	62	of	of	ADP
can-567	64	63	the	the	DET
can-567	64	64	cnt	cnt	PROPN
can-567	64	65	heating	heating	NOUN
can-567	64	66	temperature	temperature	NOUN
can-567	64	67	from	from	ADP
can-567	64	68	the	the	DET
can-567	64	69	current	current	ADJ
can-567	64	70	value	value	NOUN
can-567	64	71	.	.	PUNCT
can-567	65	1	2	2	X
can-567	65	2	.	.	X
can-567	65	3	experimental	experimental	ADJ
can-567	65	4	results	result	NOUN
can-567	65	5	carbon	carbon	NOUN
can-567	65	6	nanotubes	nanotube	NOUN
can-567	65	7	were	be	AUX
can-567	65	8	grown	grow	VERB
can-567	65	9	by	by	ADP
can-567	65	10	the	the	DET
can-567	65	11	chemical	chemical	NOUN
can-567	65	12	vapor	vapor	NOUN
can-567	65	13	deposition	deposition	NOUN
can-567	65	14	(	(	PUNCT
can-567	65	15	cvd	cvd	NOUN
can-567	65	16	)	)	PUNCT
can-567	65	17	method	method	NOUN
can-567	65	18	in	in	ADP
can-567	65	19	plasmalab	plasmalab	PROPN
can-567	65	20	system	system	NOUN
can-567	65	21	100	100	NUM
can-567	65	22	(	(	PUNCT
can-567	65	23	oxford	oxford	PROPN
can-567	65	24	instruments	instrument	NOUN
can-567	65	25	)	)	PUNCT
can-567	65	26	on	on	ADP
can-567	65	27	silicon	silicon	NOUN
can-567	65	28	substrate	substrate	NOUN
can-567	65	29	on	on	ADP
can-567	65	30	which	which	PRON
can-567	65	31	a	a	DET
can-567	65	32	catalyst	catalyst	NOUN
can-567	65	33	was	be	AUX
can-567	65	34	deposited	deposit	VERB
can-567	65	35	consisting	consist	VERB
can-567	65	36	of	of	ADP
can-567	65	37	a	a	DET
can-567	65	38	two	two	NUM
can-567	65	39	-	-	PUNCT
can-567	65	40	layer	layer	NOUN
can-567	65	41	metal	metal	NOUN
can-567	65	42	film	film	NOUN
can-567	65	43	:	:	PUNCT
can-567	65	44	titanium	titanium	NOUN
can-567	65	45	10	10	NUM
can-567	65	46	nm	nm	NOUN
can-567	65	47	and	and	CCONJ
can-567	65	48	nickel	nickel	NOUN
can-567	65	49	2	2	NUM
can-567	65	50	nm	nm	NOUN
can-567	65	51	.	.	PUNCT
can-567	66	1	the	the	DET
can-567	66	2	film	film	NOUN
can-567	66	3	of	of	ADP
can-567	66	4	the	the	DET
can-567	66	5	catalyst	catalyst	NOUN
can-567	66	6	was	be	AUX
can-567	66	7	covered	cover	VERB
can-567	66	8	with	with	ADP
can-567	66	9	silicon	silicon	NOUN
can-567	66	10	oxide	oxide	NOUN
can-567	66	11	,	,	PUNCT
can-567	66	12	in	in	ADP
can-567	66	13	which	which	PRON
can-567	66	14	windows	window	NOUN
can-567	66	15	were	be	AUX
can-567	66	16	opened	open	VERB
can-567	66	17	with	with	ADP
can-567	66	18	a	a	DET
can-567	66	19	diameter	diameter	NOUN
can-567	66	20	of	of	ADP
can-567	66	21	0.7	0.7	NUM
can-567	66	22	μm	μm	NOUN
can-567	66	23	.	.	PUNCT
can-567	67	1	the	the	DET
can-567	67	2	cnt	cnt	PROPN
can-567	67	3	growth	growth	NOUN
can-567	67	4	was	be	AUX
can-567	67	5	carried	carry	VERB
can-567	67	6	out	out	ADP
can-567	67	7	by	by	ADP
can-567	67	8	cvd	cvd	PROPN
can-567	67	9	method	method	PROPN
can-567	67	10	.	.	PUNCT
can-567	68	1	gas	gas	NOUN
can-567	68	2	flow	flow	NOUN
can-567	68	3	consisted	consist	VERB
can-567	68	4	of	of	ADP
can-567	68	5	an	an	DET
can-567	68	6	acetylene	acetylene	NOUN
can-567	68	7	with	with	ADP
can-567	68	8	addition	addition	NOUN
can-567	68	9	of	of	ADP
can-567	68	10	ammonia	ammonia	NOUN
can-567	68	11	in	in	ADP
can-567	68	12	a	a	DET
can-567	68	13	3:1	3:1	NUM
can-567	68	14	ratio	ratio	NOUN
can-567	68	15	rate	rate	NOUN
can-567	68	16	.	.	PUNCT
can-567	69	1	it	it	PRON
can-567	69	2	was	be	AUX
can-567	69	3	constant	constant	ADJ
can-567	69	4	during	during	ADP
can-567	69	5	the	the	DET
can-567	69	6	growth	growth	NOUN
can-567	69	7	process	process	NOUN
can-567	69	8	.	.	PUNCT
can-567	70	1	the	the	DET
can-567	70	2	synthesis	synthesis	NOUN
can-567	70	3	temperature	temperature	NOUN
can-567	70	4	was	be	AUX
can-567	70	5	600	600	NUM
can-567	70	6	°	°	NOUN
can-567	70	7	c	c	NOUN
can-567	70	8	.	.	PUNCT
can-567	71	1	as	as	ADP
can-567	71	2	a	a	DET
can-567	71	3	result	result	NOUN
can-567	71	4	,	,	PUNCT
can-567	71	5	single	single	ADJ
can-567	71	6	multi	multi	ADJ
can-567	71	7	-	-	ADJ
can-567	71	8	walled	walled	ADJ
can-567	71	9	carbon	carbon	NOUN
can-567	71	10	nanotubes	nanotube	NOUN
can-567	71	11	2	2	NUM
can-567	71	12	-	-	SYM
can-567	71	13	3	3	NUM
can-567	71	14	μm	μm	NOUN
can-567	71	15	in	in	ADP
can-567	71	16	height	height	NOUN
can-567	71	17	were	be	AUX
can-567	71	18	obtained	obtain	VERB
can-567	71	19	(	(	PUNCT
can-567	71	20	figure	figure	NOUN
can-567	71	21	1	1	NUM
can-567	71	22	)	)	PUNCT
can-567	71	23	.	.	PUNCT
can-567	72	1	figure	figure	NOUN
can-567	72	2	1	1	NUM
can-567	72	3	.	.	PUNCT
can-567	72	4	sem	sem	ADJ
can-567	72	5	image	image	NOUN
can-567	72	6	of	of	ADP
can-567	72	7	single	single	ADJ
can-567	72	8	multi	multi	ADJ
can-567	72	9	-	-	ADJ
can-567	72	10	walled	walled	ADJ
can-567	72	11	carbon	carbon	NOUN
can-567	72	12	nanotube	nanotube	NOUN
can-567	72	13	(	(	PUNCT
can-567	72	14	cathode	cathode	NOUN
can-567	72	15	)	)	PUNCT
can-567	72	16	and	and	CCONJ
can-567	72	17	tungsten	tungsten	VERB
can-567	72	18	tip	tip	NOUN
can-567	72	19	(	(	PUNCT
can-567	72	20	anode	anode	NOUN
can-567	72	21	)	)	PUNCT
can-567	72	22	.	.	PUNCT
can-567	73	1	the	the	DET
can-567	73	2	measurements	measurement	NOUN
can-567	73	3	were	be	AUX
can-567	73	4	carried	carry	VERB
can-567	73	5	out	out	ADP
can-567	73	6	in	in	ADP
can-567	73	7	a	a	DET
can-567	73	8	high	high	ADJ
can-567	73	9	vacuum	vacuum	NOUN
can-567	73	10	in	in	ADP
can-567	73	11	the	the	DET
can-567	73	12	chamber	chamber	NOUN
can-567	73	13	of	of	ADP
can-567	73	14	two	two	NUM
can-567	73	15	-	-	PUNCT
can-567	73	16	beam	beam	NOUN
can-567	73	17	fei	fei	PROPN
can-567	73	18	helios	helios	PROPN
can-567	73	19	nanolab	nanolab	VERB
can-567	73	20	650i	650i	ADJ
can-567	73	21	system	system	NOUN
can-567	73	22	.	.	PUNCT
can-567	74	1	a	a	DET
can-567	74	2	measuring	measure	VERB
can-567	74	3	electron	electron	NOUN
can-567	74	4	microscope	microscope	NOUN
can-567	74	5	could	could	AUX
can-567	74	6	obtain	obtain	VERB
can-567	74	7	images	image	NOUN
can-567	74	8	with	with	ADP
can-567	74	9	a	a	DET
can-567	74	10	resolution	resolution	NOUN
can-567	74	11	of	of	ADP
can-567	74	12	not	not	PART
can-567	74	13	worse	bad	ADJ
can-567	74	14	than	than	ADP
can-567	74	15	0.7	0.7	NUM
can-567	74	16	nm	nm	NOUN
can-567	74	17	at	at	ADP
can-567	74	18	an	an	DET
can-567	74	19	accelerating	accelerate	VERB
can-567	74	20	voltage	voltage	NOUN
can-567	74	21	of	of	ADP
can-567	74	22	not	not	PART
can-567	74	23	more	more	ADJ
can-567	74	24	than	than	ADP
can-567	74	25	1	1	NUM
can-567	74	26	kv	kv	NOUN
can-567	74	27	.	.	PUNCT
can-567	75	1	the	the	DET
can-567	75	2	pressure	pressure	NOUN
can-567	75	3	in	in	ADP
can-567	75	4	the	the	DET
can-567	75	5	measuring	measure	VERB
can-567	75	6	chamber	chamber	NOUN
can-567	75	7	was	be	AUX
can-567	75	8	510	510	NUM
can-567	75	9	-5	-5	X
can-567	75	10	pa	pa	PROPN
can-567	75	11	.	.	PUNCT
can-567	76	1	in	in	ADP
can-567	76	2	this	this	DET
can-567	76	3	chamber	chamber	NOUN
can-567	76	4	there	there	PRON
can-567	76	5	was	be	VERB
can-567	76	6	a	a	DET
can-567	76	7	probe	probe	NOUN
can-567	76	8	system	system	NOUN
can-567	76	9	kleindiek	kleindiek	VERB
can-567	76	10	nanotechnik	nanotechnik	X
can-567	76	11	with	with	ADP
can-567	76	12	4	4	NUM
can-567	76	13	separate	separate	ADJ
can-567	76	14	independent	independent	ADJ
can-567	76	15	manipulators	manipulator	NOUN
can-567	76	16	that	that	PRON
can-567	76	17	can	can	AUX
can-567	76	18	operate	operate	VERB
can-567	76	19	at	at	ADP
can-567	76	20	voltages	voltage	NOUN
can-567	76	21	up	up	ADP
can-567	76	22	to	to	ADP
can-567	76	23	150	150	NUM
can-567	76	24	v.	v.	ADP
can-567	76	25	each	each	DET
can-567	76	26	probe	probe	NOUN
can-567	76	27	had	have	VERB
can-567	76	28	its	its	PRON
can-567	76	29	own	own	ADJ
can-567	76	30	coaxial	coaxial	ADJ
can-567	76	31	connector	connector	NOUN
can-567	76	32	.	.	PUNCT
can-567	77	1	for	for	ADP
can-567	77	2	current	current	ADJ
can-567	77	3	-	-	PUNCT
can-567	77	4	voltage	voltage	NOUN
can-567	77	5	measurements	measurement	NOUN
can-567	77	6	on	on	ADP
can-567	77	7	dc	dc	PROPN
can-567	77	8	currents	current	NOUN
can-567	77	9	,	,	PUNCT
can-567	77	10	a	a	DET
can-567	77	11	programmable	programmable	ADJ
can-567	77	12	two	two	NUM
can-567	77	13	-	-	PUNCT
can-567	77	14	channel	channel	NOUN
can-567	77	15	source	source	NOUN
can-567	77	16	meter	meter	NOUN
can-567	77	17	source	source	NOUN
can-567	77	18	meter	meter	NOUN
can-567	77	19	2634b	2634b	NUM
can-567	77	20	from	from	ADP
can-567	77	21	keithley	keithley	PROPN
can-567	77	22	was	be	AUX
can-567	77	23	used	use	VERB
can-567	77	24	.	.	PUNCT
can-567	78	1	this	this	DET
can-567	78	2	device	device	NOUN
can-567	78	3	can	can	AUX
can-567	78	4	measure	measure	VERB
can-567	78	5	currents	current	NOUN
can-567	78	6	up	up	ADP
can-567	78	7	to	to	PART
can-567	78	8	10	10	NUM
can-567	78	9	-15	-15	NOUN
can-567	78	10	a.	a.	NOUN
can-567	78	11	it	it	PRON
can-567	78	12	is	be	AUX
can-567	78	13	equipped	equip	VERB
can-567	78	14	with	with	ADP
can-567	78	15	special	special	ADJ
can-567	78	16	shielded	shield	VERB
can-567	78	17	three	three	NUM
can-567	78	18	axial	axial	ADJ
can-567	78	19	leads	lead	NOUN
can-567	78	20	with	with	ADP
can-567	78	21	the	the	DET
can-567	78	22	function	function	NOUN
can-567	78	23	of	of	ADP
can-567	78	24	ultra	ultra	ADJ
can-567	78	25	-	-	ADJ
can-567	78	26	low	low	ADJ
can-567	78	27	currents	current	NOUN
can-567	78	28	compensation	compensation	NOUN
can-567	78	29	.	.	PUNCT
can-567	79	1	the	the	DET
can-567	79	2	input	input	NOUN
can-567	79	3	impedance	impedance	NOUN
can-567	79	4	of	of	ADP
can-567	79	5	source	source	NOUN
can-567	79	6	-	-	PUNCT
can-567	79	7	meter	meter	NOUN
can-567	79	8	(	(	PUNCT
can-567	79	9	over	over	ADP
can-567	79	10	100	100	NUM
can-567	79	11	volts	volt	NOUN
can-567	79	12	)	)	PUNCT
can-567	79	13	provides	provide	VERB
can-567	79	14	a	a	DET
can-567	79	15	minimum	minimum	ADJ
can-567	79	16	level	level	NOUN
can-567	79	17	of	of	ADP
can-567	79	18	the	the	DET
can-567	79	19	introduced	introduce	VERB
can-567	79	20	distortions	distortion	NOUN
can-567	79	21	and	and	CCONJ
can-567	79	22	errors	error	NOUN
can-567	79	23	in	in	ADP
can-567	79	24	tested	test	VERB
can-567	79	25	circuits	circuit	NOUN
can-567	79	26	during	during	ADP
can-567	79	27	the	the	DET
can-567	79	28	measurements	measurement	NOUN
can-567	79	29	for	for	ADP
can-567	79	30	this	this	DET
can-567	79	31	class	class	NOUN
can-567	79	32	of	of	ADP
can-567	79	33	instruments	instrument	NOUN
can-567	79	34	.	.	PUNCT
can-567	80	1	the	the	DET
can-567	80	2	voltage	voltage	NOUN
can-567	80	3	-	-	PUNCT
can-567	80	4	current	current	ADJ
can-567	80	5	characteristic	characteristic	NOUN
can-567	80	6	of	of	ADP
can-567	80	7	emission	emission	NOUN
can-567	80	8	current	current	NOUN
can-567	80	9	of	of	ADP
can-567	80	10	the	the	DET
can-567	80	11	single	single	ADJ
can-567	80	12	multi	multi	ADJ
can-567	80	13	-	-	ADJ
can-567	80	14	walled	walled	ADJ
can-567	80	15	cnt	cnt	PROPN
can-567	80	16	is	be	AUX
can-567	80	17	shown	show	VERB
can-567	80	18	in	in	ADP
can-567	80	19	figure	figure	NOUN
can-567	80	20	2	2	NUM
can-567	80	21	.	.	PUNCT
can-567	81	1	it	it	PRON
can-567	81	2	was	be	AUX
can-567	81	3	the	the	DET
can-567	81	4	starting	starting	NOUN
can-567	81	5	point	point	NOUN
can-567	81	6	for	for	ADP
can-567	81	7	further	further	ADJ
can-567	81	8	processing	processing	NOUN
can-567	81	9	.	.	PUNCT
can-567	82	1	the	the	DET
can-567	82	2	electrical	electrical	ADJ
can-567	82	3	circuit	circuit	NOUN
can-567	82	4	in	in	ADP
can-567	82	5	which	which	PRON
can-567	82	6	the	the	DET
can-567	82	7	emission	emission	NOUN
can-567	82	8	current	current	ADJ
can-567	82	9	flows	flow	NOUN
can-567	82	10	is	be	AUX
can-567	82	11	shown	show	VERB
can-567	82	12	in	in	ADP
can-567	82	13	the	the	DET
can-567	82	14	inset	inset	NOUN
can-567	82	15	of	of	ADP
can-567	82	16	figure	figure	NOUN
can-567	82	17	2	2	NUM
can-567	82	18	.	.	PUNCT
can-567	83	1	this	this	DET
can-567	83	2	current	current	ADJ
can-567	83	3	consists	consist	VERB
can-567	83	4	of	of	ADP
can-567	83	5	two	two	NUM
can-567	83	6	components	component	NOUN
can-567	83	7	:	:	PUNCT
can-567	83	8	its	its	PRON
can-567	83	9	nonlinear	nonlinear	ADJ
can-567	83	10	resistance	resistance	NOUN
can-567	83	11	characterizes	characterize	VERB
can-567	83	12	field	field	NOUN
can-567	83	13	emission	emission	NOUN
can-567	83	14	and	and	CCONJ
can-567	83	15	thermionic	thermionic	ADJ
can-567	83	16	emission	emission	NOUN
can-567	83	17	,	,	PUNCT
can-567	83	18	each	each	PRON
can-567	83	19	of	of	ADP
can-567	83	20	these	these	DET
can-567	83	21	processes	process	NOUN
can-567	83	22	(	(	PUNCT
can-567	83	23	rfe	rfe	NOUN
can-567	83	24	and	and	CCONJ
can-567	83	25	rte	rte	PROPN
can-567	83	26	)	)	PUNCT
can-567	83	27	.	.	PUNCT
can-567	84	1	the	the	DET
can-567	84	2	total	total	ADJ
can-567	84	3	voltage	voltage	NOUN
can-567	84	4	applied	apply	VERB
can-567	84	5	to	to	ADP
can-567	84	6	the	the	DET
can-567	84	7	circuit	circuit	NOUN
can-567	84	8	(	(	PUNCT
can-567	84	9	u	u	NOUN
can-567	84	10	)	)	PUNCT
can-567	84	11	is	be	AUX
can-567	84	12	composed	compose	VERB
can-567	84	13	of	of	ADP
can-567	84	14	the	the	DET
can-567	84	15	sum	sum	NOUN
can-567	84	16	of	of	ADP
can-567	84	17	the	the	DET
can-567	84	18	voltages	voltage	NOUN
can-567	84	19	,	,	PUNCT
can-567	84	20	one	one	NUM
can-567	84	21	of	of	ADP
can-567	84	22	which	which	PRON
can-567	84	23	falls	fall	VERB
can-567	84	24	on	on	ADP
can-567	84	25	the	the	DET
can-567	84	26	resistance	resistance	NOUN
can-567	84	27	of	of	ADP
can-567	84	28	the	the	DET
can-567	84	29	nanotube	nanotube	NOUN
can-567	84	30	(	(	PUNCT
can-567	84	31	ur	ur	INTJ
can-567	84	32	)	)	PUNCT
can-567	84	33	,	,	PUNCT
can-567	84	34	and	and	CCONJ
can-567	84	35	the	the	DET
can-567	84	36	other	other	ADJ
can-567	84	37	one	one	NUM
can-567	84	38	—	—	PUNCT
can-567	84	39	on	on	ADP
can-567	84	40	the	the	DET
can-567	84	41	nonlinear	nonlinear	ADJ
can-567	84	42	resistance	resistance	NOUN
can-567	84	43	of	of	ADP
can-567	84	44	the	the	DET
can-567	84	45	emitting	emit	VERB
can-567	84	46	tip	tip	NOUN
can-567	84	47	of	of	ADP
can-567	84	48	the	the	DET
can-567	84	49	nanotube	nanotube	NOUN
can-567	84	50	(	(	PUNCT
can-567	84	51	ue	ue	ADJ
can-567	84	52	)	)	PUNCT
can-567	84	53	.	.	PUNCT
can-567	85	1	we	we	PRON
can-567	85	2	must	must	AUX
can-567	85	3	divide	divide	VERB
can-567	85	4	the	the	DET
can-567	85	5	current	current	NOUN
can-567	85	6	of	of	ADP
can-567	85	7	the	the	DET
can-567	85	8	current	current	ADJ
can-567	85	9	-	-	PUNCT
can-567	85	10	voltage	voltage	NOUN
can-567	85	11	characteristic	characteristic	NOUN
can-567	85	12	into	into	ADP
can-567	85	13	two	two	NUM
can-567	85	14	components	component	NOUN
can-567	85	15	.	.	PUNCT
can-567	86	1	one	one	NUM
can-567	86	2	component	component	NOUN
can-567	86	3	is	be	AUX
can-567	86	4	the	the	DET
can-567	86	5	field	field	NOUN
can-567	86	6	emission	emission	NOUN
can-567	86	7	current	current	NOUN
can-567	86	8	,	,	PUNCT
can-567	86	9	and	and	CCONJ
can-567	86	10	the	the	DET
can-567	86	11	second	second	ADJ
can-567	86	12	component	component	NOUN
can-567	86	13	is	be	AUX
can-567	86	14	the	the	DET
can-567	86	15	thermionic	thermionic	ADJ
can-567	86	16	current	current	NOUN
can-567	86	17	.	.	PUNCT
can-567	87	1	these	these	DET
can-567	87	2	components	component	NOUN
can-567	87	3	are	be	AUX
can-567	87	4	determined	determine	VERB
can-567	87	5	by	by	ADP
can-567	87	6	the	the	DET
can-567	87	7	following	follow	VERB
can-567	87	8	sequence	sequence	NOUN
can-567	87	9	of	of	ADP
can-567	87	10	actions	action	NOUN
can-567	87	11	:	:	PUNCT
can-567	87	12	1	1	X
can-567	87	13	)	)	PUNCT
can-567	87	14	the	the	DET
can-567	87	15	field	field	NOUN
can-567	87	16	emission	emission	NOUN
can-567	87	17	current	current	NOUN
can-567	87	18	is	be	AUX
can-567	87	19	calculated	calculate	VERB
can-567	87	20	(	(	PUNCT
can-567	87	21	the	the	DET
can-567	87	22	calculations	calculation	NOUN
can-567	87	23	are	be	AUX
can-567	87	24	shown	show	VERB
can-567	87	25	in	in	ADP
can-567	87	26	the	the	DET
can-567	87	27	following	follow	VERB
can-567	87	28	subsection	subsection	NOUN
can-567	87	29	)	)	PUNCT
can-567	87	30	.	.	PUNCT
can-567	88	1	the	the	DET
can-567	88	2	work	work	NOUN
can-567	88	3	function	function	NOUN
can-567	88	4	is	be	AUX
can-567	88	5	selected	select	VERB
can-567	88	6	in	in	ADP
can-567	88	7	such	such	ADJ
can-567	88	8	way	way	NOUN
can-567	88	9	that	that	SCONJ
can-567	88	10	the	the	DET
can-567	88	11	field	field	NOUN
can-567	88	12	-	-	PUNCT
can-567	88	13	emission	emission	NOUN
can-567	88	14	current	current	NOUN
can-567	88	15	coincides	coincide	VERB
can-567	88	16	with	with	ADP
can-567	88	17	the	the	DET
can-567	88	18	initial	initial	ADJ
can-567	88	19	section	section	NOUN
can-567	88	20	of	of	ADP
can-567	88	21	the	the	DET
can-567	88	22	experimental	experimental	ADJ
can-567	88	23	voltage	voltage	NOUN
can-567	88	24	-	-	PUNCT
can-567	88	25	current	current	ADJ
can-567	88	26	characteristic	characteristic	NOUN
can-567	88	27	(	(	PUNCT
can-567	88	28	figure	figure	NOUN
can-567	88	29	2	2	NUM
can-567	88	30	)	)	PUNCT
can-567	88	31	.	.	PUNCT
can-567	89	1	this	this	DET
can-567	89	2	calculation	calculation	NOUN
can-567	89	3	allows	allow	VERB
can-567	89	4	us	we	PRON
can-567	89	5	to	to	PART
can-567	89	6	determine	determine	VERB
can-567	89	7	ue	ue	PROPN
can-567	89	8	.	.	PROPN
can-567	89	9	52	52	NUM
can-567	89	10	figure	figure	NOUN
can-567	89	11	2	2	NUM
can-567	89	12	.	.	PUNCT
can-567	89	13	voltage	voltage	NOUN
can-567	89	14	-	-	PUNCT
can-567	89	15	current	current	ADJ
can-567	89	16	characteristic	characteristic	NOUN
can-567	89	17	of	of	ADP
can-567	89	18	the	the	DET
can-567	89	19	emission	emission	NOUN
can-567	89	20	current	current	NOUN
can-567	89	21	of	of	ADP
can-567	89	22	the	the	DET
can-567	89	23	single	single	ADJ
can-567	89	24	multi	multi	ADJ
can-567	89	25	-	-	ADJ
can-567	89	26	walled	walled	ADJ
can-567	89	27	cnt	cnt	NOUN
can-567	89	28	:	:	PUNCT
can-567	89	29	1	1	NUM
can-567	89	30	—	—	PUNCT
can-567	89	31	experimental	experimental	ADJ
can-567	89	32	;	;	PUNCT
can-567	89	33	2	2	NUM
can-567	89	34	—	—	PUNCT
can-567	89	35	modeling	modeling	NOUN
can-567	89	36	by	by	ADP
can-567	89	37	formula	formula	NOUN
can-567	89	38	;	;	PUNCT
can-567	89	39	top	top	ADJ
can-567	89	40	corner	corner	NOUN
can-567	89	41	:	:	PUNCT
can-567	89	42	equivalent	equivalent	ADJ
can-567	89	43	circuit	circuit	NOUN
can-567	89	44	of	of	ADP
can-567	89	45	cnt	cnt	PROPN
can-567	89	46	.	.	PROPN
can-567	89	47	2	2	NUM
can-567	89	48	)	)	PUNCT
can-567	89	49	the	the	DET
can-567	89	50	voltage	voltage	NOUN
can-567	89	51	of	of	ADP
can-567	89	52	the	the	DET
can-567	89	53	model	model	NOUN
can-567	89	54	curve	curve	NOUN
can-567	89	55	,	,	PUNCT
can-567	89	56	there	there	PRON
can-567	89	57	is	be	VERB
can-567	89	58	a	a	DET
can-567	89	59	deduction	deduction	NOUN
can-567	89	60	from	from	ADP
can-567	89	61	the	the	DET
can-567	89	62	voltage	voltage	NOUN
can-567	89	63	of	of	ADP
can-567	89	64	the	the	DET
can-567	89	65	experimental	experimental	ADJ
can-567	89	66	curve	curve	NOUN
can-567	89	67	for	for	ADP
can-567	89	68	each	each	DET
can-567	89	69	current	current	ADJ
can-567	89	70	value	value	NOUN
can-567	89	71	.	.	PUNCT
can-567	90	1	the	the	DET
can-567	90	2	difference	difference	NOUN
can-567	90	3	of	of	ADP
can-567	90	4	these	these	DET
can-567	90	5	voltages	voltage	NOUN
can-567	90	6	makes	make	VERB
can-567	90	7	it	it	PRON
can-567	90	8	possible	possible	ADJ
can-567	90	9	to	to	PART
can-567	90	10	determine	determine	VERB
can-567	90	11	ur	ur	INTJ
can-567	90	12	(	(	PUNCT
can-567	90	13	figure	figure	NOUN
can-567	90	14	2	2	NUM
can-567	90	15	)	)	PUNCT
can-567	90	16	,	,	PUNCT
can-567	90	17	to	to	PART
can-567	90	18	construct	construct	VERB
can-567	90	19	the	the	DET
can-567	90	20	current	current	ADJ
can-567	90	21	-	-	PUNCT
can-567	90	22	voltage	voltage	NOUN
can-567	90	23	characteristic	characteristic	NOUN
can-567	90	24	of	of	ADP
can-567	90	25	the	the	DET
can-567	90	26	series	series	NOUN
can-567	90	27	resistance	resistance	NOUN
can-567	90	28	of	of	ADP
can-567	90	29	a	a	DET
can-567	90	30	carbon	carbon	NOUN
can-567	90	31	nanotube	nanotube	NOUN
can-567	90	32	and	and	CCONJ
can-567	90	33	calculate	calculate	VERB
can-567	90	34	this	this	DET
can-567	90	35	resistance	resistance	NOUN
can-567	90	36	r=10	r=10	PUNCT
can-567	90	37	mω	mω	NOUN
can-567	90	38	.	.	PUNCT
can-567	91	1	then	then	ADV
can-567	91	2	the	the	DET
can-567	91	3	model	model	NOUN
can-567	91	4	value	value	NOUN
can-567	91	5	of	of	ADP
can-567	91	6	the	the	DET
can-567	91	7	voltage	voltage	NOUN
can-567	91	8	drop	drop	NOUN
can-567	91	9	across	across	ADP
can-567	91	10	the	the	DET
can-567	91	11	series	series	NOUN
can-567	91	12	resistance	resistance	NOUN
can-567	91	13	of	of	ADP
can-567	91	14	a	a	DET
can-567	91	15	nanotube	nanotube	NOUN
can-567	91	16	is	be	AUX
can-567	91	17	:	:	PUNCT
can-567	91	18	ur	ur	INTJ
can-567	91	19	=	=	NOUN
can-567	91	20	i·r	i·r	NOUN
can-567	91	21	.	.	NOUN
can-567	92	1	3	3	X
can-567	92	2	)	)	PUNCT
can-567	92	3	we	we	PRON
can-567	92	4	are	be	AUX
can-567	92	5	conducting	conduct	VERB
can-567	92	6	the	the	DET
can-567	92	7	second	second	ADJ
can-567	92	8	stage	stage	NOUN
can-567	92	9	of	of	ADP
can-567	92	10	modeling	model	VERB
can-567	92	11	the	the	DET
can-567	92	12	volt	volt	NOUN
can-567	92	13	-	-	PUNCT
can-567	92	14	ampere	ampere	NOUN
can-567	92	15	characteristic	characteristic	NOUN
can-567	92	16	.	.	PUNCT
can-567	93	1	the	the	DET
can-567	93	2	total	total	ADJ
can-567	93	3	theoretical	theoretical	ADJ
can-567	93	4	voltage	voltage	NOUN
can-567	93	5	(	(	PUNCT
can-567	93	6	ut	ut	PROPN
can-567	93	7	)	)	PUNCT
can-567	93	8	,	,	PUNCT
can-567	93	9	which	which	PRON
can-567	93	10	should	should	AUX
can-567	93	11	be	be	AUX
can-567	93	12	on	on	ADP
can-567	93	13	the	the	DET
can-567	93	14	emission	emission	NOUN
can-567	93	15	system	system	NOUN
can-567	93	16	,	,	PUNCT
can-567	93	17	is	be	AUX
can-567	93	18	calculated	calculate	VERB
can-567	93	19	as	as	ADP
can-567	93	20	the	the	DET
can-567	93	21	sum	sum	NOUN
can-567	93	22	of	of	ADP
can-567	93	23	the	the	DET
can-567	93	24	voltage	voltage	NOUN
can-567	93	25	on	on	ADP
can-567	93	26	the	the	DET
can-567	93	27	nonlinear	nonlinear	ADJ
can-567	93	28	resistance	resistance	NOUN
can-567	93	29	of	of	ADP
can-567	93	30	the	the	DET
can-567	93	31	emitting	emit	VERB
can-567	93	32	tip	tip	NOUN
can-567	93	33	of	of	ADP
can-567	93	34	the	the	DET
can-567	93	35	nanotube	nanotube	NOUN
can-567	93	36	(	(	PUNCT
can-567	93	37	ue	ue	INTJ
can-567	93	38	)	)	PUNCT
can-567	93	39	and	and	CCONJ
can-567	93	40	the	the	DET
can-567	93	41	series	series	NOUN
can-567	93	42	resistance	resistance	NOUN
can-567	93	43	(	(	PUNCT
can-567	93	44	ur	ur	INTJ
can-567	93	45	)	)	PUNCT
can-567	93	46	.	.	PUNCT
can-567	94	1	we	we	PRON
can-567	94	2	calculate	calculate	VERB
can-567	94	3	the	the	DET
can-567	94	4	difference	difference	NOUN
can-567	94	5	between	between	ADP
can-567	94	6	the	the	DET
can-567	94	7	theoretical	theoretical	ADJ
can-567	94	8	and	and	CCONJ
can-567	94	9	experimental	experimental	ADJ
can-567	94	10	voltage	voltage	NOUN
can-567	94	11	drops	drop	NOUN
can-567	94	12	at	at	ADP
can-567	94	13	each	each	DET
can-567	94	14	current	current	ADJ
can-567	94	15	value	value	NOUN
can-567	94	16	:	:	PUNCT
can-567	94	17	ut－u	ut－u	PROPN
can-567	94	18	=	=	SYM
can-567	94	19	ue＋ur－u	ue＋ur－u	PROPN
can-567	94	20	.	.	PUNCT
can-567	95	1	the	the	DET
can-567	95	2	result	result	NOUN
can-567	95	3	is	be	AUX
can-567	95	4	a	a	DET
can-567	95	5	voltage	voltage	NOUN
can-567	95	6	-	-	PUNCT
can-567	95	7	current	current	ADJ
can-567	95	8	characteristic	characteristic	NOUN
can-567	95	9	of	of	ADP
can-567	95	10	the	the	DET
can-567	95	11	section	section	NOUN
can-567	95	12	,	,	PUNCT
can-567	95	13	which	which	PRON
can-567	95	14	contains	contain	VERB
can-567	95	15	two	two	NUM
can-567	95	16	parallel	parallel	ADJ
can-567	95	17	non	non	ADJ
can-567	95	18	-	-	ADJ
can-567	95	19	linear	linear	ADJ
can-567	95	20	resistances	resistance	NOUN
can-567	95	21	(	(	PUNCT
can-567	95	22	rfe	rfe	NOUN
can-567	95	23	and	and	CCONJ
can-567	95	24	rte	rte	PROPN
can-567	95	25	)	)	PUNCT
can-567	95	26	.	.	PUNCT
can-567	96	1	the	the	DET
can-567	96	2	result	result	NOUN
can-567	96	3	of	of	ADP
can-567	96	4	the	the	DET
can-567	96	5	transformations	transformation	NOUN
can-567	96	6	is	be	AUX
can-567	96	7	shown	show	VERB
can-567	96	8	in	in	ADP
can-567	96	9	figure	figure	NOUN
can-567	96	10	3	3	NUM
can-567	96	11	.	.	PUNCT
can-567	97	1	this	this	DET
can-567	97	2	figure	figure	NOUN
can-567	97	3	shows	show	VERB
can-567	97	4	the	the	DET
can-567	97	5	initial	initial	ADJ
can-567	97	6	experimental	experimental	ADJ
can-567	97	7	current	current	ADJ
can-567	97	8	ed	ed	NOUN
can-567	97	9	.	.	PUNCT
can-567	98	1	(	(	PUNCT
can-567	98	2	1	1	NUM
can-567	98	3	)	)	PUNCT
can-567	98	4	;	;	PUNCT
can-567	98	5	field	field	NOUN
can-567	98	6	emission	emission	NOUN
can-567	98	7	current	current	ADJ
can-567	98	8	ed	ed	NOUN
can-567	98	9	.	.	PUNCT
can-567	99	1	(	(	PUNCT
can-567	99	2	2	2	NUM
can-567	99	3	)	)	PUNCT
can-567	99	4	;	;	PUNCT
can-567	99	5	the	the	DET
can-567	99	6	experimental	experimental	ADJ
can-567	99	7	section	section	NOUN
can-567	99	8	of	of	ADP
can-567	99	9	negative	negative	ADJ
can-567	99	10	resistance	resistance	NOUN
can-567	99	11	ed	ed	NOUN
can-567	99	12	.	.	PUNCT
can-567	100	1	(	(	PUNCT
can-567	100	2	3	3	NUM
can-567	100	3	)	)	PUNCT
can-567	100	4	.	.	PUNCT
can-567	101	1	the	the	DET
can-567	101	2	voltage	voltage	NOUN
can-567	101	3	reaches	reach	VERB
can-567	101	4	a	a	DET
can-567	101	5	critical	critical	ADJ
can-567	101	6	value	value	NOUN
can-567	101	7	(	(	PUNCT
can-567	101	8	uc	uc	PROPN
can-567	101	9	)	)	PUNCT
can-567	101	10	at	at	ADP
can-567	101	11	a	a	DET
can-567	101	12	critical	critical	ADJ
can-567	101	13	value	value	NOUN
can-567	101	14	of	of	ADP
can-567	101	15	the	the	DET
can-567	101	16	current	current	ADJ
can-567	101	17	(	(	PUNCT
can-567	101	18	ic	ic	NUM
can-567	101	19	)	)	PUNCT
can-567	101	20	.	.	PUNCT
can-567	102	1	further	further	ADJ
can-567	102	2	increases	increase	NOUN
can-567	102	3	of	of	ADP
can-567	102	4	the	the	DET
can-567	102	5	current	current	NOUN
can-567	102	6	leads	lead	VERB
can-567	102	7	to	to	ADP
can-567	102	8	a	a	DET
can-567	102	9	heating	heating	NOUN
can-567	102	10	of	of	ADP
can-567	102	11	the	the	DET
can-567	102	12	nanotube	nanotube	NOUN
can-567	102	13	,	,	PUNCT
can-567	102	14	as	as	ADP
can-567	102	15	a	a	DET
can-567	102	16	result	result	NOUN
can-567	102	17	of	of	ADP
can-567	102	18	which	which	PRON
can-567	102	19	,	,	PUNCT
can-567	102	20	the	the	DET
can-567	102	21	resistance	resistance	NOUN
can-567	102	22	for	for	ADP
can-567	102	23	the	the	DET
can-567	102	24	thermionic	thermionic	ADJ
can-567	102	25	current	current	ADJ
can-567	102	26	decreases	decrease	NOUN
can-567	102	27	.	.	PUNCT
can-567	103	1	this	this	PRON
can-567	103	2	leads	lead	VERB
can-567	103	3	to	to	ADP
can-567	103	4	a	a	DET
can-567	103	5	decrease	decrease	NOUN
can-567	103	6	in	in	ADP
can-567	103	7	voltage	voltage	NOUN
can-567	103	8	drop	drop	NOUN
can-567	103	9	across	across	ADP
can-567	103	10	the	the	DET
can-567	103	11	parallel	parallel	ADJ
can-567	103	12	connection	connection	NOUN
can-567	103	13	section	section	NOUN
can-567	103	14	of	of	ADP
can-567	103	15	nonlinear	nonlinear	ADJ
can-567	103	16	resistances	resistance	NOUN
can-567	103	17	.	.	PUNCT
can-567	104	1	the	the	DET
can-567	104	2	voltage	voltage	NOUN
can-567	104	3	at	at	ADP
can-567	104	4	the	the	DET
can-567	104	5	end	end	NOUN
can-567	104	6	of	of	ADP
can-567	104	7	the	the	DET
can-567	104	8	nanotube	nanotube	NOUN
can-567	104	9	,	,	PUNCT
can-567	104	10	which	which	PRON
can-567	104	11	emits	emit	VERB
can-567	104	12	electrons	electron	NOUN
can-567	104	13	,	,	PUNCT
can-567	104	14	falls	fall	VERB
can-567	104	15	and	and	CCONJ
can-567	104	16	the	the	DET
can-567	104	17	emission	emission	NOUN
can-567	104	18	current	current	ADJ
can-567	104	19	decreases	decrease	NOUN
can-567	104	20	.	.	PUNCT
can-567	105	1	it	it	PRON
can-567	105	2	is	be	AUX
can-567	105	3	evident	evident	ADJ
can-567	105	4	that	that	SCONJ
can-567	105	5	when	when	SCONJ
can-567	105	6	cnt	cnt	PROPN
can-567	105	7	’s	’s	PART
can-567	105	8	tip	tip	NOUN
can-567	105	9	is	be	AUX
can-567	105	10	heated	heat	VERB
can-567	105	11	to	to	ADP
can-567	105	12	a	a	DET
can-567	105	13	certain	certain	ADJ
can-567	105	14	critical	critical	ADJ
can-567	105	15	temperature	temperature	NOUN
can-567	105	16	,	,	PUNCT
can-567	105	17	a	a	DET
can-567	105	18	thermionic	thermionic	ADJ
can-567	105	19	emission	emission	NOUN
can-567	105	20	current	current	NOUN
can-567	105	21	appears	appear	VERB
can-567	105	22	,	,	PUNCT
can-567	105	23	and	and	CCONJ
can-567	105	24	the	the	DET
can-567	105	25	voltage	voltage	NOUN
can-567	105	26	at	at	ADP
can-567	105	27	the	the	DET
can-567	105	28	emitting	emit	VERB
can-567	105	29	end	end	NOUN
can-567	105	30	(	(	PUNCT
can-567	105	31	ue	ue	NOUN
can-567	105	32	)	)	PUNCT
can-567	105	33	falls	fall	VERB
can-567	105	34	.	.	PUNCT
can-567	106	1	a	a	DET
can-567	106	2	section	section	NOUN
can-567	106	3	of	of	ADP
can-567	106	4	negative	negative	ADJ
can-567	106	5	resistance	resistance	NOUN
can-567	106	6	is	be	AUX
can-567	106	7	present	present	ADJ
can-567	106	8	,	,	PUNCT
can-567	106	9	then	then	ADV
can-567	106	10	:	:	PUNCT
can-567	106	11	i＞ic	i＞ic	X
can-567	106	12	.	.	PUNCT
can-567	107	1	the	the	DET
can-567	107	2	current	current	NOUN
can-567	107	3	that	that	PRON
can-567	107	4	exceeds	exceed	VERB
can-567	107	5	the	the	DET
can-567	107	6	critical	critical	ADJ
can-567	107	7	region	region	NOUN
can-567	107	8	is	be	AUX
can-567	107	9	thermionic	thermionic	ADJ
can-567	107	10	in	in	ADP
can-567	107	11	fact	fact	NOUN
can-567	107	12	.	.	PUNCT
can-567	108	1	the	the	DET
can-567	108	2	field	field	NOUN
can-567	108	3	emission	emission	NOUN
can-567	108	4	current	current	NOUN
can-567	108	5	does	do	AUX
can-567	108	6	not	not	PART
can-567	108	7	exceed	exceed	VERB
can-567	108	8	the	the	DET
can-567	108	9	critical	critical	ADJ
can-567	108	10	current	current	NOUN
can-567	108	11	.	.	PUNCT
can-567	109	1	thus	thus	ADV
can-567	109	2	,	,	PUNCT
can-567	109	3	the	the	DET
can-567	109	4	thermionic	thermionic	ADJ
can-567	109	5	current	current	ADJ
can-567	109	6	component	component	NOUN
can-567	109	7	dominates	dominate	VERB
can-567	109	8	when	when	SCONJ
can-567	109	9	the	the	DET
can-567	109	10	total	total	ADJ
can-567	109	11	current	current	ADJ
can-567	109	12	density	density	NOUN
can-567	109	13	exceeds	exceed	VERB
can-567	109	14	a	a	DET
can-567	109	15	critical	critical	ADJ
can-567	109	16	value	value	NOUN
can-567	109	17	.	.	PUNCT
can-567	110	1	this	this	PRON
can-567	110	2	is	be	AUX
can-567	110	3	because	because	SCONJ
can-567	110	4	the	the	DET
can-567	110	5	end	end	NOUN
can-567	110	6	of	of	ADP
can-567	110	7	the	the	DET
can-567	110	8	tube	tube	NOUN
can-567	110	9	is	be	AUX
can-567	110	10	heating	heat	VERB
can-567	110	11	when	when	SCONJ
can-567	110	12	the	the	DET
can-567	110	13	current	current	ADJ
can-567	110	14	flows	flow	VERB
can-567	110	15	.	.	PUNCT
can-567	111	1	the	the	DET
can-567	111	2	temperature	temperature	NOUN
can-567	111	3	of	of	ADP
can-567	111	4	the	the	DET
can-567	111	5	end	end	NOUN
can-567	111	6	of	of	ADP
can-567	111	7	the	the	DET
can-567	111	8	tube	tube	NOUN
can-567	111	9	grows	grow	VERB
can-567	111	10	.	.	PUNCT
can-567	112	1	its	its	PRON
can-567	112	2	temperature	temperature	NOUN
can-567	112	3	can	can	AUX
can-567	112	4	reach	reach	VERB
can-567	112	5	several	several	ADJ
can-567	112	6	thousand	thousand	NUM
can-567	112	7	degrees	degree	NOUN
can-567	112	8	.	.	PUNCT
can-567	113	1	this	this	DET
can-567	113	2	temperature	temperature	NOUN
can-567	113	3	leads	lead	VERB
can-567	113	4	to	to	ADP
can-567	113	5	cnt	cnt	PROPN
can-567	113	6	destruction	destruction	NOUN
can-567	113	7	and	and	CCONJ
can-567	113	8	the	the	DET
can-567	113	9	emission	emission	NOUN
can-567	113	10	current	current	NOUN
can-567	113	11	degrades	degrade	VERB
can-567	113	12	.	.	PUNCT
can-567	114	1	the	the	DET
can-567	114	2	phenomenon	phenomenon	NOUN
can-567	114	3	of	of	ADP
can-567	114	4	degradation	degradation	NOUN
can-567	114	5	of	of	ADP
can-567	114	6	the	the	DET
can-567	114	7	field	field	NOUN
can-567	114	8	emission	emission	NOUN
can-567	114	9	current	current	NOUN
can-567	114	10	is	be	AUX
can-567	114	11	due	due	ADJ
can-567	114	12	to	to	ADP
can-567	114	13	overheating	overheat	VERB
can-567	114	14	of	of	ADP
can-567	114	15	the	the	DET
can-567	114	16	nanotube	nanotube	NOUN
can-567	114	17	.	.	PUNCT
can-567	115	1	below	below	ADV
can-567	115	2	,	,	PUNCT
can-567	115	3	we	we	PRON
can-567	115	4	will	will	AUX
can-567	115	5	carry	carry	VERB
can-567	115	6	out	out	ADP
can-567	115	7	the	the	DET
can-567	115	8	necessary	necessary	ADJ
can-567	115	9	calculations	calculation	NOUN
can-567	115	10	to	to	PART
can-567	115	11	determine	determine	VERB
can-567	115	12	the	the	DET
can-567	115	13	conditions	condition	NOUN
can-567	115	14	under	under	ADP
can-567	115	15	which	which	PRON
can-567	115	16	the	the	DET
can-567	115	17	emission	emission	NOUN
can-567	115	18	process	process	NOUN
can-567	115	19	will	will	AUX
can-567	115	20	be	be	AUX
can-567	115	21	stable	stable	ADJ
can-567	115	22	.	.	PUNCT
can-567	116	1	3	3	X
can-567	116	2	.	.	X
can-567	116	3	modeling	model	VERB
can-567	116	4	3.1	3.1	NUM
can-567	116	5	.	.	PUNCT
can-567	117	1	calculation	calculation	NOUN
can-567	117	2	of	of	ADP
can-567	117	3	the	the	DET
can-567	117	4	currents	current	NOUN
can-567	117	5	of	of	ADP
can-567	117	6	the	the	DET
can-567	117	7	field	field	NOUN
can-567	117	8	emission	emission	NOUN
can-567	117	9	of	of	ADP
can-567	117	10	a	a	DET
can-567	117	11	carbon	carbon	NOUN
can-567	117	12	nanotube	nanotube	NOUN
can-567	117	13	(	(	PUNCT
can-567	117	14	cnt	cnt	PROPN
can-567	117	15	)	)	PUNCT
can-567	117	16	the	the	DET
can-567	117	17	efficiency	efficiency	NOUN
can-567	117	18	of	of	ADP
can-567	117	19	field	field	NOUN
can-567	117	20	emission	emission	NOUN
can-567	117	21	depends	depend	VERB
can-567	117	22	essentially	essentially	ADV
can-567	117	23	on	on	ADP
can-567	117	24	the	the	DET
can-567	117	25	electric	electric	ADJ
can-567	117	26	field	field	NOUN
can-567	117	27	strength	strength	NOUN
can-567	117	28	near	near	ADP
can-567	117	29	the	the	DET
can-567	117	30	emitting	emit	VERB
can-567	117	31	surface	surface	NOUN
can-567	117	32	.	.	PUNCT
can-567	118	1	therefore	therefore	ADV
can-567	118	2	,	,	PUNCT
can-567	118	3	the	the	DET
can-567	118	4	electric	electric	ADJ
can-567	118	5	field	field	NOUN
can-567	118	6	strength	strength	NOUN
can-567	118	7	requires	require	VERB
can-567	118	8	an	an	DET
can-567	118	9	exact	exact	ADJ
can-567	118	10	calculation	calculation	NOUN
can-567	118	11	.	.	PUNCT
can-567	119	1	the	the	DET
can-567	119	2	calculation	calculation	NOUN
can-567	119	3	is	be	AUX
can-567	119	4	carried	carry	VERB
can-567	119	5	out	out	ADP
can-567	119	6	in	in	ADP
can-567	119	7	two	two	NUM
can-567	119	8	stages	stage	NOUN
can-567	119	9	:	:	PUNCT
can-567	119	10	first	first	ADV
can-567	119	11	,	,	PUNCT
can-567	119	12	the	the	DET
can-567	119	13	potential	potential	ADJ
can-567	119	14	distribution	distribution	NOUN
can-567	119	15	and	and	CCONJ
can-567	119	16	the	the	DET
can-567	119	17	magnitude	magnitude	NOUN
can-567	119	18	of	of	ADP
can-567	119	19	the	the	DET
can-567	119	20	electric	electric	ADJ
can-567	119	21	field	field	NOUN
can-567	119	22	at	at	ADP
can-567	119	23	the	the	DET
can-567	119	24	end	end	NOUN
can-567	119	25	of	of	ADP
can-567	119	26	the	the	DET
can-567	119	27	tube	tube	NOUN
can-567	119	28	are	be	AUX
can-567	119	29	calculated	calculate	VERB
can-567	119	30	;	;	PUNCT
can-567	119	31	secondly	secondly	ADV
can-567	119	32	,	,	PUNCT
can-567	119	33	the	the	DET
can-567	119	34	current	current	ADJ
can-567	119	35	density	density	NOUN
can-567	119	36	of	of	ADP
can-567	119	37	the	the	DET
can-567	119	38	cathode	cathode	NOUN
can-567	119	39	is	be	AUX
can-567	119	40	calculated	calculate	VERB
can-567	119	41	.	.	PUNCT
can-567	120	1	the	the	DET
can-567	120	2	calculation	calculation	NOUN
can-567	120	3	of	of	ADP
can-567	120	4	the	the	DET
can-567	120	5	electric	electric	ADJ
can-567	120	6	field	field	NOUN
can-567	120	7	potential	potential	ADJ
can-567	120	8	distribution	distribution	NOUN
can-567	120	9	is	be	AUX
can-567	120	10	carried	carry	VERB
can-567	120	11	out	out	ADP
can-567	120	12	in	in	ADP
can-567	120	13	the	the	DET
can-567	120	14	classical	classical	ADJ
can-567	120	15	approximation	approximation	NOUN
can-567	120	16	.	.	PUNCT
can-567	121	1	we	we	PRON
can-567	121	2	applied	apply	VERB
can-567	121	3	a	a	DET
can-567	121	4	model	model	NOUN
can-567	121	5	in	in	ADP
can-567	121	6	which	which	PRON
can-567	121	7	a	a	DET
can-567	121	8	cnt	cnt	PROPN
can-567	121	9	is	be	AUX
can-567	121	10	a	a	DET
can-567	121	11	solid	solid	ADJ
can-567	121	12	body	body	NOUN
can-567	121	13	of	of	ADP
can-567	121	14	cylindrical	cylindrical	ADJ
can-567	121	15	shape	shape	NOUN
can-567	121	16	.	.	PUNCT
can-567	122	1	the	the	DET
can-567	122	2	end	end	NOUN
can-567	122	3	of	of	ADP
can-567	122	4	this	this	DET
can-567	122	5	body	body	NOUN
can-567	122	6	represents	represent	VERB
can-567	122	7	a	a	DET
can-567	122	8	hemisphere	hemisphere	NOUN
can-567	122	9	(	(	PUNCT
can-567	122	10	cnt	cnt	X
can-567	122	11	with	with	ADP
can-567	122	12	a	a	DET
can-567	122	13	closed	closed	ADJ
can-567	122	14	end	end	NOUN
can-567	122	15	)	)	PUNCT
can-567	122	16	or	or	CCONJ
can-567	122	17	half	half	DET
can-567	122	18	a	a	DET
can-567	122	19	torus	torus	NOUN
can-567	122	20	(	(	PUNCT
can-567	122	21	cnt	cnt	X
can-567	122	22	with	with	ADP
can-567	122	23	an	an	DET
can-567	122	24	open	open	ADJ
can-567	122	25	end	end	NOUN
can-567	122	26	)	)	PUNCT
can-567	122	27	.	.	PUNCT
can-567	123	1	this	this	DET
can-567	123	2	body	body	NOUN
can-567	123	3	has	have	VERB
can-567	123	4	a	a	DET
can-567	123	5	metallic	metallic	ADJ
can-567	123	6	type	type	NOUN
can-567	123	7	of	of	ADP
can-567	123	8	conductivity	conductivity	NOUN
can-567	123	9	.	.	PUNCT
can-567	124	1	the	the	DET
can-567	124	2	potential	potential	NOUN
can-567	124	3	of	of	ADP
can-567	124	4	the	the	DET
can-567	124	5	electric	electric	ADJ
can-567	124	6	field	field	NOUN
can-567	124	7	is	be	AUX
can-567	124	8	found	find	VERB
can-567	124	9	by	by	ADP
can-567	124	10	solving	solve	VERB
can-567	124	11	the	the	DET
can-567	124	12	3	3	NUM
can-567	124	13	-	-	PUNCT
can-567	124	14	dimensional	dimensional	ADJ
can-567	124	15	laplace	laplace	NOUN
can-567	124	16	equation	equation	NOUN
can-567	124	17	in	in	ADP
can-567	124	18	the	the	DET
can-567	124	19	boundary	boundary	ADJ
can-567	124	20	element	element	NOUN
can-567	124	21	with	with	ADP
can-567	124	22	the	the	DET
can-567	124	23	conditions	condition	NOUN
can-567	124	24	given	give	VERB
can-567	124	25	on	on	ADP
can-567	124	26	its	its	PRON
can-567	124	27	boundary	boundary	NOUN
can-567	124	28	.	.	PUNCT
can-567	125	1	the	the	DET
can-567	125	2	solution	solution	NOUN
can-567	125	3	of	of	ADP
can-567	125	4	the	the	DET
can-567	125	5	laplace	laplace	NOUN
can-567	125	6	equation	equation	NOUN
can-567	125	7	was	be	AUX
can-567	125	8	found	find	VERB
can-567	125	9	by	by	ADP
can-567	125	10	the	the	DET
can-567	125	11	boundary	boundary	ADJ
can-567	125	12	element	element	NOUN
can-567	125	13	53	53	NUM
can-567	125	14	method	method	NOUN
can-567	125	15	,	,	PUNCT
can-567	125	16	which	which	PRON
can-567	125	17	is	be	AUX
can-567	125	18	described	describe	VERB
can-567	125	19	in	in	ADP
can-567	125	20	detail	detail	NOUN
can-567	125	21	in	in	ADP
can-567	125	22	the	the	DET
can-567	125	23	studies	study	NOUN
can-567	125	24	of	of	ADP
can-567	125	25	banerjee	banerjee	PROPN
can-567	125	26	&	&	CCONJ
can-567	125	27	butterfield	butterfield	PROPN
can-567	125	28	and	and	CCONJ
can-567	125	29	brebbia	brebbia	VERB
can-567	125	30	et	et	PROPN
can-567	125	31	al	al	PROPN
can-567	125	32	.	.	PUNCT
can-567	126	1	[	[	X
can-567	126	2	22	22	NUM
can-567	126	3	,	,	PUNCT
can-567	126	4	23	23	NUM
can-567	126	5	]	]	PUNCT
can-567	126	6	.	.	PUNCT
can-567	127	1	this	this	DET
can-567	127	2	method	method	NOUN
can-567	127	3	involves	involve	VERB
can-567	127	4	splitting	split	VERB
can-567	127	5	the	the	DET
can-567	127	6	surface	surface	NOUN
can-567	127	7	of	of	ADP
can-567	127	8	a	a	DET
can-567	127	9	solid	solid	ADJ
can-567	127	10	body	body	NOUN
can-567	127	11	into	into	ADP
can-567	127	12	triangular	triangular	NOUN
can-567	127	13	elements	element	NOUN
can-567	127	14	and	and	CCONJ
can-567	127	15	forming	form	VERB
can-567	127	16	the	the	DET
can-567	127	17	computational	computational	ADJ
can-567	127	18	grid	grid	NOUN
can-567	127	19	.	.	PUNCT
can-567	128	1	then	then	ADV
can-567	128	2	the	the	DET
can-567	128	3	boundary	boundary	ADJ
can-567	128	4	conditions	condition	NOUN
can-567	128	5	are	be	AUX
can-567	128	6	given	give	VERB
can-567	128	7	on	on	ADP
can-567	128	8	its	its	PRON
can-567	128	9	boundaries	boundary	NOUN
can-567	128	10	.	.	PUNCT
can-567	129	1	as	as	ADP
can-567	129	2	a	a	DET
can-567	129	3	result	result	NOUN
can-567	129	4	,	,	PUNCT
can-567	129	5	instead	instead	ADV
can-567	129	6	of	of	ADP
can-567	129	7	solving	solve	VERB
can-567	129	8	the	the	DET
can-567	129	9	integral	integral	ADJ
can-567	129	10	equation	equation	NOUN
can-567	129	11	,	,	PUNCT
can-567	129	12	a	a	DET
can-567	129	13	system	system	NOUN
can-567	129	14	of	of	ADP
can-567	129	15	linear	linear	PROPN
can-567	129	16	algebraic	algebraic	ADJ
can-567	129	17	equations	equation	NOUN
can-567	129	18	is	be	AUX
can-567	129	19	solved	solve	VERB
can-567	129	20	.	.	PUNCT
can-567	130	1	by	by	ADP
can-567	130	2	solving	solve	VERB
can-567	130	3	,	,	PUNCT
can-567	130	4	we	we	PRON
can-567	130	5	obtain	obtain	VERB
can-567	130	6	the	the	DET
can-567	130	7	coefficients	coefficient	NOUN
can-567	130	8	required	require	VERB
can-567	130	9	for	for	ADP
can-567	130	10	calculating	calculate	VERB
can-567	130	11	the	the	DET
can-567	130	12	potentials	potential	NOUN
can-567	130	13	in	in	ADP
can-567	130	14	corresponding	correspond	VERB
can-567	130	15	space	space	NOUN
can-567	130	16	points	point	NOUN
can-567	130	17	of	of	ADP
can-567	130	18	emission	emission	NOUN
can-567	130	19	system	system	NOUN
can-567	130	20	.	.	PUNCT
can-567	131	1	figure	figure	VERB
can-567	131	2	3	3	NUM
can-567	131	3	.	.	PUNCT
can-567	131	4	current	current	ADJ
can-567	131	5	-	-	PUNCT
can-567	131	6	voltage	voltage	NOUN
can-567	131	7	characteristics	characteristic	NOUN
can-567	131	8	of	of	ADP
can-567	131	9	the	the	DET
can-567	131	10	investigated	investigated	ADJ
can-567	131	11	cnt	cnt	NOUN
can-567	131	12	:	:	PUNCT
can-567	131	13	1	1	NUM
can-567	131	14	—	—	PUNCT
can-567	131	15	experimental	experimental	ADJ
can-567	131	16	i	i	PROPN
can-567	131	17	-	-	PUNCT
can-567	131	18	v	v	NOUN
can-567	131	19	characteristic	characteristic	NOUN
can-567	131	20	;	;	PUNCT
can-567	131	21	2	2	X
can-567	131	22	—	—	PUNCT
can-567	131	23	modeling	model	VERB
can-567	131	24	i	i	PROPN
can-567	131	25	-	-	PUNCT
can-567	131	26	v	v	NOUN
can-567	131	27	characteristic	characteristic	NOUN
can-567	131	28	(	(	PUNCT
can-567	131	29	ed	ed	NOUN
can-567	131	30	.	.	NOUN
can-567	132	1	3	3	NUM
can-567	132	2	)	)	PUNCT
can-567	132	3	;	;	PUNCT
can-567	132	4	3	3	X
can-567	132	5	—	—	PUNCT
can-567	132	6	i	i	NOUN
can-567	132	7	-	-	PUNCT
can-567	132	8	v	v	NOUN
can-567	132	9	characteristic	characteristic	NOUN
can-567	132	10	of	of	ADP
can-567	132	11	the	the	DET
can-567	132	12	section	section	NOUN
can-567	132	13	,	,	PUNCT
can-567	132	14	which	which	PRON
can-567	132	15	contains	contain	VERB
can-567	132	16	two	two	NUM
can-567	132	17	parallel	parallel	ADJ
can-567	132	18	non	non	ADJ
can-567	132	19	-	-	ADJ
can-567	132	20	linear	linear	ADJ
can-567	132	21	resistances	resistance	NOUN
can-567	132	22	(	(	PUNCT
can-567	132	23	rfe	rfe	NOUN
can-567	132	24	and	and	CCONJ
can-567	132	25	rte	rte	PROPN
can-567	132	26	)	)	PUNCT
can-567	132	27	.	.	PUNCT
can-567	133	1	partitioning	partition	VERB
can-567	133	2	of	of	ADP
can-567	133	3	the	the	DET
can-567	133	4	boundary	boundary	ADJ
can-567	133	5	surface	surface	NOUN
can-567	133	6	to	to	ADP
can-567	133	7	boundary	boundary	ADJ
can-567	133	8	elements	element	NOUN
can-567	133	9	(	(	PUNCT
can-567	133	10	be	be	AUX
can-567	133	11	)	)	PUNCT
can-567	133	12	,	,	PUNCT
can-567	133	13	on	on	ADP
can-567	133	14	the	the	DET
can-567	133	15	one	one	NUM
can-567	133	16	hand	hand	NOUN
can-567	133	17	,	,	PUNCT
can-567	133	18	need	need	VERB
can-567	133	19	to	to	PART
can-567	133	20	be	be	AUX
can-567	133	21	quiet	quiet	ADJ
can-567	133	22	detailed	detailed	ADJ
can-567	133	23	to	to	PART
can-567	133	24	consider	consider	VERB
can-567	133	25	all	all	DET
can-567	133	26	special	special	ADJ
can-567	133	27	aspects	aspect	NOUN
can-567	133	28	of	of	ADP
can-567	133	29	surface	surface	NOUN
can-567	133	30	and	and	CCONJ
can-567	133	31	on	on	ADP
can-567	133	32	the	the	DET
can-567	133	33	other	other	ADJ
can-567	133	34	hand	hand	NOUN
can-567	133	35	should	should	AUX
can-567	133	36	not	not	PART
can-567	133	37	exceed	exceed	VERB
can-567	133	38	a	a	DET
can-567	133	39	certain	certain	ADJ
can-567	133	40	value	value	NOUN
can-567	133	41	due	due	ADP
can-567	133	42	to	to	ADP
can-567	133	43	the	the	DET
can-567	133	44	computing	computing	NOUN
can-567	133	45	power	power	NOUN
can-567	133	46	used	use	VERB
can-567	133	47	by	by	ADP
can-567	133	48	the	the	DET
can-567	133	49	computer	computer	NOUN
can-567	133	50	(	(	PUNCT
can-567	133	51	memory	memory	NOUN
can-567	133	52	capacity	capacity	NOUN
can-567	133	53	,	,	PUNCT
can-567	133	54	processing	processing	NOUN
can-567	133	55	speed	speed	NOUN
can-567	133	56	)	)	PUNCT
can-567	133	57	.	.	PUNCT
can-567	134	1	based	base	VERB
can-567	134	2	on	on	ADP
can-567	134	3	these	these	DET
can-567	134	4	conditions	condition	NOUN
can-567	134	5	,	,	PUNCT
can-567	134	6	in	in	ADP
can-567	134	7	this	this	DET
can-567	134	8	case	case	NOUN
can-567	134	9	,	,	PUNCT
can-567	134	10	the	the	DET
can-567	134	11	entire	entire	ADJ
can-567	134	12	boundary	boundary	ADJ
can-567	134	13	surface	surface	NOUN
can-567	134	14	is	be	AUX
can-567	134	15	divided	divide	VERB
can-567	134	16	into	into	ADP
can-567	134	17	20000–30000	20000–30000	NUM
can-567	134	18	triangular	triangular	NOUN
can-567	134	19	be	be	AUX
can-567	134	20	.	.	PUNCT
can-567	134	21	electric	electric	ADJ
can-567	134	22	field	field	NOUN
can-567	134	23	strength	strength	NOUN
can-567	134	24	distribution	distribution	NOUN
can-567	134	25	must	must	AUX
can-567	134	26	be	be	AUX
can-567	134	27	calculated	calculate	VERB
can-567	134	28	near	near	ADP
can-567	134	29	all	all	DET
can-567	134	30	points	point	NOUN
can-567	134	31	of	of	ADP
can-567	134	32	the	the	DET
can-567	134	33	cnt	cnt	PROPN
can-567	134	34	surface	surface	NOUN
can-567	134	35	,	,	PUNCT
can-567	134	36	since	since	SCONJ
can-567	134	37	the	the	DET
can-567	134	38	cathode	cathode	NOUN
can-567	134	39	current	current	NOUN
can-567	134	40	is	be	AUX
can-567	134	41	caused	cause	VERB
can-567	134	42	not	not	PART
can-567	134	43	only	only	ADV
can-567	134	44	by	by	ADP
can-567	134	45	emission	emission	NOUN
can-567	134	46	from	from	ADP
can-567	134	47	its	its	PRON
can-567	134	48	end	end	NOUN
can-567	134	49	,	,	PUNCT
can-567	134	50	but	but	CCONJ
can-567	134	51	also	also	ADV
can-567	134	52	from	from	ADP
can-567	134	53	regions	region	NOUN
can-567	134	54	near	near	ADP
can-567	134	55	it	it	PRON
can-567	134	56	.	.	PUNCT
can-567	135	1	figure	figure	VERB
can-567	135	2	4	4	NUM
can-567	135	3	shows	show	VERB
can-567	135	4	the	the	DET
can-567	135	5	emission	emission	NOUN
can-567	135	6	system	system	NOUN
can-567	135	7	under	under	ADP
can-567	135	8	investigation	investigation	NOUN
can-567	135	9	consisting	consist	VERB
can-567	135	10	of	of	ADP
can-567	135	11	a	a	DET
can-567	135	12	single	single	ADJ
can-567	135	13	cnt	cnt	X
can-567	135	14	(	(	PUNCT
can-567	135	15	cathode	cathode	NOUN
can-567	135	16	)	)	PUNCT
can-567	135	17	and	and	CCONJ
can-567	135	18	an	an	DET
can-567	135	19	anode	anode	NOUN
can-567	135	20	electrode	electrode	NOUN
can-567	135	21	,	,	PUNCT
can-567	135	22	as	as	ADV
can-567	135	23	well	well	ADV
can-567	135	24	as	as	ADP
can-567	135	25	its	its	PRON
can-567	135	26	idealized	idealized	ADJ
can-567	135	27	model	model	NOUN
can-567	135	28	,	,	PUNCT
can-567	135	29	which	which	PRON
can-567	135	30	was	be	AUX
can-567	135	31	later	later	ADV
can-567	135	32	used	use	VERB
can-567	135	33	to	to	PART
can-567	135	34	calculate	calculate	VERB
can-567	135	35	the	the	DET
can-567	135	36	distribution	distribution	NOUN
can-567	135	37	of	of	ADP
can-567	135	38	the	the	DET
can-567	135	39	electric	electric	ADJ
can-567	135	40	field	field	NOUN
can-567	135	41	and	and	CCONJ
can-567	135	42	the	the	DET
can-567	135	43	field	field	NOUN
can-567	135	44	emission	emission	NOUN
can-567	135	45	current	current	ADJ
can-567	135	46	.	.	PUNCT
can-567	136	1	figure	figure	NOUN
can-567	136	2	4	4	NUM
can-567	136	3	.	.	PUNCT
can-567	136	4	model	model	NOUN
can-567	136	5	of	of	ADP
can-567	136	6	a	a	DET
can-567	136	7	single	single	ADJ
can-567	136	8	cnt	cnt	X
can-567	136	9	(	(	PUNCT
can-567	136	10	cathode	cathode	NOUN
can-567	136	11	)	)	PUNCT
can-567	136	12	and	and	CCONJ
can-567	136	13	an	an	DET
can-567	136	14	anode	anode	NOUN
can-567	136	15	electrode	electrode	NOUN
can-567	136	16	.	.	PUNCT
can-567	137	1	geometric	geometric	ADJ
can-567	137	2	parameters	parameter	NOUN
can-567	137	3	of	of	ADP
can-567	137	4	the	the	DET
can-567	137	5	calculation	calculation	NOUN
can-567	137	6	were	be	AUX
can-567	137	7	obtained	obtain	VERB
can-567	137	8	as	as	ADP
can-567	137	9	a	a	DET
can-567	137	10	result	result	NOUN
can-567	137	11	of	of	ADP
can-567	137	12	determining	determine	VERB
can-567	137	13	the	the	DET
can-567	137	14	size	size	NOUN
can-567	137	15	of	of	ADP
can-567	137	16	a	a	DET
can-567	137	17	real	real	ADJ
can-567	137	18	experimental	experimental	ADJ
can-567	137	19	system	system	NOUN
can-567	137	20	,	,	PUNCT
can-567	137	21	which	which	PRON
can-567	137	22	is	be	AUX
can-567	137	23	shown	show	VERB
can-567	137	24	in	in	ADP
can-567	137	25	figure	figure	NOUN
can-567	137	26	4	4	NUM
can-567	137	27	.	.	PUNCT
can-567	137	28	а	а	NOUN
can-567	137	29	system	system	NOUN
can-567	137	30	of	of	ADP
can-567	137	31	equipotential	equipotential	ADJ
can-567	137	32	surfaces	surface	NOUN
can-567	137	33	was	be	AUX
can-567	137	34	obtained	obtain	VERB
can-567	137	35	after	after	ADP
can-567	137	36	the	the	DET
can-567	137	37	implementation	implementation	NOUN
can-567	137	38	of	of	ADP
can-567	137	39	the	the	DET
can-567	137	40	above	above	ADJ
can-567	137	41	mentioned	mention	VERB
can-567	137	42	calculation	calculation	NOUN
can-567	137	43	algorithm	algorithm	NOUN
can-567	137	44	.	.	PUNCT
can-567	138	1	the	the	DET
can-567	138	2	electric	electric	ADJ
can-567	138	3	field	field	NOUN
can-567	138	4	strength	strength	NOUN
can-567	138	5	was	be	AUX
can-567	138	6	calculated	calculate	VERB
can-567	138	7	as	as	ADP
can-567	138	8	the	the	DET
can-567	138	9	potential	potential	ADJ
can-567	138	10	gradient	gradient	NOUN
can-567	138	11	near	near	ADP
can-567	138	12	the	the	DET
can-567	138	13	surface	surface	NOUN
can-567	138	14	.	.	PUNCT
can-567	139	1	the	the	DET
can-567	139	2	cathode	cathode	NOUN
can-567	139	3	current	current	NOUN
can-567	139	4	is	be	AUX
can-567	139	5	the	the	DET
can-567	139	6	sum	sum	NOUN
can-567	139	7	of	of	ADP
can-567	139	8	the	the	DET
can-567	139	9	current	current	NOUN
can-567	139	10	of	of	ADP
can-567	139	11	the	the	DET
can-567	139	12	total	total	ADJ
can-567	139	13	boundary	boundary	ADJ
can-567	139	14	elements	element	NOUN
can-567	139	15	.	.	PUNCT
can-567	140	1	electrons	electron	NOUN
can-567	140	2	,	,	PUNCT
can-567	140	3	which	which	PRON
can-567	140	4	are	be	AUX
can-567	140	5	emitted	emit	VERB
can-567	140	6	by	by	ADP
can-567	140	7	these	these	DET
can-567	140	8	elements	element	NOUN
can-567	140	9	,	,	PUNCT
can-567	140	10	moved	move	VERB
can-567	140	11	along	along	ADP
can-567	140	12	a	a	DET
can-567	140	13	certain	certain	ADJ
can-567	140	14	trajectory	trajectory	NOUN
can-567	140	15	and	and	CCONJ
can-567	140	16	,	,	PUNCT
can-567	140	17	at	at	ADP
can-567	140	18	the	the	DET
can-567	140	19	end	end	NOUN
can-567	140	20	of	of	ADP
can-567	140	21	their	their	PRON
can-567	140	22	path	path	NOUN
can-567	140	23	,	,	PUNCT
can-567	140	24	hit	hit	VERB
can-567	140	25	the	the	DET
can-567	140	26	anode	anode	NOUN
can-567	140	27	.	.	PUNCT
can-567	141	1	the	the	DET
can-567	141	2	motion	motion	NOUN
can-567	141	3	of	of	ADP
can-567	141	4	an	an	DET
can-567	141	5	electron	electron	NOUN
can-567	141	6	along	along	ADP
can-567	141	7	a	a	DET
can-567	141	8	trajectory	trajectory	NOUN
can-567	141	9	causes	cause	VERB
can-567	141	10	the	the	DET
can-567	141	11	formation	formation	NOUN
can-567	141	12	of	of	ADP
can-567	141	13	an	an	DET
can-567	141	14	elementary	elementary	ADJ
can-567	141	15	electric	electric	PROPN
can-567	141	16	current	current	PROPN
can-567	141	17	.	.	PUNCT
can-567	142	1	the	the	DET
can-567	142	2	sum	sum	NOUN
can-567	142	3	of	of	ADP
can-567	142	4	these	these	DET
can-567	142	5	currents	current	NOUN
can-567	142	6	over	over	ADP
can-567	142	7	the	the	DET
can-567	142	8	area	area	NOUN
can-567	142	9	of	of	ADP
can-567	142	10	the	the	DET
can-567	142	11	cathode	cathode	NOUN
can-567	142	12	creates	create	VERB
can-567	142	13	an	an	DET
can-567	142	14	emission	emission	NOUN
can-567	142	15	current	current	ADJ
can-567	142	16	(	(	PUNCT
can-567	142	17	cathode	cathode	NOUN
can-567	142	18	current	current	NOUN
can-567	142	19	)	)	PUNCT
can-567	142	20	,	,	PUNCT
can-567	142	21	as	as	ADV
can-567	142	22	well	well	ADV
can-567	142	23	as	as	ADP
can-567	142	24	the	the	DET
can-567	142	25	components	component	NOUN
can-567	142	26	of	of	ADP
can-567	142	27	this	this	DET
can-567	142	28	current	current	NOUN
can-567	142	29	that	that	PRON
can-567	142	30	fall	fall	VERB
can-567	142	31	on	on	ADP
can-567	142	32	other	other	ADJ
can-567	142	33	elements	element	NOUN
can-567	142	34	of	of	ADP
can-567	142	35	the	the	DET
can-567	142	36	emission	emission	NOUN
can-567	142	37	system	system	NOUN
can-567	142	38	(	(	PUNCT
can-567	142	39	anode	anode	NOUN
can-567	142	40	current	current	ADJ
can-567	142	41	,	,	PUNCT
can-567	142	42	leakage	leakage	NOUN
can-567	142	43	current	current	NOUN
can-567	142	44	,	,	PUNCT
can-567	142	45	etc	etc	X
can-567	142	46	.	.	X
can-567	142	47	)	)	PUNCT
can-567	142	48	.	.	PUNCT
can-567	143	1	such	such	ADJ
can-567	143	2	approach	approach	NOUN
can-567	143	3	is	be	AUX
can-567	143	4	permissible	permissible	ADJ
can-567	143	5	on	on	ADP
can-567	143	6	the	the	DET
can-567	143	7	basis	basis	NOUN
can-567	143	8	of	of	ADP
can-567	143	9	an	an	DET
can-567	143	10	estimate	estimate	NOUN
can-567	143	11	of	of	ADP
can-567	143	12	the	the	DET
can-567	143	13	electron	electron	NOUN
can-567	143	14	velocity	velocity	NOUN
can-567	143	15	in	in	ADP
can-567	143	16	the	the	DET
can-567	143	17	system	system	NOUN
can-567	143	18	.	.	PUNCT
can-567	144	1	the	the	DET
can-567	144	2	velocity	velocity	NOUN
can-567	144	3	of	of	ADP
can-567	144	4	an	an	DET
can-567	144	5	electron	electron	NOUN
can-567	144	6	in	in	ADP
can-567	144	7	the	the	DET
can-567	144	8	corresponding	corresponding	ADJ
can-567	144	9	electric	electric	ADJ
can-567	144	10	field	field	NOUN
can-567	144	11	can	can	AUX
can-567	144	12	be	be	AUX
can-567	144	13	estimated	estimate	VERB
can-567	144	14	from	from	ADP
can-567	144	15	the	the	DET
can-567	144	16	law	law	NOUN
can-567	144	17	of	of	ADP
can-567	144	18	energy	energy	NOUN
can-567	144	19	conservation	conservation	NOUN
can-567	144	20	:	:	PUNCT
can-567	144	21	2	2	NUM
can-567	144	22	2	2	NUM
can-567	144	23	0	0	NUM
can-567	144	24	2	2	NUM
can-567	144	25	01	01	NUM
can-567	144	26			NOUN
can-567	144	27			NOUN
can-567	144	28			PROPN
can-567	144	29			PROPN
can-567	144	30			PROPN
can-567	144	31			NOUN
can-567	144	32			VERB
can-567	144	33			PROPN
can-567	144	34	eucm	eucm	VERB
can-567	144	35	cm	cm	PROPN
can-567	144	36	cv	cv	PROPN
can-567	144	37	,	,	PUNCT
can-567	144	38	where	where	SCONJ
can-567	144	39	:	:	PUNCT
can-567	144	40	c	c	NOUN
can-567	144	41	is	be	AUX
can-567	144	42	light	light	ADJ
can-567	144	43	velocity	velocity	NOUN
can-567	144	44	;	;	PUNCT
can-567	144	45	m0	m0	NOUN
can-567	144	46	is	be	AUX
can-567	144	47	electron	electron	NOUN
can-567	144	48	rest	rest	NOUN
can-567	144	49	mass	mass	NOUN
can-567	144	50	;	;	PUNCT
can-567	144	51	u	u	NOUN
can-567	144	52	is	be	AUX
can-567	144	53	accelerating	accelerate	VERB
can-567	144	54	voltage	voltage	NOUN
can-567	144	55	between	between	ADP
can-567	144	56	cathode	cathode	NOUN
can-567	144	57	and	and	CCONJ
can-567	144	58	anode	anode	NOUN
can-567	144	59	.	.	PUNCT
can-567	145	1	in	in	ADP
can-567	145	2	the	the	DET
can-567	145	3	experiments	experiment	NOUN
can-567	145	4	,	,	PUNCT
can-567	145	5	u	u	PRON
can-567	145	6	did	do	AUX
can-567	145	7	not	not	PART
can-567	145	8	exceed	exceed	VERB
can-567	145	9	150	150	NUM
can-567	145	10	v	v	NOUN
can-567	145	11	,	,	PUNCT
can-567	145	12	therefore	therefore	ADV
can-567	145	13	v	v	ADP
can-567	145	14			NOUN
can-567	145	15	5·10	5·10	NOUN
can-567	145	16	6	6	NUM
can-567	145	17	m	m	NOUN
can-567	145	18	/	/	SYM
can-567	145	19	s.	s.	PROPN
can-567	145	20	thus	thus	ADV
can-567	145	21	,	,	PUNCT
can-567	145	22	the	the	DET
can-567	145	23	electron	electron	NOUN
can-567	145	24	velocity	velocity	NOUN
can-567	145	25	is	be	AUX
can-567	145	26	much	much	ADV
can-567	145	27	smaller	small	ADJ
can-567	145	28	54	54	NUM
can-567	145	29	than	than	ADP
can-567	145	30	the	the	DET
can-567	145	31	speed	speed	NOUN
can-567	145	32	of	of	ADP
can-567	145	33	light	light	NOUN
can-567	145	34	,	,	PUNCT
can-567	145	35	so	so	SCONJ
can-567	145	36	they	they	PRON
can-567	145	37	move	move	VERB
can-567	145	38	with	with	ADP
can-567	145	39	nonrelativistic	nonrelativistic	ADJ
can-567	145	40	velocities	velocity	NOUN
can-567	145	41	and	and	CCONJ
can-567	145	42	the	the	DET
can-567	145	43	laws	law	NOUN
can-567	145	44	of	of	ADP
can-567	145	45	classical	classical	ADJ
can-567	145	46	mechanics	mechanic	NOUN
can-567	145	47	can	can	AUX
can-567	145	48	be	be	AUX
can-567	145	49	used	use	VERB
can-567	145	50	to	to	PART
can-567	145	51	calculate	calculate	VERB
can-567	145	52	their	their	PRON
can-567	145	53	trajectories	trajectory	NOUN
can-567	145	54	of	of	ADP
can-567	145	55	motion	motion	NOUN
can-567	145	56	.	.	PUNCT
can-567	146	1	we	we	PRON
can-567	146	2	will	will	AUX
can-567	146	3	assume	assume	VERB
can-567	146	4	that	that	SCONJ
can-567	146	5	the	the	DET
can-567	146	6	coulomb	coulomb	NOUN
can-567	146	7	force	force	NOUN
can-567	146	8	acts	act	VERB
can-567	146	9	on	on	ADP
can-567	146	10	the	the	DET
can-567	146	11	electron	electron	NOUN
can-567	146	12	,	,	PUNCT
can-567	146	13	which	which	PRON
can-567	146	14	must	must	AUX
can-567	146	15	be	be	AUX
can-567	146	16	used	use	VERB
can-567	146	17	in	in	ADP
can-567	146	18	the	the	DET
can-567	146	19	motion	motion	NOUN
can-567	146	20	equation	equation	NOUN
can-567	146	21	.	.	PUNCT
can-567	147	1	the	the	DET
can-567	147	2	numerical	numerical	ADJ
can-567	147	3	integration	integration	NOUN
can-567	147	4	was	be	AUX
can-567	147	5	done	do	VERB
can-567	147	6	by	by	ADP
can-567	147	7	euler	euler	PROPN
can-567	147	8	’s	’s	PART
can-567	147	9	method	method	NOUN
can-567	147	10	[	[	X
can-567	147	11	24	24	NUM
can-567	147	12	]	]	PUNCT
can-567	147	13	.	.	PUNCT
can-567	148	1	it	it	PRON
can-567	148	2	should	should	AUX
can-567	148	3	be	be	AUX
can-567	148	4	noted	note	VERB
can-567	148	5	that	that	SCONJ
can-567	148	6	in	in	ADP
can-567	148	7	the	the	DET
can-567	148	8	case	case	NOUN
can-567	148	9	of	of	ADP
can-567	148	10	random	random	ADJ
can-567	148	11	cathode	cathode	NOUN
can-567	148	12	geometry	geometry	NOUN
can-567	148	13	(	(	PUNCT
can-567	148	14	not	not	PART
can-567	148	15	flat	flat	ADJ
can-567	148	16	)	)	PUNCT
can-567	148	17	in	in	ADP
can-567	148	18	eqs	eqs	PROPN
can-567	148	19	.	.	PUNCT
can-567	149	1	(	(	PUNCT
can-567	149	2	1	1	X
can-567	149	3	)	)	PUNCT
can-567	149	4	and	and	CCONJ
can-567	149	5	(	(	PUNCT
can-567	149	6	2	2	NUM
can-567	149	7	)	)	PUNCT
can-567	149	8	,	,	PUNCT
can-567	149	9	e	e	PRON
can-567	149	10	is	be	AUX
can-567	149	11	understood	understand	VERB
can-567	149	12	as	as	ADP
can-567	149	13	the	the	DET
can-567	149	14	field	field	NOUN
can-567	149	15	strength	strength	NOUN
can-567	149	16	near	near	ADP
can-567	149	17	the	the	DET
can-567	149	18	surface	surface	NOUN
can-567	149	19	of	of	ADP
can-567	149	20	the	the	DET
can-567	149	21	emitting	emit	VERB
can-567	149	22	elementary	elementary	ADJ
can-567	149	23	cathode	cathode	NOUN
can-567	149	24	pad	pad	NOUN
can-567	149	25	,	,	PUNCT
can-567	149	26	rather	rather	ADV
can-567	149	27	than	than	ADP
can-567	149	28	the	the	DET
can-567	149	29	average	average	ADJ
can-567	149	30	value	value	NOUN
can-567	149	31	obtained	obtain	VERB
can-567	149	32	by	by	ADP
can-567	149	33	dividing	divide	VERB
can-567	149	34	the	the	DET
can-567	149	35	applied	apply	VERB
can-567	149	36	voltage	voltage	NOUN
can-567	149	37	by	by	ADP
can-567	149	38	the	the	DET
can-567	149	39	distance	distance	NOUN
can-567	149	40	between	between	ADP
can-567	149	41	the	the	DET
can-567	149	42	anode	anode	NOUN
can-567	149	43	and	and	CCONJ
can-567	149	44	the	the	DET
can-567	149	45	cathode	cathode	NOUN
can-567	149	46	.	.	PUNCT
can-567	150	1	when	when	SCONJ
can-567	150	2	calculating	calculate	VERB
can-567	150	3	the	the	DET
can-567	150	4	field	field	NOUN
can-567	150	5	-	-	PUNCT
can-567	150	6	emission	emission	NOUN
can-567	150	7	current	current	NOUN
can-567	150	8	from	from	ADP
can-567	150	9	a	a	DET
can-567	150	10	single	single	ADJ
can-567	150	11	cnt	cnt	NOUN
can-567	150	12	,	,	PUNCT
can-567	150	13	it	it	PRON
can-567	150	14	is	be	AUX
can-567	150	15	assumed	assume	VERB
can-567	150	16	that	that	SCONJ
can-567	150	17	each	each	PRON
can-567	150	18	be	be	VERB
can-567	150	19	of	of	ADP
can-567	150	20	the	the	DET
can-567	150	21	cathode	cathode	NOUN
can-567	150	22	emits	emit	VERB
can-567	150	23	a	a	DET
can-567	150	24	current	current	ADJ
can-567	150	25	ii	ii	NOUN
can-567	150	26	,	,	PUNCT
can-567	150	27	which	which	PRON
can-567	150	28	is	be	AUX
can-567	150	29	defined	define	VERB
can-567	150	30	as	as	ADP
can-567	150	31	ii	ii	NOUN
can-567	150	32	=	=	SYM
can-567	150	33	jisi	jisi	NOUN
can-567	150	34	,	,	PUNCT
can-567	150	35	where	where	SCONJ
can-567	150	36	ji	ji	PROPN
can-567	150	37	is	be	AUX
can-567	150	38	the	the	DET
can-567	150	39	current	current	ADJ
can-567	150	40	density	density	NOUN
can-567	150	41	of	of	ADP
can-567	150	42	the	the	DET
can-567	150	43	i	i	PROPN
can-567	150	44	-	-	PUNCT
can-567	150	45	th	th	X
can-567	150	46	be	be	NOUN
can-567	150	47	of	of	ADP
can-567	150	48	cathode	cathode	NOUN
can-567	150	49	,	,	PUNCT
can-567	150	50	si	si	X
can-567	150	51	is	be	AUX
can-567	150	52	the	the	DET
can-567	150	53	surface	surface	NOUN
can-567	150	54	area	area	NOUN
can-567	150	55	of	of	ADP
can-567	150	56	the	the	DET
can-567	150	57	i	i	PROPN
can-567	150	58	-	-	PUNCT
can-567	150	59	th	th	VERB
can-567	150	60	cathode	cathode	NOUN
can-567	150	61	be	be	AUX
can-567	150	62	(	(	PUNCT
can-567	150	63	the	the	DET
can-567	150	64	surface	surface	NOUN
can-567	150	65	area	area	NOUN
can-567	150	66	of	of	ADP
can-567	150	67	the	the	DET
can-567	150	68	entire	entire	ADJ
can-567	150	69	cathode	cathode	NOUN
can-567	150	70	s=∑si	s=∑si	NOUN
can-567	150	71	)	)	PUNCT
can-567	150	72	.	.	PUNCT
can-567	151	1	the	the	DET
can-567	151	2	current	current	ADJ
can-567	151	3	density	density	NOUN
can-567	151	4	ji	ji	PROPN
can-567	151	5	is	be	AUX
can-567	151	6	calculated	calculate	VERB
can-567	151	7	from	from	ADP
can-567	151	8	the	the	DET
can-567	151	9	fowler	fowler	PROPN
can-567	151	10	-	-	PUNCT
can-567	151	11	nordheim	nordheim	PROPN
can-567	151	12	ed	ed	NOUN
can-567	151	13	.	.	PUNCT
can-567	152	1	(	(	PUNCT
can-567	152	2	1	1	NUM
can-567	152	3	)	)	PUNCT
can-567	152	4	,	,	PUNCT
can-567	152	5	in	in	ADP
can-567	152	6	which	which	PRON
can-567	152	7	the	the	DET
can-567	152	8	electric	electric	ADJ
can-567	152	9	field	field	NOUN
can-567	152	10	strength	strength	NOUN
can-567	152	11	ei	ei	NOUN
can-567	152	12	is	be	AUX
can-567	152	13	taken	take	VERB
can-567	152	14	from	from	ADP
can-567	152	15	the	the	DET
can-567	152	16	solution	solution	NOUN
can-567	152	17	of	of	ADP
can-567	152	18	the	the	DET
can-567	152	19	laplace	laplace	NOUN
can-567	152	20	equation	equation	NOUN
can-567	152	21	for	for	ADP
can-567	152	22	a	a	DET
can-567	152	23	given	give	VERB
can-567	152	24	initial	initial	ADJ
can-567	152	25	point	point	NOUN
can-567	152	26	at	at	ADP
can-567	152	27	the	the	DET
can-567	152	28	center	center	NOUN
can-567	152	29	of	of	ADP
can-567	152	30	each	each	DET
can-567	152	31	i	i	PROPN
can-567	152	32	-	-	PUNCT
can-567	152	33	th	th	X
can-567	152	34	be	be	VERB
can-567	152	35	.	.	PUNCT
can-567	153	1	then	then	ADV
can-567	153	2	the	the	DET
can-567	153	3	total	total	ADJ
can-567	153	4	field	field	NOUN
can-567	153	5	emission	emission	NOUN
can-567	153	6	current	current	NOUN
can-567	153	7	of	of	ADP
can-567	153	8	the	the	DET
can-567	153	9	cathode	cathode	NOUN
can-567	153	10	is	be	AUX
can-567	153	11	found	find	VERB
can-567	153	12	by	by	ADP
can-567	153	13	summing	sum	VERB
can-567	153	14	the	the	DET
can-567	153	15	currents	current	NOUN
can-567	153	16	over	over	ADP
can-567	153	17	all	all	DET
can-567	153	18	sites	site	NOUN
can-567	153	19	si	si	PUNCT
can-567	153	20	:	:	PUNCT
can-567	153	21			PRON
can-567	153	22			PUNCT
can-567	154	1			PROPN
can-567	154	2			PROPN
can-567	155	1			NOUN
can-567	156	1			PROPN
can-567	157	1			PROPN
can-567	158	1			PROPN
can-567	159	1			PROPN
can-567	159	2			NOUN
can-567	160	1			PROPN
can-567	161	1	i	i	PRON
can-567	161	2	i	i	PRON
can-567	162	1	i	i	PRON
can-567	162	2	i	i	PRON
can-567	163	1	i	i	PRON
can-567	163	2	i	i	PRON
can-567	164	1	i	i	PRON
can-567	164	2	ii	ii	VERB
can-567	164	3	s	s	VERB
can-567	164	4	eeh	eeh	INTJ
can-567	165	1	ym	ym	INTJ
can-567	165	2	yth	yth	PROPN
can-567	165	3	ee	ee	PROPN
can-567	165	4	sji	sji	PROPN
can-567	165	5	3	3	NUM
can-567	165	6	)	)	PUNCT
can-567	165	7	(	(	PUNCT
can-567	165	8	28	28	NUM
can-567	165	9	exp	exp	NOUN
can-567	165	10	)	)	PUNCT
can-567	165	11	(	(	PUNCT
can-567	165	12	8	8	NUM
can-567	165	13	2/3	2/3	NUM
can-567	165	14	2	2	NUM
can-567	165	15	23	23	NUM
can-567	165	16			NOUN
can-567	165	17			PROPN
can-567	165	18	(	(	PUNCT
can-567	165	19	3	3	NUM
can-567	165	20	)	)	PUNCT
can-567	165	21	3.2	3.2	NUM
can-567	165	22	.	.	PUNCT
can-567	166	1	calculation	calculation	NOUN
can-567	166	2	of	of	ADP
can-567	166	3	the	the	DET
can-567	166	4	heating	heating	NOUN
can-567	166	5	temperature	temperature	NOUN
can-567	166	6	of	of	ADP
can-567	166	7	the	the	DET
can-567	166	8	end	end	NOUN
can-567	166	9	of	of	ADP
can-567	166	10	a	a	DET
can-567	166	11	single	single	ADJ
can-567	166	12	carbon	carbon	NOUN
can-567	166	13	nanotube	nanotube	VERB
can-567	166	14	the	the	DET
can-567	166	15	nanotube	nanotube	NOUN
can-567	166	16	is	be	AUX
can-567	166	17	heated	heat	VERB
can-567	166	18	when	when	SCONJ
can-567	166	19	an	an	DET
can-567	166	20	electric	electric	ADJ
can-567	166	21	current	current	ADJ
can-567	166	22	flows	flow	NOUN
can-567	166	23	in	in	ADP
can-567	166	24	it	it	PRON
can-567	166	25	.	.	PUNCT
can-567	167	1	its	its	PRON
can-567	167	2	temperature	temperature	NOUN
can-567	167	3	is	be	AUX
can-567	167	4	not	not	PART
can-567	167	5	the	the	DET
can-567	167	6	same	same	ADJ
can-567	167	7	at	at	ADP
can-567	167	8	its	its	PRON
can-567	167	9	two	two	NUM
can-567	167	10	ends	end	NOUN
can-567	167	11	.	.	PUNCT
can-567	168	1	it	it	PRON
can-567	168	2	is	be	AUX
can-567	168	3	assumed	assume	VERB
can-567	168	4	that	that	SCONJ
can-567	168	5	the	the	DET
can-567	168	6	temperature	temperature	NOUN
can-567	168	7	of	of	ADP
can-567	168	8	the	the	DET
can-567	168	9	nanotube	nanotube	ADJ
can-567	168	10	end	end	NOUN
can-567	168	11	,	,	PUNCT
can-567	168	12	which	which	PRON
can-567	168	13	is	be	AUX
can-567	168	14	in	in	ADP
can-567	168	15	contact	contact	NOUN
can-567	168	16	with	with	ADP
can-567	168	17	the	the	DET
can-567	168	18	substrate	substrate	NOUN
can-567	168	19	,	,	PUNCT
can-567	168	20	is	be	AUX
can-567	168	21	equal	equal	ADJ
can-567	168	22	to	to	ADP
can-567	168	23	the	the	DET
can-567	168	24	temperature	temperature	NOUN
can-567	168	25	of	of	ADP
can-567	168	26	the	the	DET
can-567	168	27	substrate	substrate	NOUN
can-567	168	28	.	.	PUNCT
can-567	169	1	the	the	DET
can-567	169	2	temperature	temperature	NOUN
can-567	169	3	of	of	ADP
can-567	169	4	the	the	DET
can-567	169	5	opposite	opposite	ADJ
can-567	169	6	end	end	NOUN
can-567	169	7	was	be	AUX
can-567	169	8	calculated	calculate	VERB
can-567	169	9	by	by	ADP
can-567	169	10	solving	solve	VERB
can-567	169	11	the	the	DET
can-567	169	12	heat	heat	NOUN
can-567	169	13	-	-	PUNCT
can-567	169	14	transfer	transfer	NOUN
can-567	169	15	equation	equation	NOUN
can-567	169	16	taking	take	VERB
can-567	169	17	into	into	ADP
can-567	169	18	account	account	NOUN
can-567	169	19	the	the	DET
can-567	169	20	radiative	radiative	ADJ
can-567	169	21	cooling	cooling	NOUN
can-567	169	22	and	and	CCONJ
can-567	169	23	the	the	DET
can-567	169	24	release	release	NOUN
can-567	169	25	of	of	ADP
can-567	169	26	heat	heat	NOUN
can-567	169	27	,	,	PUNCT
can-567	169	28	which	which	PRON
can-567	169	29	is	be	AUX
can-567	169	30	caused	cause	VERB
can-567	169	31	by	by	ADP
can-567	169	32	the	the	DET
can-567	169	33	current	current	ADJ
can-567	169	34	flow	flow	NOUN
can-567	169	35	[	[	X
can-567	169	36	21,25	21,25	NUM
can-567	169	37	]	]	X
can-567	169	38	:	:	PUNCT
can-567	169	39			NOUN
can-567	169	40			PROPN
can-567	169	41	0	0	NUM
can-567	169	42	)	)	PUNCT
can-567	169	43	(	(	PUNCT
can-567	169	44	2	2	NUM
can-567	169	45	)	)	PUNCT
can-567	169	46	(	(	PUNCT
can-567	169	47	24	24	NUM
can-567	169	48	0	0	NUM
can-567	169	49	4	4	NUM
can-567	169	50			PROPN
can-567	169	51			NOUN
can-567	169	52			PRON
can-567	169	53			PROPN
can-567	169	54			PROPN
can-567	169	55			NOUN
can-567	169	56	dx	dx	PROPN
can-567	169	57	l	l	NOUN
can-567	170	1	tr	tr	VERB
can-567	170	2	idxttrdx	idxttrdx	ADJ
can-567	170	3	dx	dx	PROPN
can-567	170	4	dt	dt	PROPN
can-567	170	5	tk	tk	PROPN
can-567	171	1	dx	dx	PROPN
can-567	172	1	d	d	X
can-567	172	2	s	s	X
can-567	172	3			PUNCT
can-567	172	4	(	(	PUNCT
can-567	172	5	4	4	NUM
can-567	172	6	)	)	PUNCT
can-567	172	7	where	where	SCONJ
can-567	172	8	:	:	PUNCT
can-567	172	9	is	be	AUX
can-567	172	10	cross	cross	ADJ
can-567	172	11	-	-	ADJ
can-567	172	12	section	section	ADJ
can-567	172	13	area	area	NOUN
can-567	172	14	of	of	ADP
can-567	172	15	cnt	cnt	PROPN
can-567	172	16	;	;	PUNCT
can-567	172	17	r	r	NOUN
can-567	172	18	is	be	AUX
can-567	172	19	outer	outer	ADJ
can-567	172	20	radius	radius	NOUN
can-567	172	21	of	of	ADP
can-567	172	22	cnt	cnt	PROPN
can-567	172	23	;	;	PUNCT
can-567	172	24	r0	r0	NOUN
can-567	172	25	is	be	AUX
can-567	172	26	inner	inner	ADJ
can-567	172	27	radius	radius	NOUN
can-567	172	28	of	of	ADP
can-567	172	29	cnt	cnt	X
can-567	172	30	;	;	PUNCT
can-567	172	31	k(t	k(t	X
can-567	172	32	)	)	PUNCT
can-567	172	33	is	be	AUX
can-567	172	34	coefficient	coefficient	NOUN
can-567	172	35	of	of	ADP
can-567	172	36	heat	heat	NOUN
can-567	172	37	conductivity	conductivity	NOUN
can-567	172	38	along	along	ADP
can-567	172	39	the	the	DET
can-567	172	40	cnt	cnt	PROPN
can-567	172	41	axis	axis	NOUN
can-567	172	42	;	;	PUNCT
can-567	172	43	t	t	PROPN
can-567	172	44	=	=	SYM
can-567	172	45	t(x	t(x	PROPN
can-567	172	46	)	)	PUNCT
can-567	172	47	is	be	AUX
can-567	172	48	the	the	DET
can-567	172	49	temperature	temperature	NOUN
can-567	172	50	along	along	ADP
can-567	172	51	the	the	DET
can-567	172	52	cnt	cnt	PROPN
can-567	172	53	axis	axis	NOUN
can-567	172	54	;	;	PUNCT
can-567	172	55	t0	t0	PROPN
can-567	172	56	is	be	AUX
can-567	172	57	the	the	DET
can-567	172	58	temperature	temperature	NOUN
can-567	172	59	of	of	ADP
can-567	172	60	surrounding	surround	VERB
can-567	172	61	bod	bod	ADJ
can-567	172	62	ies	ie	NOUN
can-567	172	63	(	(	PUNCT
can-567	172	64	substrate	substrate	NOUN
can-567	172	65	)	)	PUNCT
can-567	172	66	;	;	PUNCT
can-567	172	67	l	l	NOUN
can-567	172	68	is	be	AUX
can-567	172	69	length	length	NOUN
can-567	172	70	of	of	ADP
can-567	172	71	cnt	cnt	PROPN
can-567	172	72	;	;	PUNCT
can-567	172	73	r(t)/l	r(t)/l	PROPN
can-567	172	74	is	be	AUX
can-567	172	75	electrical	electrical	ADJ
can-567	172	76	resistance	resistance	NOUN
can-567	172	77	of	of	ADP
can-567	172	78	a	a	DET
can-567	172	79	unit	unit	NOUN
can-567	172	80	length	length	NOUN
can-567	172	81	of	of	ADP
can-567	172	82	cnt	cnt	PROPN
can-567	172	83	;	;	PUNCT
can-567	172	84	η	η	X
can-567	172	85	is	be	AUX
can-567	172	86	the	the	DET
can-567	172	87	coefficient	coefficient	NOUN
can-567	172	88	of	of	ADP
can-567	172	89	the	the	DET
can-567	172	90	grayness	grayness	NOUN
can-567	172	91	of	of	ADP
can-567	172	92	the	the	DET
can-567	172	93	thermal	thermal	ADJ
can-567	172	94	radiation	radiation	NOUN
can-567	172	95	of	of	ADP
can-567	172	96	cnt	cnt	PROPN
can-567	172	97	(	(	PUNCT
can-567	172	98	η＜1	η＜1	NUM
can-567	172	99	)	)	PUNCT
can-567	172	100	in	in	ADP
can-567	172	101	our	our	PRON
can-567	172	102	case	case	NOUN
can-567	172	103	,	,	PUNCT
can-567	172	104	which	which	PRON
can-567	172	105	was	be	AUX
can-567	172	106	taken	take	VERB
can-567	172	107	equal	equal	ADJ
can-567	172	108	to	to	ADP
can-567	172	109	0.9	0.9	NUM
can-567	172	110	;	;	PUNCT
can-567	172	111	)	)	PUNCT
can-567	172	112	/(1067.5	/(1067.5	PUNCT
can-567	173	1	428	428	NUM
can-567	173	2	kmw	kmw	NOUN
can-567	173	3	is	be	AUX
can-567	173	4	stefan	stefan	PROPN
can-567	173	5	-	-	PUNCT
can-567	173	6	boltz	boltz	PROPN
can-567	173	7	mann	mann	PROPN
can-567	173	8	constant	constant	PROPN
can-567	173	9	;	;	PUNCT
can-567	173	10	i	i	PRON
can-567	173	11	is	be	AUX
can-567	173	12	the	the	DET
can-567	173	13	current	current	NOUN
can-567	173	14	flowing	flow	VERB
can-567	173	15	through	through	ADP
can-567	173	16	cnt	cnt	PROPN
can-567	173	17	(	(	PUNCT
can-567	173	18	emission	emission	NOUN
can-567	173	19	current	current	ADJ
can-567	173	20	)	)	PUNCT
can-567	173	21	.	.	PUNCT
can-567	174	1	the	the	DET
can-567	174	2	boundary	boundary	ADJ
can-567	174	3	conditions	condition	NOUN
can-567	174	4	for	for	ADP
can-567	174	5	equation	equation	NOUN
can-567	174	6	(	(	PUNCT
can-567	174	7	4	4	X
can-567	174	8	)	)	PUNCT
can-567	174	9	have	have	VERB
can-567	174	10	the	the	DET
can-567	174	11	formula	formula	NOUN
can-567	174	12	:	:	PUNCT
can-567	174	13	.0	.0	NUM
can-567	174	14	)	)	PUNCT
can-567	174	15	(	(	PUNCT
can-567	174	16	,	,	PUNCT
can-567	174	17	)	)	PUNCT
can-567	174	18	0	0	NUM
can-567	174	19	(	(	PUNCT
can-567	174	20	0	0	NUM
can-567	174	21			NUM
can-567	174	22	dx	dx	PROPN
can-567	174	23	ldt	ldt	PROPN
can-567	174	24	tt	tt	PROPN
can-567	174	25	(	(	PUNCT
can-567	174	26	5	5	NUM
can-567	174	27	)	)	PUNCT
can-567	174	28	in	in	ADP
can-567	174	29	the	the	DET
can-567	174	30	study	study	NOUN
can-567	174	31	of	of	ADP
can-567	174	32	vincent	vincent	PROPN
can-567	174	33	et	et	PROPN
can-567	174	34	al	al	PROPN
can-567	174	35	.	.	PUNCT
can-567	175	1	[	[	X
can-567	175	2	21	21	NUM
can-567	175	3	]	]	PUNCT
can-567	175	4	,	,	PUNCT
can-567	175	5	the	the	DET
can-567	175	6	analytical	analytical	ADJ
can-567	175	7	solution	solution	NOUN
can-567	175	8	of	of	ADP
can-567	175	9	ed	ed	NOUN
can-567	175	10	.	.	PUNCT
can-567	176	1	(	(	PUNCT
can-567	176	2	4	4	X
can-567	176	3	)	)	PUNCT
can-567	176	4	was	be	AUX
can-567	176	5	obtained	obtain	VERB
can-567	176	6	in	in	ADP
can-567	176	7	the	the	DET
can-567	176	8	absence	absence	NOUN
can-567	176	9	of	of	ADP
can-567	176	10	radiative	radiative	ADJ
can-567	176	11	cooling	cooling	NOUN
can-567	176	12	and	and	CCONJ
can-567	176	13	provided	provide	VERB
can-567	176	14	that	that	SCONJ
can-567	176	15	the	the	DET
can-567	176	16	thermal	thermal	ADJ
can-567	176	17	conductivity	conductivity	NOUN
can-567	176	18	coefficient	coefficient	NOUN
can-567	176	19	k	k	NOUN
can-567	176	20	,	,	PUNCT
can-567	176	21	as	as	ADV
can-567	176	22	well	well	ADV
can-567	176	23	as	as	ADP
can-567	176	24	the	the	DET
can-567	176	25	resistance	resistance	NOUN
can-567	176	26	r	r	NOUN
can-567	176	27	of	of	ADP
can-567	176	28	the	the	DET
can-567	176	29	nanotube	nanotube	NOUN
can-567	176	30	,	,	PUNCT
can-567	176	31	which	which	PRON
can-567	176	32	do	do	AUX
can-567	176	33	not	not	PART
can-567	176	34	depend	depend	VERB
can-567	176	35	on	on	ADP
can-567	176	36	temperature	temperature	NOUN
can-567	176	37	.	.	PUNCT
can-567	177	1	however	however	ADV
can-567	177	2	,	,	PUNCT
can-567	177	3	for	for	ADP
can-567	177	4	the	the	DET
can-567	177	5	case	case	NOUN
can-567	177	6	with	with	ADP
can-567	177	7	cnts	cnt	NOUN
can-567	177	8	there	there	PRON
can-567	177	9	is	be	VERB
can-567	177	10	a	a	DET
can-567	177	11	temperature	temperature	NOUN
can-567	177	12	dependence	dependence	NOUN
can-567	177	13	of	of	ADP
can-567	177	14	k	k	PROPN
can-567	177	15	and	and	CCONJ
can-567	177	16	r	r	PROPN
can-567	177	17	,	,	PUNCT
can-567	177	18	therefore	therefore	ADV
can-567	177	19	the	the	DET
can-567	177	20	results	result	NOUN
can-567	177	21	of	of	ADP
can-567	177	22	vincent	vincent	PROPN
can-567	177	23	et	et	PROPN
can-567	178	1	al	al	PROPN
can-567	178	2	.	.	PROPN
can-567	178	3	’s	’s	PART
can-567	178	4	study	study	NOUN
can-567	178	5	[	[	X
can-567	178	6	21	21	NUM
can-567	178	7	]	]	X
can-567	178	8	should	should	AUX
can-567	178	9	be	be	AUX
can-567	178	10	considered	consider	VERB
can-567	178	11	as	as	ADP
can-567	178	12	approximate	approximate	ADJ
can-567	178	13	.	.	PUNCT
can-567	179	1	it	it	PRON
can-567	179	2	was	be	AUX
can-567	179	3	assumed	assume	VERB
can-567	179	4	in	in	ADP
can-567	179	5	bocharov	bocharov	PROPN
can-567	179	6	&	&	CCONJ
can-567	179	7	eletskii	eletskii	PROPN
can-567	179	8	’s	’s	PART
can-567	179	9	study	study	NOUN
can-567	179	10	[	[	X
can-567	179	11	25	25	NUM
can-567	179	12	]	]	PUNCT
can-567	179	13	that	that	SCONJ
can-567	179	14	the	the	DET
can-567	179	15	thermal	thermal	ADJ
can-567	179	16	conductivity	conductivity	NOUN
can-567	179	17	coefficient	coefficient	NOUN
can-567	179	18	k	k	PROPN
can-567	179	19	and	and	CCONJ
can-567	179	20	the	the	DET
can-567	179	21	resistance	resistance	NOUN
can-567	179	22	r	r	NOUN
can-567	179	23	are	be	AUX
can-567	179	24	described	describe	VERB
can-567	179	25	by	by	ADP
can-567	179	26	power	power	NOUN
can-567	179	27	functions	function	NOUN
can-567	179	28	of	of	ADP
can-567	179	29	temperature	temperature	NOUN
can-567	179	30	.	.	PUNCT
can-567	180	1	for	for	ADP
can-567	180	2	the	the	DET
can-567	180	3	case	case	NOUN
can-567	180	4	:	:	PUNCT
can-567	180	5	k	k	X
can-567	180	6	=	=	NOUN
can-567	180	7	at	at	ADP
can-567	180	8	3	3	NUM
can-567	180	9	,	,	PUNCT
can-567	180	10	r	r	NOUN
can-567	180	11	=	=	NOUN
can-567	180	12	bt	bt	NOUN
can-567	180	13	4	4	NUM
can-567	180	14	+	+	NOUN
can-567	180	15	c	c	NOUN
can-567	180	16	in	in	ADP
can-567	180	17	bocharov	bocharov	PROPN
can-567	180	18	&	&	CCONJ
can-567	180	19	eletskii	eletskii	PROPN
can-567	180	20	’s	’s	PART
can-567	180	21	study	study	NOUN
can-567	180	22	[	[	X
can-567	180	23	25	25	NUM
can-567	180	24	]	]	PUNCT
can-567	180	25	,	,	PUNCT
can-567	180	26	an	an	DET
can-567	180	27	analytic	analytic	ADJ
can-567	180	28	solution	solution	NOUN
can-567	180	29	of	of	ADP
can-567	180	30	ed	ed	NOUN
can-567	180	31	.	.	PUNCT
can-567	181	1	(	(	PUNCT
can-567	181	2	4	4	X
can-567	181	3	)	)	PUNCT
can-567	181	4	was	be	AUX
can-567	181	5	obtained	obtain	VERB
can-567	181	6	.	.	PUNCT
can-567	182	1	in	in	ADP
can-567	182	2	the	the	DET
can-567	182	3	study	study	NOUN
can-567	182	4	of	of	ADP
can-567	182	5	bocharov	bocharov	PROPN
can-567	182	6	et	et	PROPN
can-567	182	7	al	al	PROPN
can-567	182	8	.	.	PUNCT
can-567	183	1	[	[	X
can-567	183	2	26	26	NUM
can-567	183	3	]	]	PUNCT
can-567	183	4	,	,	PUNCT
can-567	183	5	it	it	PRON
can-567	183	6	was	be	AUX
can-567	183	7	assumed	assume	VERB
can-567	183	8	that	that	SCONJ
can-567	183	9	:	:	PUNCT
can-567	183	10	,	,	PUNCT
can-567	183	11	，	，	PROPN
can-567	183	12	where	where	SCONJ
can-567	183	13			NOUN
can-567	183	14	is	be	AUX
can-567	183	15	an	an	DET
can-567	183	16	adjustable	adjustable	ADJ
can-567	183	17	parameter	parameter	NOUN
can-567	183	18	,	,	PUNCT
can-567	183	19	and	and	CCONJ
can-567	183	20	equation	equation	NOUN
can-567	183	21	(	(	PUNCT
can-567	183	22	4	4	X
can-567	183	23	)	)	PUNCT
can-567	183	24	was	be	AUX
can-567	183	25	solved	solve	VERB
can-567	183	26	numerically	numerically	ADV
can-567	183	27	.	.	PUNCT
can-567	184	1	however	however	ADV
can-567	184	2	,	,	PUNCT
can-567	184	3	power	power	NOUN
can-567	184	4	-	-	PUNCT
can-567	184	5	law	law	NOUN
can-567	184	6	dependence	dependence	NOUN
can-567	184	7	with	with	ADP
can-567	184	8	the	the	DET
can-567	184	9	form	form	NOUN
can-567	184	10	for	for	ADP
can-567	184	11	the	the	DET
can-567	184	12	thermal	thermal	ADJ
can-567	184	13	conductivity	conductivity	NOUN
can-567	184	14	coefficient	coefficient	NOUN
can-567	184	15	occurs	occur	VERB
can-567	184	16	only	only	ADV
can-567	184	17	at	at	ADP
can-567	184	18	temperatures	temperature	NOUN
can-567	184	19	below	below	ADP
can-567	184	20	the	the	DET
can-567	184	21	debye	debye	ADJ
can-567	184	22	characteristic	characteristic	ADJ
can-567	184	23	temperature	temperature	NOUN
can-567	184	24	[	[	X
can-567	184	25	27	27	NUM
can-567	184	26	]	]	PUNCT
can-567	184	27	.	.	PUNCT
can-567	185	1	at	at	ADP
can-567	185	2	high	high	ADJ
can-567	185	3	temperatures	temperature	NOUN
can-567	185	4	,	,	PUNCT
can-567	185	5	due	due	ADP
can-567	185	6	to	to	ADP
can-567	185	7	the	the	DET
can-567	185	8	anharmonicity	anharmonicity	NOUN
can-567	185	9	of	of	ADP
can-567	185	10	long	long	ADJ
can-567	185	11	-	-	PUNCT
can-567	185	12	wave	wave	NOUN
can-567	185	13	oscillations	oscillation	NOUN
can-567	185	14	and	and	CCONJ
can-567	185	15	other	other	ADJ
can-567	185	16	causes	cause	NOUN
can-567	185	17	,	,	PUNCT
can-567	185	18	the	the	DET
can-567	185	19	thermal	thermal	ADJ
can-567	185	20	conductivity	conductivity	NOUN
can-567	185	21	of	of	ADP
can-567	185	22	a	a	DET
can-567	185	23	solid	solid	ADJ
can-567	185	24	body	body	NOUN
can-567	185	25	decreases	decrease	VERB
can-567	185	26	according	accord	VERB
can-567	185	27	to	to	ADP
can-567	185	28	the	the	DET
can-567	185	29	law1	law1	PROPN
can-567	185	30	/	/	SYM
can-567	185	31	t	t	PROPN
can-567	185	32	,	,	PUNCT
can-567	185	33	namely	namely	ADV
can-567	185	34	in	in	ADP
can-567	185	35	the	the	DET
can-567	185	36	study	study	NOUN
can-567	185	37	of	of	ADP
can-567	185	38	ziman	ziman	NOUN
can-567	185	39	[	[	X
can-567	185	40	27	27	NUM
can-567	185	41	]	]	PUNCT
can-567	185	42	:	:	PUNCT
can-567	185	43	(	(	PUNCT
can-567	185	44	6	6	NUM
can-567	185	45	)	)	PUNCT
can-567	185	46	where	where	SCONJ
can-567	185	47	:	:	PUNCT
can-567	185	48			NOUN
can-567	185	49	is	be	AUX
can-567	185	50	debye	debye	ADJ
can-567	185	51	temperature	temperature	NOUN
can-567	185	52	.	.	PUNCT
can-567	186	1	the	the	DET
can-567	186	2	energy	energy	NOUN
can-567	186	3	of	of	ADP
can-567	186	4	the	the	DET
can-567	186	5	debye	debye	ADJ
can-567	186	6	phonon	phonon	NOUN
can-567	186	7	of	of	ADP
can-567	186	8	carbon	carbon	NOUN
can-567	186	9	nanotubes	nanotube	NOUN
can-567	186	10	is	be	AUX
can-567	186	11	0.103	0.103	NUM
can-567	186	12	ev	ev	NOUN
can-567	186	13	[	[	X
can-567	186	14	28	28	NUM
can-567	186	15	]	]	PUNCT
can-567	186	16	.	.	PUNCT
can-567	187	1	accordingly	accordingly	ADV
can-567	187	2	,	,	PUNCT
can-567	187	3	the	the	DET
can-567	187	4	debye	debye	ADJ
can-567	187	5	temperature	temperature	NOUN
can-567	187	6	is	be	AUX
can-567	187	7	=1190k	=1190k	NOUN
can-567	187	8	.	.	PUNCT
can-567	188	1	it	it	PRON
can-567	188	2	is	be	AUX
can-567	188	3	the	the	DET
can-567	188	4	dependence	dependence	NOUN
can-567	188	5	that	that	PRON
can-567	188	6	dominates	dominate	VERB
can-567	188	7	in	in	ADP
can-567	188	8	the	the	DET
can-567	188	9	high	high	ADJ
can-567	188	10	temperature	temperature	NOUN
can-567	188	11	region	region	NOUN
can-567	188	12	,	,	PUNCT
can-567	188	13	when	when	SCONJ
can-567	188	14	thermionic	thermionic	ADJ
can-567	188	15	emission	emission	NOUN
can-567	188	16	is	be	AUX
can-567	188	17	possible	possible	ADJ
can-567	188	18	.	.	PUNCT
can-567	189	1	therefore	therefore	ADV
can-567	189	2	,	,	PUNCT
can-567	189	3	for	for	ADP
can-567	189	4	calculating	calculate	VERB
can-567	189	5	the	the	DET
can-567	189	6	heating	heating	NOUN
can-567	189	7	of	of	ADP
can-567	189	8	ctk	ctk	PROPN
can-567	189	9			PROPN
can-567	189	10	)	)	PUNCT
can-567	189	11	(	(	PUNCT
can-567	189	12	2	2	NUM
can-567	189	13	0	0	NUM
can-567	189	14	2	2	NUM
can-567	189	15	rrs	rrs	NOUN
can-567	189	16			PROPN
can-567	189	17			PROPN
can-567	189	18	)/	)/	PROPN
can-567	189	19	(	(	PUNCT
can-567	189	20	00	00	NUM
can-567	189	21	ttkk	ttkk	NOUN
can-567	189	22			PRON
can-567	189	23	)/	)/	PROPN
can-567	189	24	(	(	PUNCT
can-567	189	25	00	00	NUM
can-567	189	26	ttrr	ttrr	NOUN
can-567	190	1			PROPN
can-567	190	2	t	t	NOUN
can-567	190	3	kk	kk	X
can-567	190	4			PROPN
can-567	190	5			ADV
can-567	190	6	0	0	NUM
can-567	190	7	55	55	NUM
can-567	190	8	the	the	DET
can-567	190	9	nanotube	nanotube	NOUN
can-567	190	10	,	,	PUNCT
can-567	190	11	the	the	DET
can-567	190	12	dependence	dependence	NOUN
can-567	190	13	ed	ed	NOUN
can-567	190	14	.	.	PUNCT
can-567	191	1	(	(	PUNCT
can-567	191	2	6	6	NUM
can-567	191	3	)	)	PUNCT
can-567	191	4	was	be	AUX
can-567	191	5	chosen	choose	VERB
can-567	191	6	.	.	PUNCT
can-567	192	1	the	the	DET
can-567	192	2	correct	correct	ADJ
can-567	192	3	calculation	calculation	NOUN
can-567	192	4	of	of	ADP
can-567	192	5	the	the	DET
can-567	192	6	temperature	temperature	NOUN
can-567	192	7	of	of	ADP
can-567	192	8	nanotubes	nanotube	NOUN
can-567	192	9	should	should	AUX
can-567	192	10	be	be	AUX
can-567	192	11	taken	take	VERB
can-567	192	12	into	into	ADP
can-567	192	13	account	account	NOUN
can-567	192	14	both	both	DET
can-567	192	15	their	their	PRON
can-567	192	16	heating	heating	NOUN
can-567	192	17	due	due	ADP
can-567	192	18	to	to	ADP
can-567	192	19	joule	joule	PROPN
can-567	192	20	heat	heat	NOUN
can-567	192	21	,	,	PUNCT
can-567	192	22	and	and	CCONJ
can-567	192	23	cooling	cool	VERB
can-567	192	24	due	due	ADP
can-567	192	25	to	to	ADP
can-567	192	26	the	the	DET
can-567	192	27	notingham	notingham	ADJ
can-567	192	28	effect	effect	NOUN
can-567	192	29	[	[	X
can-567	192	30	29	29	NUM
can-567	192	31	]	]	PUNCT
can-567	192	32	.	.	PUNCT
can-567	193	1	the	the	DET
can-567	193	2	nottingham	nottingham	PROPN
can-567	193	3	effect	effect	NOUN
can-567	193	4	is	be	AUX
can-567	193	5	manifested	manifest	VERB
can-567	193	6	in	in	ADP
can-567	193	7	the	the	DET
can-567	193	8	cooling	cooling	NOUN
can-567	193	9	of	of	ADP
can-567	193	10	the	the	DET
can-567	193	11	cathode	cathode	NOUN
can-567	193	12	.	.	PUNCT
can-567	194	1	this	this	DET
can-567	194	2	effect	effect	NOUN
can-567	194	3	is	be	AUX
can-567	194	4	the	the	DET
can-567	194	5	result	result	NOUN
can-567	194	6	of	of	ADP
can-567	194	7	the	the	DET
can-567	194	8	difference	difference	NOUN
can-567	194	9	between	between	ADP
can-567	194	10	the	the	DET
can-567	194	11	average	average	ADJ
can-567	194	12	energy	energy	NOUN
can-567	194	13	of	of	ADP
can-567	194	14	the	the	DET
can-567	194	15	electrons	electron	NOUN
can-567	194	16	that	that	PRON
can-567	194	17	leave	leave	VERB
can-567	194	18	the	the	DET
can-567	194	19	cathode	cathode	NOUN
can-567	194	20	and	and	CCONJ
can-567	194	21	the	the	DET
can-567	194	22	electrons	electron	NOUN
can-567	194	23	from	from	ADP
can-567	194	24	the	the	DET
can-567	194	25	volume	volume	NOUN
can-567	194	26	of	of	ADP
can-567	194	27	the	the	DET
can-567	194	28	nanotube	nanotube	NOUN
can-567	194	29	that	that	PRON
can-567	194	30	takes	take	VERB
can-567	194	31	their	their	PRON
can-567	194	32	place	place	NOUN
can-567	194	33	.	.	PUNCT
can-567	195	1	the	the	DET
can-567	195	2	electron	electron	NOUN
can-567	195	3	that	that	PRON
can-567	195	4	leaves	leave	VERB
can-567	195	5	the	the	DET
can-567	195	6	cnt	cnt	PROPN
can-567	195	7	carries	carry	VERB
can-567	195	8	away	away	ADV
can-567	195	9	from	from	ADP
can-567	195	10	the	the	DET
can-567	195	11	nanotube	nanotube	ADJ
can-567	195	12	energy	energy	NOUN
can-567	195	13	equal	equal	ADJ
can-567	195	14	to	to	ADP
can-567	195	15	the	the	DET
can-567	195	16	average	average	ADJ
can-567	195	17	energy	energy	NOUN
can-567	195	18	of	of	ADP
can-567	195	19	the	the	DET
can-567	195	20	thermal	thermal	ADJ
can-567	195	21	motion	motion	NOUN
can-567	195	22	(	(	PUNCT
can-567	195	23	3/2)kbt	3/2)kbt	NUM
can-567	195	24	[	[	X
can-567	195	25	30	30	NUM
can-567	195	26	]	]	PUNCT
can-567	195	27	.	.	PUNCT
can-567	196	1	the	the	DET
can-567	196	2	number	number	NOUN
can-567	196	3	of	of	ADP
can-567	196	4	electrons	electron	NOUN
can-567	196	5	that	that	PRON
can-567	196	6	are	be	AUX
can-567	196	7	emitted	emit	VERB
can-567	196	8	from	from	ADP
can-567	196	9	the	the	DET
can-567	196	10	cathode	cathode	NOUN
can-567	196	11	per	per	ADP
can-567	196	12	unit	unit	NOUN
can-567	196	13	time	time	NOUN
can-567	196	14	is	be	AUX
can-567	196	15	i	i	PROPN
can-567	196	16	/	/	SYM
can-567	196	17	e.	e.	PROPN
can-567	197	1	then	then	ADV
can-567	197	2	the	the	DET
can-567	197	3	boundary	boundary	ADJ
can-567	197	4	condition	condition	NOUN
can-567	197	5	ed	ed	NOUN
can-567	197	6	.	.	PUNCT
can-567	198	1	(	(	PUNCT
can-567	198	2	5	5	NUM
can-567	198	3	)	)	PUNCT
can-567	198	4	at	at	ADP
can-567	198	5	the	the	DET
can-567	198	6	point	point	NOUN
can-567	198	7	x	x	X
can-567	198	8	=	=	NOUN
can-567	198	9	l	l	NOUN
can-567	198	10	will	will	AUX
can-567	198	11	have	have	VERB
can-567	198	12	the	the	DET
can-567	198	13	formula	formula	NOUN
can-567	198	14	:	:	PUNCT
can-567	198	15	the	the	DET
can-567	198	16	first	first	ADJ
can-567	198	17	term	term	NOUN
can-567	198	18	describes	describe	VERB
can-567	198	19	the	the	DET
can-567	198	20	cooling	cooling	NOUN
can-567	198	21	of	of	ADP
can-567	198	22	cnts	cnt	NOUN
can-567	198	23	by	by	ADP
can-567	198	24	radiation	radiation	NOUN
can-567	198	25	from	from	ADP
can-567	198	26	the	the	DET
can-567	198	27	end	end	NOUN
can-567	198	28	surface	surface	NOUN
can-567	199	1	[	[	X
can-567	199	2	29,30	29,30	NUM
can-567	199	3	]	]	PUNCT
can-567	199	4	,	,	PUNCT
can-567	199	5	the	the	DET
can-567	199	6	second	second	ADJ
can-567	199	7	term	term	NOUN
can-567	199	8	due	due	ADP
can-567	199	9	to	to	ADP
can-567	199	10	the	the	DET
can-567	199	11	nottingham	nottingham	ADJ
can-567	199	12	effect	effect	NOUN
can-567	199	13	[	[	X
can-567	199	14	30	30	NUM
can-567	199	15	]	]	PUNCT
can-567	199	16	.	.	PUNCT
can-567	200	1	in	in	ADP
can-567	200	2	addition	addition	NOUN
can-567	200	3	,	,	PUNCT
can-567	200	4	the	the	DET
can-567	200	5	temperature	temperature	NOUN
can-567	200	6	dependence	dependence	NOUN
can-567	200	7	of	of	ADP
can-567	200	8	the	the	DET
can-567	200	9	resistance	resistance	NOUN
can-567	200	10	of	of	ADP
can-567	200	11	cnts	cnts	PROPN
can-567	200	12	has	have	VERB
can-567	200	13	the	the	DET
can-567	200	14	formula	formula	NOUN
can-567	201	1	[	[	X
can-567	201	2	30,31	30,31	NOUN
can-567	201	3	]	]	X
can-567	201	4	:	:	PUNCT
can-567	201	5	)	)	PUNCT
can-567	201	6	1	1	NUM
can-567	201	7	(	(	PUNCT
can-567	201	8	)	)	PUNCT
can-567	201	9	(	(	PUNCT
can-567	201	10	2/3	2/3	NUM
can-567	201	11	0	0	NUM
can-567	201	12	tt	tt	PROPN
can-567	201	13	s	s	PROPN
can-567	201	14	l	l	NOUN
can-567	201	15	tr	tr	NOUN
can-567	201	16			ADJ
can-567	201	17			X
can-567	201	18	(	(	PUNCT
can-567	201	19	7	7	NUM
can-567	201	20	)	)	PUNCT
can-567	201	21	where	where	SCONJ
can-567	201	22	:	:	PUNCT
can-567	201	23	0	0	X
can-567	201	24	is	be	AUX
can-567	201	25	the	the	DET
can-567	201	26	resistivity	resistivity	NOUN
can-567	201	27	of	of	ADP
can-567	201	28	cnts	cnts	PROPN
can-567	201	29	.	.	PUNCT
can-567	202	1	the	the	DET
can-567	202	2	heat	heat	NOUN
can-567	202	3	conduction	conduction	NOUN
can-567	202	4	ed	ed	NOUN
can-567	202	5	.	.	PUNCT
can-567	203	1	(	(	PUNCT
can-567	203	2	4	4	X
can-567	203	3	)	)	PUNCT
can-567	203	4	takes	take	VERB
can-567	203	5	the	the	DET
can-567	203	6	form	form	NOUN
can-567	203	7	with	with	ADP
can-567	203	8	allowance	allowance	NOUN
can-567	203	9	for	for	ADP
can-567	203	10	ed	ed	PROPN
can-567	203	11	(	(	PUNCT
can-567	203	12	6	6	NUM
can-567	203	13	)	)	PUNCT
can-567	203	14	,	,	PUNCT
can-567	203	15	(	(	PUNCT
can-567	203	16	7	7	NUM
can-567	203	17	):	):	PUNCT
can-567	203	18			NOUN
can-567	204	1			SYM
can-567	204	2			NOUN
can-567	204	3			PUNCT
can-567	204	4			NOUN
can-567	204	5			PROPN
can-567	204	6			NUM
can-567	204	7			NUM
can-567	204	8			NUM
can-567	204	9			NUM
can-567	204	10			PROPN
can-567	204	11			NUM
can-567	204	12			NUM
can-567	204	13			NUM
can-567	204	14			NUM
can-567	204	15			NUM
can-567	204	16			ADP
can-567	205	1			NUM
can-567	205	2			NOUN
can-567	205	3			ADJ
can-567	205	4			NOUN
can-567	205	5			PROPN
can-567	205	6			PROPN
can-567	205	7			VERB
can-567	205	8			PROPN
can-567	205	9			PROPN
can-567	205	10			PROPN
can-567	205	11			NOUN
can-567	205	12			PROPN
can-567	205	13			PROPN
can-567	205	14			PROPN
can-567	206	1			PROPN
can-567	206	2			NOUN
can-567	206	3			NOUN
can-567	206	4			NOUN
can-567	206	5			PROPN
can-567	206	6			PROPN
can-567	206	7			PROPN
can-567	206	8			NOUN
can-567	206	9			PROPN
can-567	206	10			PROPN
can-567	206	11	s	s	VERB
can-567	206	12	lt	lt	PRON
can-567	206	13	ek	ek	PROPN
can-567	206	14	iltk	iltk	PROPN
can-567	206	15	tlt	tlt	PROPN
can-567	207	1	lt	lt	PROPN
can-567	208	1	k	k	PROPN
can-567	208	2	dx	dx	PROPN
can-567	208	3	ldt	ldt	PROPN
can-567	208	4	tt	tt	PROPN
can-567	208	5	s	s	PROPN
can-567	208	6	tt	tt	PROPN
can-567	208	7	ittr	ittr	PROPN
can-567	208	8	dx	dx	PROPN
can-567	208	9	dt	dt	PROPN
can-567	208	10	tdx	tdx	PROPN
can-567	208	11	td	td	PROPN
can-567	208	12	s	s	PROPN
can-567	208	13	t	t	PROPN
can-567	208	14	k	k	PROPN
can-567	208	15	b	b	PROPN
can-567	208	16			NOUN
can-567	208	17			PUNCT
can-567	208	18	(	(	PUNCT
can-567	208	19	8)	8)	NUM
can-567	208	20	the	the	DET
can-567	208	21	system	system	NOUN
can-567	208	22	that	that	PRON
can-567	208	23	is	be	AUX
can-567	208	24	given	give	VERB
can-567	208	25	by	by	ADP
can-567	208	26	ed	ed	NOUN
can-567	208	27	.	.	PUNCT
can-567	209	1	(	(	PUNCT
can-567	209	2	8)	8)	NUM
can-567	209	3	is	be	AUX
can-567	209	4	solved	solve	VERB
can-567	209	5	by	by	ADP
can-567	209	6	a	a	DET
can-567	209	7	numerical	numerical	ADJ
can-567	209	8	method	method	NOUN
can-567	209	9	to	to	PART
can-567	209	10	determine	determine	VERB
can-567	209	11	the	the	DET
can-567	209	12	temperature	temperature	NOUN
can-567	209	13	of	of	ADP
can-567	209	14	the	the	DET
can-567	209	15	end	end	NOUN
can-567	209	16	of	of	ADP
can-567	209	17	a	a	DET
can-567	209	18	nanotube	nanotube	NOUN
can-567	209	19	that	that	PRON
can-567	209	20	emits	emit	VERB
can-567	209	21	electrons	electron	NOUN
can-567	209	22	.	.	PUNCT
can-567	210	1	the	the	DET
can-567	210	2	values	value	NOUN
can-567	210	3	of	of	ADP
can-567	210	4	the	the	DET
can-567	210	5	parameters	parameter	NOUN
can-567	210	6	were	be	AUX
can-567	210	7	assumed	assume	VERB
can-567	210	8	to	to	PART
can-567	210	9	be	be	AUX
can-567	210	10	equal	equal	ADJ
can-567	210	11	to	to	ADP
can-567	210	12	:	:	PUNCT
can-567	210	13	=8.510	=8.510	NOUN
can-567	210	14	-4	-4	X
can-567	211	1	k	k	X
can-567	211	2	-1[31	-1[31	X
can-567	211	3	]	]	X
can-567	211	4	;	;	PUNCT
can-567	211	5	β=9.810	β=9.810	NUM
can-567	212	1	-6	-6	PROPN
can-567	212	2	k	k	X
can-567	212	3	-3/2[31	-3/2[31	X
can-567	212	4	]	]	X
can-567	212	5	;	;	PUNCT
can-567	212	6	0=2.3310	0=2.3310	NOUN
can-567	212	7	-3	-3	PUNCT
can-567	212	8	m	m	PUNCT
can-567	213	1	[	[	X
can-567	213	2	31	31	NUM
can-567	213	3	]	]	PUNCT
can-567	213	4	;	;	PUNCT
can-567	213	5	l=2.36	l=2.36	VERB
can-567	213	6	µm	µm	NUM
can-567	213	7	;	;	PUNCT
can-567	213	8	r=20	r=20	PROPN
can-567	213	9	nm	nm	ADV
can-567	213	10	;	;	PUNCT
can-567	213	11	r0=15	r0=15	ADV
can-567	213	12	nm	nm	ADJ
can-567	213	13	;	;	PUNCT
can-567	213	14	t0=300	t0=300	NUM
can-567	214	1	k	k	NOUN
can-567	214	2	;	;	PUNCT
can-567	214	3	i=10	i=10	PROPN
can-567	214	4	ua	ua	PRON
can-567	214	5	;	;	PUNCT
can-567	214	6	=1190	=1190	PROPN
can-567	214	7	k	k	PROPN
can-567	214	8	;	;	PUNCT
can-567	214	9	k0=140	k0=140	ADJ
can-567	214	10	w/(mk	w/(mk	NUM
can-567	214	11	)	)	PUNCT
can-567	214	12	.	.	PUNCT
can-567	215	1	at	at	ADP
can-567	215	2	the	the	DET
can-567	215	3	selected	select	VERB
can-567	215	4	values	value	NOUN
can-567	215	5	of	of	ADP
can-567	215	6	k0	k0	PROPN
can-567	215	7	and	and	CCONJ
can-567	215	8			PROPN
can-567	215	9	in	in	ADP
can-567	215	10	the	the	DET
can-567	215	11	temperature	temperature	NOUN
can-567	215	12	range	range	NOUN
can-567	215	13	200	200	NUM
can-567	215	14	-	-	SYM
can-567	215	15	1000	1000	NUM
can-567	215	16	k	k	NOUN
can-567	215	17	,	,	PUNCT
can-567	215	18	the	the	DET
can-567	215	19	thermal	thermal	ADJ
can-567	215	20	conductivity	conductivity	NOUN
can-567	215	21	coefficient	coefficient	NOUN
can-567	215	22	k	k	PROPN
can-567	215	23	lies	lie	VERB
can-567	215	24	in	in	ADP
can-567	215	25	the	the	DET
can-567	215	26	range	range	NOUN
can-567	215	27	55÷830	55÷830	PROPN
can-567	215	28	w/(mk	w/(mk	NUM
can-567	215	29	)	)	PUNCT
can-567	215	30	.	.	PUNCT
can-567	216	1	this	this	PRON
can-567	216	2	corresponds	correspond	VERB
can-567	216	3	to	to	ADP
can-567	216	4	the	the	DET
can-567	216	5	literature	literature	NOUN
can-567	216	6	data	datum	NOUN
can-567	216	7	according	accord	VERB
can-567	216	8	to	to	ADP
can-567	216	9	which	which	PRON
can-567	216	10	k	k	PROPN
can-567	216	11	can	can	AUX
can-567	216	12	vary	vary	VERB
can-567	216	13	from	from	ADP
can-567	216	14	25	25	NUM
can-567	216	15	to	to	ADP
can-567	216	16	3000	3000	NUM
can-567	216	17	w/(mk	w/(mk	NUM
can-567	216	18	)	)	PUNCT
can-567	217	1	[	[	X
can-567	217	2	25	25	NUM
can-567	217	3	]	]	PUNCT
can-567	217	4	.	.	PUNCT
can-567	218	1	the	the	DET
can-567	218	2	results	result	NOUN
can-567	218	3	of	of	ADP
can-567	218	4	the	the	DET
can-567	218	5	calculations	calculation	NOUN
can-567	218	6	are	be	AUX
can-567	218	7	shown	show	VERB
can-567	218	8	in	in	ADP
can-567	218	9	figure	figure	NOUN
can-567	218	10	5	5	NUM
can-567	218	11	,	,	PUNCT
can-567	218	12	curve	curve	VERB
can-567	218	13	1	1	NUM
can-567	218	14	(	(	PUNCT
can-567	218	15	curve	curve	NOUN
can-567	218	16	2	2	NUM
can-567	218	17	—	—	PUNCT
can-567	218	18	calculation	calculation	NOUN
can-567	218	19	without	without	ADP
can-567	218	20	taking	take	VERB
can-567	218	21	into	into	ADP
can-567	218	22	account	account	NOUN
can-567	218	23	the	the	DET
can-567	218	24	nottingham	nottingham	PROPN
can-567	218	25	effect	effect	NOUN
can-567	218	26	)	)	PUNCT
can-567	218	27	.	.	PUNCT
can-567	219	1	figure	figure	NOUN
can-567	219	2	5	5	NUM
can-567	219	3	.	.	PUNCT
can-567	219	4	temperature	temperature	NOUN
can-567	219	5	distribution	distribution	NOUN
can-567	219	6	along	along	ADP
can-567	219	7	the	the	DET
can-567	219	8	axis	axis	NOUN
can-567	219	9	of	of	ADP
can-567	219	10	the	the	DET
can-567	219	11	carbon	carbon	NOUN
can-567	219	12	nanotube	nanotube	NOUN
can-567	219	13	:	:	PUNCT
can-567	219	14	1	1	NUM
can-567	219	15	—	—	PUNCT
can-567	219	16	taking	take	VERB
can-567	219	17	into	into	ADP
can-567	219	18	account	account	NOUN
can-567	219	19	(	(	PUNCT
can-567	219	20	1	1	X
can-567	219	21	)	)	PUNCT
can-567	219	22	the	the	DET
can-567	219	23	nottingham	nottingham	PROPN
can-567	219	24	effect	effect	NOUN
can-567	219	25	;	;	PUNCT
can-567	219	26	2	2	X
can-567	219	27	—	—	PUNCT
can-567	219	28	without	without	ADP
can-567	219	29	taking	take	VERB
can-567	219	30	into	into	ADP
can-567	219	31	account	account	NOUN
can-567	219	32	the	the	DET
can-567	219	33	nottingham	nottingham	PROPN
can-567	219	34	effect	effect	NOUN
can-567	219	35	.	.	PUNCT
can-567	220	1	the	the	DET
can-567	220	2	values	value	NOUN
can-567	220	3	of	of	ADP
can-567	220	4	the	the	DET
can-567	220	5	coefficients	coefficient	NOUN
can-567	220	6	are	be	AUX
can-567	220	7	indicated	indicate	VERB
can-567	220	8	in	in	ADP
can-567	220	9	the	the	DET
can-567	220	10	text	text	NOUN
can-567	220	11	.	.	PUNCT
can-567	221	1	figure	figure	VERB
can-567	221	2	6	6	NUM
can-567	221	3	.	.	PUNCT
can-567	222	1	the	the	DET
can-567	222	2	temperature	temperature	NOUN
can-567	222	3	of	of	ADP
can-567	222	4	the	the	DET
can-567	222	5	emitting	emit	VERB
can-567	222	6	end	end	NOUN
can-567	222	7	of	of	ADP
can-567	222	8	cnts	cnt	NOUN
can-567	222	9	on	on	ADP
can-567	222	10	the	the	DET
can-567	222	11	value	value	NOUN
can-567	222	12	of	of	ADP
can-567	222	13	the	the	DET
can-567	222	14	flowing	flow	VERB
can-567	222	15	emission	emission	NOUN
can-567	222	16	current	current	ADJ
can-567	222	17	,	,	PUNCT
can-567	222	18	taking	take	VERB
can-567	222	19	into	into	ADP
can-567	222	20	account	account	NOUN
can-567	222	21	the	the	DET
can-567	222	22	nottingham	nottingham	PROPN
can-567	222	23	effect	effect	NOUN
can-567	222	24	.	.	PUNCT
can-567	223	1	1	1	X
can-567	223	2	—	—	PUNCT
can-567	223	3	k	k	X
can-567	223	4	=	=	PROPN
can-567	223	5	k0	k0	PROPN
can-567	223	6	(	(	PUNCT
can-567	223	7	/t	/t	PROPN
can-567	223	8	)	)	PUNCT
can-567	223	9	;	;	PUNCT
can-567	223	10	2	2	X
can-567	223	11	—	—	PUNCT
can-567	223	12	k	k	X
can-567	223	13	=	=	NOUN
can-567	223	14	const	const	ADJ
can-567	223	15	.	.	PUNCT
can-567	224	1	the	the	DET
can-567	224	2	values	value	NOUN
can-567	224	3	of	of	ADP
can-567	224	4	the	the	DET
can-567	224	5	coefficients	coefficient	NOUN
can-567	224	6	are	be	AUX
can-567	224	7	shown	show	VERB
can-567	224	8	in	in	ADP
can-567	224	9	the	the	DET
can-567	224	10	text	text	NOUN
can-567	224	11	.	.	PUNCT
can-567	225	1	figure	figure	NOUN
can-567	225	2	6	6	NUM
can-567	225	3	shows	show	VERB
can-567	225	4	the	the	DET
can-567	225	5	temperature	temperature	NOUN
can-567	225	6	dependence	dependence	NOUN
can-567	225	7	of	of	ADP
can-567	225	8	the	the	DET
can-567	225	9	emitting	emit	VERB
can-567	225	10	end	end	NOUN
can-567	225	11	of	of	ADP
can-567	225	12	the	the	DET
can-567	225	13	cnts	cnts	PROPN
can-567	225	14	(	(	PUNCT
can-567	225	15	tl	tl	PROPN
can-567	225	16	)	)	PUNCT
can-567	225	17	as	as	ADP
can-567	225	18	a	a	DET
can-567	225	19	function	function	NOUN
can-567	225	20	of	of	ADP
can-567	225	21	the	the	DET
can-567	225	22	flowing	flow	VERB
can-567	225	23	emission	emission	NOUN
can-567	225	24	current	current	ADJ
can-567	225	25	,	,	PUNCT
can-567	225	26	taking	take	VERB
can-567	225	27	into	into	ADP
can-567	225	28	account	account	NOUN
can-567	225	29	the	the	DET
can-567	225	30	nottingham	nottingham	PROPN
can-567	225	31	effect	effect	NOUN
can-567	225	32	(	(	PUNCT
can-567	225	33	for	for	ADP
can-567	225	34	comparison	comparison	NOUN
can-567	225	35	,	,	PUNCT
can-567	225	36	the	the	DET
can-567	225	37	curve	curve	NOUN
can-567	225	38	for	for	ADP
can-567	225	39	k	k	NOUN
can-567	225	40	=	=	NOUN
can-567	225	41	const	const	NOUN
can-567	225	42	is	be	AUX
can-567	225	43	also	also	ADV
can-567	225	44	given	give	VERB
can-567	225	45	there	there	ADV
can-567	225	46	)	)	PUNCT
can-567	225	47	.	.	PUNCT
can-567	226	1	the	the	DET
can-567	226	2	calculation	calculation	NOUN
can-567	226	3	is	be	AUX
can-567	226	4			NOUN
can-567	226	5			PUNCT
can-567	227	1	eks	ek	NOUN
can-567	227	2	iltk	iltk	NOUN
can-567	227	3	tlt	tlt	PROPN
can-567	227	4	kdx	kdx	PROPN
can-567	227	5	ldt	ldt	PROPN
can-567	227	6	b	b	PROPN
can-567	227	7			NOUN
can-567	227	8	2	2	NUM
can-567	227	9	)	)	PUNCT
can-567	227	10	(	(	PUNCT
can-567	227	11	3	3	NUM
can-567	227	12	)	)	PUNCT
can-567	227	13	(	(	PUNCT
can-567	227	14	)	)	PUNCT
can-567	227	15	(	(	PUNCT
can-567	227	16	4	4	NUM
can-567	227	17	0	0	NUM
can-567	227	18	4	4	NUM
can-567	227	19	56	56	NUM
can-567	227	20	made	make	VERB
can-567	227	21	for	for	ADP
can-567	227	22	the	the	DET
can-567	227	23	values	value	NOUN
can-567	227	24	of	of	ADP
can-567	227	25	the	the	DET
can-567	227	26	coefficients	coefficient	NOUN
can-567	227	27	,	,	PUNCT
can-567	227	28	which	which	PRON
can-567	227	29	are	be	AUX
can-567	227	30	given	give	VERB
can-567	227	31	in	in	ADP
can-567	227	32	the	the	DET
can-567	227	33	text	text	NOUN
can-567	227	34	before	before	ADP
can-567	227	35	that	that	PRON
can-567	227	36	.	.	PUNCT
can-567	228	1	the	the	DET
can-567	228	2	temperature	temperature	NOUN
can-567	228	3	of	of	ADP
can-567	228	4	the	the	DET
can-567	228	5	emitting	emit	VERB
can-567	228	6	end	end	NOUN
can-567	228	7	of	of	ADP
can-567	228	8	the	the	DET
can-567	228	9	cnt	cnt	PROPN
can-567	228	10	in	in	ADP
can-567	228	11	the	the	DET
can-567	228	12	case	case	NOUN
can-567	228	13	k	k	PROPN
can-567	228	14	=	=	PROPN
can-567	228	15	k0	k0	PROPN
can-567	228	16	(	(	PUNCT
can-567	228	17	/t	/t	PROPN
can-567	228	18	)	)	PUNCT
can-567	228	19	turned	turn	VERB
can-567	228	20	out	out	ADP
can-567	228	21	to	to	PART
can-567	228	22	be	be	AUX
can-567	228	23	higher	high	ADJ
can-567	228	24	than	than	ADP
can-567	228	25	in	in	ADP
can-567	228	26	the	the	DET
can-567	228	27	case	case	NOUN
can-567	228	28	k	k	NOUN
can-567	228	29	=	=	NOUN
can-567	228	30	const	const	NOUN
can-567	228	31	in	in	ADP
can-567	228	32	the	the	DET
can-567	228	33	whole	whole	ADJ
can-567	228	34	considered	consider	VERB
can-567	228	35	range	range	NOUN
can-567	228	36	of	of	ADP
can-567	228	37	emission	emission	NOUN
can-567	228	38	currents	current	NOUN
can-567	228	39	.	.	PUNCT
can-567	229	1	the	the	DET
can-567	229	2	nanotube	nanotube	ADJ
can-567	229	3	length	length	NOUN
can-567	229	4	varied	varied	ADJ
can-567	229	5	from	from	ADP
can-567	229	6	0.5	0.5	NUM
can-567	229	7	to	to	PART
can-567	229	8	4	4	NUM
can-567	229	9	μm	μm	NOUN
can-567	229	10	when	when	SCONJ
can-567	229	11	calculating	calculate	VERB
can-567	229	12	the	the	DET
can-567	229	13	temperature	temperature	NOUN
can-567	229	14	.	.	PUNCT
can-567	230	1	the	the	DET
can-567	230	2	temperature	temperature	NOUN
can-567	230	3	of	of	ADP
can-567	230	4	the	the	DET
can-567	230	5	cold	cold	ADJ
can-567	230	6	end	end	NOUN
can-567	230	7	of	of	ADP
can-567	230	8	the	the	DET
can-567	230	9	nanotube	nanotube	NOUN
can-567	230	10	contacted	contact	VERB
can-567	230	11	to	to	ADP
can-567	230	12	the	the	DET
can-567	230	13	substrate	substrate	NOUN
can-567	230	14	was	be	AUX
can-567	230	15	assumed	assume	VERB
can-567	230	16	to	to	PART
can-567	230	17	be	be	AUX
can-567	230	18	t0	t0	NOUN
can-567	230	19	=	=	SYM
can-567	230	20	300	300	NUM
can-567	230	21	k.	k.	NOUN
can-567	230	22	equation	equation	NOUN
can-567	230	23	(	(	PUNCT
can-567	230	24	4	4	X
can-567	230	25	)	)	PUNCT
can-567	230	26	was	be	AUX
can-567	230	27	solved	solve	VERB
can-567	230	28	for	for	ADP
can-567	230	29	different	different	ADJ
can-567	230	30	values	value	NOUN
can-567	230	31	of	of	ADP
can-567	230	32	the	the	DET
can-567	230	33	current	current	ADJ
can-567	230	34	i	i	PROPN
can-567	230	35	,	,	PUNCT
can-567	230	36	and	and	CCONJ
can-567	230	37	thus	thus	ADV
can-567	230	38	a	a	DET
can-567	230	39	dependence	dependence	NOUN
can-567	230	40	was	be	AUX
can-567	230	41	obtained	obtain	VERB
can-567	230	42	,	,	PUNCT
can-567	230	43	where	where	SCONJ
can-567	230	44	tl	tl	PROPN
can-567	230	45	is	be	AUX
can-567	230	46	the	the	DET
can-567	230	47	temperature	temperature	NOUN
can-567	230	48	of	of	ADP
can-567	230	49	the	the	DET
can-567	230	50	emitting	emit	VERB
can-567	230	51	end	end	NOUN
can-567	230	52	,	,	PUNCT
can-567	230	53	as	as	SCONJ
can-567	230	54	is	be	AUX
can-567	230	55	shown	show	VERB
can-567	230	56	in	in	ADP
can-567	230	57	figure	figure	NOUN
can-567	230	58	7	7	NUM
can-567	230	59	.	.	PUNCT
can-567	230	60	figure	figure	VERB
can-567	230	61	7	7	NUM
can-567	230	62	.	.	PUNCT
can-567	231	1	dependence	dependence	NOUN
can-567	231	2	of	of	ADP
can-567	231	3	the	the	DET
can-567	231	4	superheating	superheate	VERB
can-567	231	5	temperature	temperature	NOUN
can-567	231	6	of	of	ADP
can-567	231	7	the	the	DET
can-567	231	8	emitting	emit	VERB
can-567	231	9	end	end	NOUN
can-567	231	10	of	of	ADP
can-567	231	11	a	a	DET
can-567	231	12	cnt	cnt	NOUN
can-567	231	13	on	on	ADP
can-567	231	14	the	the	DET
can-567	231	15	flowing	flow	VERB
can-567	231	16	current	current	NOUN
can-567	231	17	for	for	ADP
can-567	231	18	cnts	cnt	NOUN
can-567	231	19	of	of	ADP
can-567	231	20	different	different	ADJ
can-567	231	21	lengths	length	NOUN
can-567	231	22	:	:	PUNCT
can-567	231	23	1	1	NUM
can-567	231	24	—	—	SYM
can-567	231	25	0.5	0.5	NUM
can-567	231	26	μm	μm	NUM
can-567	231	27	;	;	PUNCT
can-567	231	28	2	2	NUM
can-567	231	29	—	—	PUNCT
can-567	231	30	1.0	1.0	NUM
can-567	231	31	μm	μm	NUM
can-567	231	32	;	;	PUNCT
can-567	231	33	3	3	NUM
can-567	231	34	—	—	SYM
can-567	231	35	1.5	1.5	NUM
can-567	231	36	μm	μm	NOUN
can-567	231	37	;	;	PUNCT
can-567	231	38	4	4	NUM
can-567	231	39	—	—	SYM
can-567	231	40	2.0	2.0	NUM
can-567	231	41	μm	μm	NOUN
can-567	231	42	;	;	PUNCT
can-567	231	43	5	5	NUM
can-567	231	44	—	—	SYM
can-567	231	45	3.0	3.0	NUM
can-567	231	46	μm	μm	NOUN
can-567	231	47	;	;	PUNCT
can-567	231	48	6	6	NUM
can-567	231	49	—	—	SYM
can-567	231	50	4.0	4.0	NUM
can-567	231	51	μm	μm	NOUN
can-567	231	52	.	.	PUNCT
can-567	232	1	in	in	ADP
can-567	232	2	this	this	DET
can-567	232	3	figure	figure	NOUN
can-567	232	4	,	,	PUNCT
can-567	232	5	the	the	DET
can-567	232	6	exact	exact	ADJ
can-567	232	7	solution	solution	NOUN
can-567	232	8	of	of	ADP
can-567	232	9	ed	ed	NOUN
can-567	232	10	.	.	PUNCT
can-567	233	1	(	(	PUNCT
can-567	233	2	4	4	X
can-567	233	3	)	)	PUNCT
can-567	233	4	is	be	AUX
can-567	233	5	compared	compare	VERB
can-567	233	6	with	with	ADP
can-567	233	7	the	the	DET
can-567	233	8	approximate	approximate	ADJ
can-567	233	9	analytical	analytical	ADJ
can-567	233	10	solution	solution	NOUN
can-567	233	11	obtained	obtain	VERB
can-567	233	12	under	under	ADP
can-567	233	13	the	the	DET
can-567	233	14	condition	condition	NOUN
can-567	233	15	that	that	SCONJ
can-567	233	16	there	there	PRON
can-567	233	17	are	be	VERB
can-567	233	18	no	no	DET
can-567	233	19	radiative	radiative	ADJ
can-567	233	20	cooling	cooling	NOUN
can-567	233	21	,	,	PUNCT
can-567	233	22	no	no	DET
can-567	233	23	nottingham	nottingham	PROPN
can-567	233	24	effect	effect	NOUN
can-567	233	25	,	,	PUNCT
can-567	233	26	the	the	DET
can-567	233	27	thermal	thermal	ADJ
can-567	233	28	conductivity	conductivity	NOUN
can-567	233	29	coefficient	coefficient	NOUN
can-567	233	30	and	and	CCONJ
can-567	233	31	the	the	DET
can-567	233	32	resistance	resistance	NOUN
can-567	233	33	of	of	ADP
can-567	233	34	cnts	cnts	PROPN
can-567	233	35	are	be	AUX
can-567	233	36	constant	constant	ADJ
can-567	233	37	[	[	X
can-567	233	38	21	21	NUM
can-567	233	39	]	]	PUNCT
can-567	233	40	:	:	PUNCT
can-567	233	41	l	l	NOUN
can-567	233	42	ks	ks	NOUN
can-567	233	43	ri	ri	PROPN
can-567	233	44	ttl	ttl	PROPN
can-567	233	45	2	2	NUM
can-567	233	46	2	2	NUM
can-567	233	47	0	0	NUM
can-567	233	48			NOUN
can-567	233	49	(	(	PUNCT
can-567	233	50	9	9	NUM
can-567	233	51	)	)	PUNCT
can-567	233	52	the	the	DET
can-567	233	53	results	result	NOUN
can-567	233	54	of	of	ADP
can-567	233	55	the	the	DET
can-567	233	56	calculations	calculation	NOUN
can-567	233	57	in	in	ADP
can-567	233	58	figure	figure	NOUN
can-567	233	59	7	7	NUM
can-567	233	60	show	show	VERB
can-567	233	61	that	that	SCONJ
can-567	233	62	the	the	DET
can-567	233	63	simplified	simplified	ADJ
can-567	233	64	solution	solution	NOUN
can-567	233	65	gives	give	VERB
can-567	233	66	an	an	DET
can-567	233	67	overestimate	overestimate	NOUN
can-567	233	68	value	value	NOUN
can-567	233	69	of	of	ADP
can-567	233	70	the	the	DET
can-567	233	71	superheat	superheat	ADJ
can-567	233	72	temperature	temperature	NOUN
can-567	233	73	of	of	ADP
can-567	233	74	the	the	DET
can-567	233	75	emitting	emit	VERB
can-567	233	76	end	end	NOUN
can-567	233	77	of	of	ADP
can-567	233	78	the	the	DET
can-567	233	79	nanotube	nanotube	NOUN
can-567	233	80	for	for	ADP
can-567	233	81	all	all	DET
can-567	233	82	values	value	NOUN
can-567	233	83	of	of	ADP
can-567	233	84	its	its	PRON
can-567	233	85	length	length	NOUN
can-567	233	86	.	.	PUNCT
can-567	234	1	a	a	DET
can-567	234	2	simplified	simplified	ADJ
can-567	234	3	solution	solution	NOUN
can-567	234	4	approximates	approximate	VERB
can-567	234	5	the	the	DET
can-567	234	6	exact	exact	ADJ
can-567	234	7	solution	solution	NOUN
can-567	234	8	with	with	ADP
can-567	234	9	increasing	increase	VERB
can-567	234	10	current	current	ADJ
can-567	234	11	strength	strength	NOUN
can-567	234	12	.	.	PUNCT
can-567	235	1	we	we	PRON
can-567	235	2	assume	assume	VERB
can-567	235	3	that	that	SCONJ
can-567	235	4	the	the	DET
can-567	235	5	temperature	temperature	NOUN
can-567	235	6	dependence	dependence	NOUN
can-567	235	7	of	of	ADP
can-567	235	8	the	the	DET
can-567	235	9	thermal	thermal	ADJ
can-567	235	10	conductivity	conductivity	NOUN
can-567	235	11	ed	ed	NOUN
can-567	235	12	.	.	PUNCT
can-567	236	1	(	(	PUNCT
can-567	236	2	6	6	NUM
can-567	236	3	)	)	PUNCT
can-567	236	4	is	be	AUX
can-567	236	5	compensated	compensate	VERB
can-567	236	6	by	by	ADP
can-567	236	7	additional	additional	ADJ
can-567	236	8	cooling	cooling	NOUN
can-567	236	9	due	due	ADP
can-567	236	10	to	to	ADP
can-567	236	11	the	the	DET
can-567	236	12	nottingham	nottingham	PROPN
can-567	236	13	effect	effect	NOUN
can-567	236	14	.	.	PUNCT
can-567	237	1	the	the	DET
can-567	237	2	temperature	temperature	NOUN
can-567	237	3	of	of	ADP
can-567	237	4	the	the	DET
can-567	237	5	cathode	cathode	NOUN
can-567	237	6	overheating	overheat	VERB
can-567	237	7	increases	increase	NOUN
can-567	237	8	in	in	ADP
can-567	237	9	proportion	proportion	NOUN
can-567	237	10	to	to	ADP
can-567	237	11	the	the	DET
can-567	237	12	square	square	NOUN
can-567	237	13	of	of	ADP
can-567	237	14	the	the	DET
can-567	237	15	emission	emission	NOUN
can-567	237	16	current	current	NOUN
can-567	237	17	.	.	PUNCT
can-567	238	1	the	the	DET
can-567	238	2	current	current	ADJ
can-567	238	3	strength	strength	NOUN
can-567	238	4	of	of	ADP
can-567	238	5	the	the	DET
can-567	238	6	1	1	NUM
can-567	238	7	ua	ua	NOUN
can-567	238	8	is	be	AUX
can-567	238	9	a	a	DET
can-567	238	10	critical	critical	ADJ
can-567	238	11	value	value	NOUN
can-567	238	12	in	in	ADP
can-567	238	13	our	our	PRON
can-567	238	14	case	case	NOUN
can-567	238	15	,	,	PUNCT
can-567	238	16	exceeding	exceed	VERB
can-567	238	17	which	which	PRON
can-567	238	18	results	result	VERB
can-567	238	19	in	in	ADP
can-567	238	20	the	the	DET
can-567	238	21	appearance	appearance	NOUN
can-567	238	22	of	of	ADP
can-567	238	23	thermionic	thermionic	ADJ
can-567	238	24	emission	emission	NOUN
can-567	238	25	currents	current	NOUN
can-567	238	26	and	and	CCONJ
can-567	238	27	the	the	DET
can-567	238	28	appearance	appearance	NOUN
can-567	238	29	of	of	ADP
can-567	238	30	unstable	unstable	ADJ
can-567	238	31	volt	volt	NOUN
can-567	238	32	-	-	PUNCT
can-567	238	33	ampere	ampere	NOUN
can-567	238	34	characteristics	characteristic	NOUN
can-567	238	35	.	.	PUNCT
can-567	239	1	4	4	X
can-567	239	2	.	.	NOUN
can-567	239	3	results	result	NOUN
can-567	239	4	and	and	CCONJ
can-567	239	5	discussion	discussion	VERB
can-567	239	6	the	the	DET
can-567	239	7	emission	emission	NOUN
can-567	239	8	current	current	NOUN
can-567	239	9	is	be	AUX
can-567	239	10	composed	compose	VERB
can-567	239	11	of	of	ADP
can-567	239	12	the	the	DET
can-567	239	13	field	field	NOUN
can-567	239	14	and	and	CCONJ
can-567	239	15	thermionic	thermionic	ADJ
can-567	239	16	components	component	NOUN
can-567	239	17	according	accord	VERB
can-567	239	18	the	the	DET
can-567	239	19	electrical	electrical	ADJ
can-567	239	20	circuit	circuit	NOUN
can-567	239	21	of	of	ADP
can-567	239	22	the	the	DET
can-567	239	23	current	current	ADJ
can-567	239	24	flow	flow	NOUN
can-567	239	25	is	be	AUX
can-567	239	26	shown	show	VERB
can-567	239	27	in	in	ADP
can-567	239	28	figure	figure	NOUN
can-567	239	29	2	2	NUM
can-567	239	30	.	.	PUNCT
can-567	240	1	this	this	DET
can-567	240	2	current	current	NOUN
can-567	240	3	is	be	AUX
can-567	240	4	represented	represent	VERB
can-567	240	5	by	by	ADP
can-567	240	6	curve	curve	NOUN
can-567	240	7	3	3	NUM
can-567	240	8	in	in	ADP
can-567	240	9	figure	figure	NOUN
can-567	240	10	3	3	NUM
can-567	240	11	.	.	PUNCT
can-567	240	12	field	field	NOUN
can-567	240	13	emission	emission	NOUN
can-567	240	14	current	current	NOUN
can-567	240	15	is	be	AUX
can-567	240	16	represented	represent	VERB
can-567	240	17	by	by	ADP
can-567	240	18	curve	curve	NOUN
can-567	240	19	2	2	NUM
can-567	240	20	.	.	PUNCT
can-567	241	1	it	it	PRON
can-567	241	2	is	be	AUX
can-567	241	3	obvious	obvious	ADJ
can-567	241	4	that	that	SCONJ
can-567	241	5	at	at	ADP
can-567	241	6	the	the	DET
can-567	241	7	maximum	maximum	ADJ
can-567	241	8	values	value	NOUN
can-567	241	9	of	of	ADP
can-567	241	10	the	the	DET
can-567	241	11	voltage	voltage	NOUN
can-567	241	12	(	(	PUNCT
can-567	241	13	uc	uc	PROPN
can-567	241	14	)	)	PUNCT
can-567	241	15	at	at	ADP
can-567	241	16	which	which	PRON
can-567	241	17	the	the	DET
can-567	241	18	negative	negative	ADJ
can-567	241	19	resistance	resistance	NOUN
can-567	241	20	region	region	NOUN
can-567	241	21	starts	start	VERB
can-567	241	22	,	,	PUNCT
can-567	241	23	the	the	DET
can-567	241	24	currents	current	NOUN
can-567	241	25	of	of	ADP
can-567	241	26	field	field	NOUN
can-567	241	27	-	-	PUNCT
can-567	241	28	electron	electron	NOUN
can-567	241	29	and	and	CCONJ
can-567	241	30	thermionic	thermionic	ADJ
can-567	241	31	emission	emission	NOUN
can-567	241	32	are	be	AUX
can-567	241	33	approximately	approximately	ADV
can-567	241	34	equal	equal	ADJ
can-567	241	35	.	.	PUNCT
can-567	242	1	further	further	ADJ
can-567	242	2	current	current	ADJ
can-567	242	3	growth	growth	NOUN
can-567	242	4	is	be	AUX
can-567	242	5	due	due	ADJ
can-567	242	6	to	to	ADP
can-567	242	7	the	the	DET
can-567	242	8	thermionic	thermionic	ADJ
can-567	242	9	component	component	NOUN
can-567	242	10	,	,	PUNCT
can-567	242	11	and	and	CCONJ
can-567	242	12	the	the	DET
can-567	242	13	field	field	NOUN
can-567	242	14	current	current	ADJ
can-567	242	15	decreases	decrease	NOUN
can-567	242	16	,	,	PUNCT
can-567	242	17	while	while	SCONJ
can-567	242	18	changing	change	VERB
can-567	242	19	along	along	ADV
can-567	242	20	curve	curve	NOUN
can-567	242	21	2	2	NUM
can-567	242	22	.	.	PUNCT
can-567	243	1	thus	thus	ADV
can-567	243	2	,	,	PUNCT
can-567	243	3	the	the	DET
can-567	243	4	region	region	NOUN
can-567	243	5	of	of	ADP
can-567	243	6	negative	negative	ADJ
can-567	243	7	resistance	resistance	NOUN
can-567	243	8	of	of	ADP
can-567	243	9	the	the	DET
can-567	243	10	voltage	voltage	NOUN
can-567	243	11	-	-	PUNCT
can-567	243	12	current	current	ADJ
can-567	243	13	characteristic	characteristic	NOUN
can-567	243	14	(	(	PUNCT
can-567	243	15	figure	figure	NOUN
can-567	243	16	3	3	NUM
can-567	243	17	)	)	PUNCT
can-567	243	18	is	be	AUX
can-567	243	19	due	due	ADJ
can-567	243	20	to	to	ADP
can-567	243	21	the	the	DET
can-567	243	22	fact	fact	NOUN
can-567	243	23	that	that	SCONJ
can-567	243	24	the	the	DET
can-567	243	25	current	current	NOUN
can-567	243	26	of	of	ADP
can-567	243	27	thermionic	thermionic	ADJ
can-567	243	28	emission	emission	NOUN
can-567	243	29	predominates	predominate	VERB
can-567	243	30	over	over	ADP
can-567	243	31	the	the	DET
can-567	243	32	field	field	NOUN
can-567	243	33	emission	emission	NOUN
can-567	243	34	current	current	ADJ
can-567	243	35	.	.	PUNCT
can-567	244	1	the	the	DET
can-567	244	2	end	end	NOUN
can-567	244	3	of	of	ADP
can-567	244	4	the	the	DET
can-567	244	5	nanotube	nanotube	NOUN
can-567	244	6	is	be	AUX
can-567	244	7	already	already	ADV
can-567	244	8	overheated	overheat	VERB
can-567	244	9	to	to	ADP
can-567	244	10	such	such	DET
can-567	244	11	an	an	DET
can-567	244	12	extent	extent	NOUN
can-567	244	13	that	that	SCONJ
can-567	244	14	it	it	PRON
can-567	244	15	can	can	AUX
can-567	244	16	be	be	AUX
can-567	244	17	destroyed	destroy	VERB
can-567	244	18	.	.	PUNCT
can-567	245	1	the	the	DET
can-567	245	2	voltage	voltage	NOUN
can-567	245	3	(	(	PUNCT
can-567	245	4	uc	uc	PROPN
can-567	245	5	)	)	PUNCT
can-567	245	6	and	and	CCONJ
can-567	245	7	current	current	ADJ
can-567	245	8	(	(	PUNCT
can-567	245	9	ic	ic	NUM
can-567	245	10	)	)	PUNCT
can-567	245	11	at	at	ADP
can-567	245	12	which	which	PRON
can-567	245	13	the	the	DET
can-567	245	14	negative	negative	ADJ
can-567	245	15	resistance	resistance	NOUN
can-567	245	16	region	region	NOUN
can-567	245	17	starts	start	VERB
can-567	245	18	can	can	AUX
can-567	245	19	be	be	AUX
can-567	245	20	considered	consider	VERB
can-567	245	21	as	as	ADP
can-567	245	22	critical	critical	ADJ
can-567	245	23	.	.	PUNCT
can-567	246	1	as	as	ADV
can-567	246	2	soon	soon	ADV
can-567	246	3	as	as	SCONJ
can-567	246	4	the	the	DET
can-567	246	5	total	total	ADJ
can-567	246	6	current	current	ADJ
can-567	246	7	exceeds	exceed	NOUN
can-567	246	8	this	this	DET
can-567	246	9	value	value	NOUN
can-567	246	10	,	,	PUNCT
can-567	246	11	the	the	DET
can-567	246	12	emission	emission	NOUN
can-567	246	13	becomes	become	VERB
can-567	246	14	unstable	unstable	ADJ
can-567	246	15	and	and	CCONJ
can-567	246	16	the	the	DET
can-567	246	17	degradation	degradation	NOUN
can-567	246	18	processes	process	NOUN
can-567	246	19	begin	begin	VERB
can-567	246	20	.	.	PUNCT
can-567	247	1	it	it	PRON
can-567	247	2	is	be	AUX
can-567	247	3	important	important	ADJ
can-567	247	4	to	to	PART
can-567	247	5	estimate	estimate	VERB
can-567	247	6	the	the	DET
can-567	247	7	conditions	condition	NOUN
can-567	247	8	under	under	ADP
can-567	247	9	which	which	PRON
can-567	247	10	degradation	degradation	NOUN
can-567	247	11	of	of	ADP
can-567	247	12	emission	emission	NOUN
can-567	247	13	currents	current	NOUN
can-567	247	14	is	be	AUX
can-567	247	15	possible	possible	ADJ
can-567	247	16	.	.	PUNCT
can-567	248	1	there	there	PRON
can-567	248	2	is	be	VERB
can-567	248	3	a	a	DET
can-567	248	4	conditional	conditional	ADJ
can-567	248	5	current	current	ADJ
can-567	248	6	limit	limit	NOUN
can-567	248	7	,	,	PUNCT
can-567	248	8	the	the	DET
can-567	248	9	excess	excess	NOUN
can-567	248	10	of	of	ADP
can-567	248	11	which	which	PRON
can-567	248	12	causes	cause	VERB
can-567	248	13	a	a	DET
can-567	248	14	rapid	rapid	ADJ
can-567	248	15	overheating	overheating	NOUN
can-567	248	16	of	of	ADP
can-567	248	17	the	the	DET
can-567	248	18	nanotube	nanotube	ADJ
can-567	248	19	end	end	NOUN
can-567	248	20	and	and	CCONJ
can-567	248	21	the	the	DET
can-567	248	22	degradation	degradation	NOUN
can-567	248	23	of	of	ADP
can-567	248	24	the	the	DET
can-567	248	25	emission	emission	NOUN
can-567	248	26	.	.	PUNCT
can-567	249	1	at	at	ADP
can-567	249	2	the	the	DET
can-567	249	3	boundary	boundary	NOUN
can-567	249	4	,	,	PUNCT
can-567	249	5	the	the	DET
can-567	249	6	total	total	ADJ
can-567	249	7	current	current	NOUN
can-567	249	8	is	be	AUX
can-567	249	9	equal	equal	ADJ
can-567	249	10	to	to	ADP
can-567	249	11	the	the	DET
can-567	249	12	sum	sum	NOUN
can-567	249	13	of	of	ADP
can-567	249	14	the	the	DET
can-567	249	15	currents	current	NOUN
can-567	249	16	of	of	ADP
can-567	249	17	the	the	DET
can-567	249	18	field	field	NOUN
can-567	249	19	electron	electron	NOUN
can-567	249	20	emission	emission	NOUN
can-567	249	21	and	and	CCONJ
can-567	249	22	the	the	DET
can-567	249	23	thermionic	thermionic	ADJ
can-567	249	24	emission	emission	NOUN
can-567	249	25	,	,	PUNCT
can-567	249	26	i	i	PRON
can-567	249	27	=	=	NOUN
can-567	249	28	ite+ife	ite+ife	NOUN
can-567	249	29	.	.	PUNCT
can-567	250	1	subsequently	subsequently	ADV
can-567	250	2	thermionic	thermionic	ADJ
can-567	250	3	current	current	ADJ
can-567	250	4	predominates	predominate	VERB
can-567	250	5	.	.	PUNCT
can-567	251	1	therefore	therefore	ADV
can-567	251	2	,	,	PUNCT
can-567	251	3	as	as	ADP
can-567	251	4	a	a	DET
can-567	251	5	condition	condition	NOUN
can-567	251	6	for	for	ADP
can-567	251	7	changing	change	VERB
can-567	251	8	the	the	DET
can-567	251	9	emission	emission	NOUN
can-567	251	10	mechanism	mechanism	NOUN
can-567	251	11	,	,	PUNCT
can-567	251	12	one	one	PRON
can-567	251	13	can	can	AUX
can-567	251	14	choose	choose	VERB
can-567	251	15	the	the	DET
can-567	251	16	equality	equality	NOUN
can-567	251	17	of	of	ADP
can-567	251	18	currents	current	NOUN
can-567	251	19	)	)	PUNCT
can-567	251	20	(	(	PUNCT
can-567	251	21	0	0	NUM
can-567	251	22	ifttl	ifttl	NOUN
can-567	251	23			NOUN
can-567	251	24	57	57	NUM
can-567	251	25	ite	ite	NOUN
can-567	251	26	=	=	PROPN
can-567	251	27	ife	ife	PROPN
can-567	251	28	or	or	CCONJ
can-567	251	29	ite	ite	PROPN
can-567	251	30	(	(	PUNCT
can-567	251	31	t	t	PROPN
can-567	251	32	)	)	PUNCT
can-567	251	33	=	=	SYM
can-567	251	34	i/2	i/2	PROPN
can-567	251	35	.	.	PUNCT
can-567	252	1	this	this	DET
can-567	252	2	condition	condition	NOUN
can-567	252	3	allows	allow	VERB
can-567	252	4	us	we	PRON
can-567	252	5	to	to	PART
can-567	252	6	estimate	estimate	VERB
can-567	252	7	the	the	DET
can-567	252	8	geometric	geometric	ADJ
can-567	252	9	dimensions	dimension	NOUN
can-567	252	10	of	of	ADP
can-567	252	11	the	the	DET
can-567	252	12	carbon	carbon	NOUN
can-567	252	13	nanotubes	nanotube	NOUN
can-567	252	14	of	of	ADP
can-567	252	15	the	the	DET
can-567	252	16	cathode	cathode	NOUN
can-567	252	17	at	at	ADP
can-567	252	18	a	a	DET
can-567	252	19	fixed	fix	VERB
can-567	252	20	value	value	NOUN
can-567	252	21	of	of	ADP
can-567	252	22	the	the	DET
can-567	252	23	flowing	flow	VERB
can-567	252	24	current	current	NOUN
can-567	252	25	at	at	ADP
can-567	252	26	which	which	PRON
can-567	252	27	their	their	PRON
can-567	252	28	heating	heating	NOUN
can-567	252	29	begins	begin	VERB
can-567	252	30	.	.	PUNCT
can-567	253	1	the	the	DET
can-567	253	2	temperature	temperature	NOUN
can-567	253	3	of	of	ADP
can-567	253	4	cnt	cnt	PROPN
can-567	253	5	end	end	NOUN
can-567	253	6	warming	warm	VERB
can-567	253	7	up	up	ADP
can-567	253	8	is	be	AUX
can-567	253	9	determined	determine	VERB
can-567	253	10	by	by	ADP
can-567	253	11	the	the	DET
can-567	253	12	current	current	NOUN
can-567	253	13	of	of	ADP
can-567	253	14	thermionic	thermionic	ADJ
can-567	253	15	emission	emission	NOUN
can-567	253	16	(	(	PUNCT
can-567	253	17	ite	ite	PROPN
can-567	253	18	)	)	PUNCT
can-567	253	19	and	and	CCONJ
can-567	253	20	the	the	DET
can-567	253	21	geometric	geometric	ADJ
can-567	253	22	dimensions	dimension	NOUN
can-567	253	23	of	of	ADP
can-567	253	24	the	the	DET
can-567	253	25	nanotube	nanotube	NOUN
can-567	253	26	,	,	PUNCT
can-567	253	27	which	which	PRON
can-567	253	28	ultimately	ultimately	ADV
can-567	253	29	determine	determine	VERB
can-567	253	30	the	the	DET
can-567	253	31	magnitude	magnitude	NOUN
can-567	253	32	of	of	ADP
can-567	253	33	its	its	PRON
can-567	253	34	electrical	electrical	ADJ
can-567	253	35	resistance	resistance	NOUN
can-567	253	36	ed	ed	NOUN
can-567	253	37	.	.	PUNCT
can-567	254	1	(	(	PUNCT
can-567	254	2	9	9	NUM
can-567	254	3	)	)	PUNCT
can-567	254	4	.	.	PUNCT
can-567	255	1	for	for	ADP
can-567	255	2	rough	rough	ADJ
can-567	255	3	estimation	estimation	NOUN
can-567	255	4	of	of	ADP
can-567	255	5	the	the	DET
can-567	255	6	overheating	overheating	ADJ
can-567	255	7	temperature	temperature	NOUN
can-567	255	8	,	,	PUNCT
can-567	255	9	it	it	PRON
can-567	255	10	is	be	AUX
can-567	255	11	enough	enough	ADJ
can-567	255	12	to	to	PART
can-567	255	13	restrict	restrict	VERB
can-567	255	14	ourselves	ourselves	PRON
can-567	255	15	to	to	ADP
can-567	255	16	ed	ed	NOUN
can-567	255	17	.	.	PUNCT
can-567	256	1	(	(	PUNCT
can-567	256	2	9	9	NUM
can-567	256	3	)	)	PUNCT
can-567	256	4	.	.	PUNCT
can-567	257	1	the	the	DET
can-567	257	2	resistance	resistance	NOUN
can-567	257	3	of	of	ADP
can-567	257	4	a	a	DET
can-567	257	5	nanotube	nanotube	NOUN
can-567	257	6	is	be	AUX
can-567	257	7	estimated	estimate	VERB
can-567	257	8	by	by	ADP
can-567	257	9	the	the	DET
can-567	257	10	formula	formula	NOUN
can-567	257	11	:	:	PUNCT
can-567	257	12	s	s	PART
can-567	257	13	l	l	NOUN
can-567	257	14	r	r	NOUN
can-567	257	15			NOUN
can-567	257	16	,	,	PUNCT
can-567	257	17	0	0	NUM
can-567	257	18	0	0	NUM
can-567	257	19	0	0	NUM
can-567	258	1	l	l	NOUN
can-567	258	2	s	s	PART
can-567	258	3	r	r	NOUN
can-567	258	4	(	(	PUNCT
can-567	258	5	10	10	NUM
can-567	258	6	)	)	PUNCT
can-567	258	7	where	where	SCONJ
can-567	258	8	:	:	PUNCT
can-567	258	9	—	—	PUNCT
can-567	258	10	cnt	cnt	PROPN
can-567	258	11	cross	cross	ADJ
can-567	258	12	-	-	ADJ
can-567	258	13	section	section	ADJ
can-567	258	14	area	area	NOUN
can-567	258	15	.	.	PUNCT
can-567	259	1	the	the	DET
can-567	259	2	values	value	NOUN
can-567	259	3	of	of	ADP
can-567	259	4	these	these	DET
can-567	259	5	parameters	parameter	NOUN
can-567	259	6	were	be	AUX
can-567	259	7	calculated	calculate	VERB
can-567	259	8	from	from	ADP
can-567	259	9	the	the	DET
can-567	259	10	experiments	experiment	NOUN
can-567	259	11	r0	r0	NOUN
can-567	259	12	=	=	PROPN
can-567	259	13	10	10	NUM
can-567	259	14	м	м	NOUN
can-567	259	15	;	;	PUNCT
can-567	260	1	s0	s0	PROPN
can-567	260	2	=	=	SYM
can-567	260	3	5.510	5.510	PROPN
can-567	260	4	2	2	NUM
can-567	260	5	nm	nm	NOUN
can-567	260	6	2	2	NUM
can-567	260	7	;	;	PUNCT
can-567	260	8	l0	l0	NOUN
can-567	260	9	=	=	NOUN
can-567	260	10	2.36	2.36	NUM
can-567	260	11	μm	μm	NUM
can-567	260	12	;	;	PUNCT
can-567	260	13			ADP
can-567	260	14	=	=	PUNCT
can-567	260	15	2.3310	2.3310	NUM
can-567	260	16	-3	-3	PUNCT
can-567	260	17	·m	·m	PROPN
can-567	260	18	.	.	PUNCT
can-567	261	1	the	the	DET
can-567	261	2	expression	expression	NOUN
can-567	261	3	for	for	ADP
can-567	261	4	the	the	DET
can-567	261	5	thermionic	thermionic	ADJ
can-567	261	6	emission	emission	NOUN
can-567	261	7	current	current	NOUN
can-567	261	8	is	be	AUX
can-567	261	9	:	:	PUNCT
can-567	261	10			ADJ
can-567	261	11			PROPN
can-567	261	12			PROPN
can-567	261	13			X
can-567	261	14			NOUN
can-567	261	15			NOUN
can-567	261	16			VERB
can-567	261	17			PROPN
can-567	261	18			PROPN
can-567	261	19			PROPN
can-567	261	20	tk	tk	PROPN
can-567	261	21	ee	ee	INTJ
can-567	261	22	kt	kt	PROPN
can-567	261	23	h	h	PROPN
can-567	261	24	m	m	PROPN
can-567	261	25	si	si	PROPN
can-567	261	26	b	b	PROPN
can-567	261	27	n	n	PRON
can-567	261	28	cntte	cntte	NOUN
can-567	261	29	)	)	PUNCT
can-567	261	30	4	4	NUM
can-567	261	31	(	(	PUNCT
can-567	261	32	exp	exp	NOUN
can-567	261	33	)	)	PUNCT
can-567	261	34	(	(	PUNCT
can-567	261	35	4	4	NUM
can-567	261	36	0	0	NUM
can-567	261	37	3	3	NUM
can-567	261	38	2	2	NUM
can-567	261	39	3	3	NUM
can-567	261	40	*	*	PUNCT
can-567	261	41			PROPN
can-567	261	42	(	(	PUNCT
can-567	261	43	11	11	NUM
can-567	261	44	)	)	PUNCT
can-567	261	45	where	where	SCONJ
can-567	261	46	:	:	PUNCT
can-567	261	47	is	be	AUX
can-567	261	48	the	the	DET
can-567	261	49	area	area	NOUN
can-567	261	50	of	of	ADP
can-567	261	51	cnt	cnt	PROPN
can-567	261	52	emitting	emit	VERB
can-567	261	53	surface	surface	NOUN
can-567	261	54	(	(	PUNCT
can-567	261	55	hemisphere	hemisphere	ADJ
can-567	261	56	surface	surface	NOUN
can-567	261	57	area	area	NOUN
can-567	261	58	)	)	PUNCT
can-567	261	59	;	;	PUNCT
can-567	261	60	is	be	AUX
can-567	261	61	effective	effective	ADJ
can-567	261	62	mass	mass	NOUN
can-567	261	63	of	of	ADP
can-567	261	64	electron	electron	NOUN
can-567	261	65	in	in	ADP
can-567	261	66	cnt	cnt	PROPN
can-567	261	67	;	;	PUNCT
can-567	261	68	kb	kb	PROPN
can-567	261	69	is	be	AUX
can-567	261	70	boltzmann	boltzmann	PROPN
can-567	261	71	constant	constant	PROPN
can-567	261	72	;	;	PUNCT
can-567	261	73	t	t	PROPN
can-567	261	74	is	be	AUX
can-567	261	75	absolute	absolute	ADJ
can-567	261	76	temperature	temperature	NOUN
can-567	261	77	;	;	PUNCT
can-567	261	78	0	0	PROPN
can-567	261	79	is	be	AUX
can-567	261	80	electrical	electrical	ADJ
can-567	261	81	constant	constant	ADJ
can-567	261	82	.	.	PUNCT
can-567	262	1	the	the	DET
can-567	262	2	conditional	conditional	ADJ
can-567	262	3	boundary	boundary	NOUN
can-567	262	4	of	of	ADP
can-567	262	5	the	the	DET
can-567	262	6	transformation	transformation	NOUN
can-567	262	7	of	of	ADP
can-567	262	8	a	a	DET
can-567	262	9	stable	stable	ADJ
can-567	262	10	process	process	NOUN
can-567	262	11	to	to	ADP
can-567	262	12	an	an	DET
can-567	262	13	unstable	unstable	ADJ
can-567	262	14	process	process	NOUN
can-567	262	15	is	be	AUX
can-567	262	16	calculated	calculate	VERB
can-567	262	17	from	from	ADP
can-567	262	18	formulas	formula	NOUN
can-567	262	19	(	(	PUNCT
can-567	262	20	10	10	NUM
can-567	262	21	)	)	PUNCT
can-567	262	22	and	and	CCONJ
can-567	262	23	(	(	PUNCT
can-567	262	24	11	11	NUM
can-567	262	25	)	)	PUNCT
can-567	262	26	.	.	PUNCT
can-567	263	1	if	if	SCONJ
can-567	263	2	we	we	PRON
can-567	263	3	neglect	neglect	VERB
can-567	263	4	the	the	DET
can-567	263	5	decrease	decrease	NOUN
can-567	263	6	in	in	ADP
can-567	263	7	the	the	DET
can-567	263	8	height	height	NOUN
can-567	263	9	of	of	ADP
can-567	263	10	the	the	DET
can-567	263	11	barrier	barrier	NOUN
can-567	263	12	in	in	ADP
can-567	263	13	the	the	DET
can-567	263	14	formula	formula	NOUN
can-567	263	15	(	(	PUNCT
can-567	263	16	11	11	NUM
can-567	263	17	)	)	PUNCT
can-567	263	18	by	by	ADP
can-567	263	19	the	the	DET
can-567	263	20	electric	electric	ADJ
can-567	263	21	field	field	NOUN
can-567	263	22	,	,	PUNCT
can-567	263	23	then	then	ADV
can-567	263	24	the	the	DET
can-567	263	25	condition	condition	NOUN
can-567	263	26	ite	ite	VERB
can-567	263	27	(	(	PUNCT
can-567	263	28	t)=i/2	t)=i/2	PROPN
can-567	263	29	will	will	AUX
can-567	263	30	be	be	AUX
can-567	263	31	written	write	VERB
can-567	263	32	in	in	ADP
can-567	263	33	the	the	DET
can-567	263	34	formula	formula	NOUN
can-567	263	35	:	:	PUNCT
can-567	263	36			NOUN
can-567	263	37			PUNCT
can-567	263	38			PROPN
can-567	263	39			PROPN
can-567	263	40			PRON
can-567	263	41			NOUN
can-567	263	42			VERB
can-567	263	43			PROPN
can-567	263	44			NOUN
can-567	263	45	)	)	PUNCT
can-567	263	46	(	(	PUNCT
can-567	263	47	exp	exp	NOUN
can-567	263	48	)	)	PUNCT
can-567	263	49	(	(	PUNCT
can-567	263	50	2	2	NUM
can-567	263	51	1	1	NUM
can-567	263	52	2	2	NUM
can-567	263	53	ltk	ltk	NOUN
can-567	263	54	ltasi	ltasi	NOUN
can-567	263	55	b	b	PROPN
can-567	263	56	cnt	cnt	PROPN
can-567	263	57			PROPN
can-567	263	58	(	(	PUNCT
can-567	263	59	12	12	NUM
can-567	263	60	)	)	PUNCT
can-567	263	61	substituting	substitute	VERB
can-567	263	62	ed	ed	NOUN
can-567	263	63	.	.	PUNCT
can-567	264	1	(	(	PUNCT
can-567	264	2	9	9	NUM
can-567	264	3	)	)	PUNCT
can-567	264	4	into	into	ADP
can-567	264	5	ed	ed	NOUN
can-567	264	6	.	.	PUNCT
can-567	265	1	(	(	PUNCT
can-567	265	2	12	12	NUM
can-567	265	3	)	)	PUNCT
can-567	265	4	,	,	PUNCT
can-567	265	5	we	we	PRON
can-567	265	6	obtain	obtain	VERB
can-567	265	7	:	:	PUNCT
can-567	266	1			PROPN
can-567	266	2			PROPN
can-567	266	3			PROPN
can-567	266	4			PROPN
can-567	266	5			PROPN
can-567	266	6			X
can-567	266	7			NOUN
can-567	266	8			NOUN
can-567	266	9			NOUN
can-567	266	10			NOUN
can-567	266	11			NOUN
can-567	266	12			PROPN
can-567	266	13			NOUN
can-567	266	14			NOUN
can-567	266	15			PROPN
can-567	266	16			PROPN
can-567	266	17			PROPN
can-567	266	18			NOUN
can-567	266	19			VERB
can-567	266	20			NOUN
can-567	266	21			NOUN
can-567	266	22			PROPN
can-567	266	23			PROPN
can-567	266	24			PROPN
can-567	266	25			NOUN
can-567	266	26			ADJ
can-567	266	27	2	2	NUM
can-567	266	28	22	22	NUM
can-567	266	29	0	0	NUM
can-567	266	30	2	2	NUM
can-567	266	31	2	2	NUM
can-567	266	32	22	22	NUM
can-567	266	33	0	0	NUM
can-567	266	34	2	2	NUM
can-567	266	35	exp	exp	NOUN
can-567	266	36	2	2	NUM
can-567	266	37	2	2	NUM
can-567	266	38	ks	ks	NOUN
can-567	266	39	li	li	PROPN
can-567	266	40	tk	tk	PROPN
can-567	267	1	ks	ks	PROPN
can-567	267	2	li	li	PROPN
can-567	268	1	ta	ta	PROPN
can-567	268	2	s	s	PROPN
can-567	268	3	i	i	PROPN
can-567	268	4	b	b	PROPN
can-567	268	5	cnt	cnt	PROPN
can-567	268	6			PROPN
can-567	268	7			X
can-567	268	8	(	(	PUNCT
can-567	268	9	13	13	NUM
can-567	268	10	)	)	PUNCT
can-567	268	11	for	for	ADP
can-567	268	12	the	the	DET
can-567	268	13	case	case	NOUN
can-567	268	14	with	with	ADP
can-567	268	15	given	give	VERB
can-567	268	16	cnt	cnt	PROPN
can-567	268	17	radius	radius	PROPN
can-567	268	18	r	r	NOUN
can-567	268	19	,	,	PUNCT
can-567	268	20	formula	formula	NOUN
can-567	268	21	(	(	PUNCT
can-567	268	22	13	13	NUM
can-567	268	23	)	)	PUNCT
can-567	268	24	allows	allow	VERB
can-567	268	25	us	we	PRON
can-567	268	26	to	to	PART
can-567	268	27	calculate	calculate	VERB
can-567	268	28	the	the	DET
can-567	268	29	cross	cross	ADJ
can-567	268	30	-	-	ADJ
can-567	268	31	sectional	sectional	ADJ
can-567	268	32	area	area	NOUN
can-567	268	33	s	s	PART
can-567	268	34	and	and	CCONJ
can-567	268	35	the	the	DET
can-567	268	36	length	length	NOUN
can-567	268	37	l	l	PROPN
can-567	268	38	,	,	PUNCT
can-567	268	39	which	which	PRON
can-567	268	40	correspond	correspond	VERB
can-567	268	41	to	to	ADP
can-567	268	42	the	the	DET
can-567	268	43	beginning	beginning	NOUN
can-567	268	44	of	of	ADP
can-567	268	45	the	the	DET
can-567	268	46	appearance	appearance	NOUN
can-567	268	47	of	of	ADP
can-567	268	48	the	the	DET
can-567	268	49	thermionic	thermionic	ADJ
can-567	268	50	emission	emission	NOUN
can-567	268	51	current	current	NOUN
can-567	268	52	(	(	PUNCT
can-567	268	53	ite	ite	PROPN
can-567	268	54	)	)	PUNCT
can-567	268	55	for	for	ADP
can-567	268	56	a	a	DET
can-567	268	57	given	give	VERB
can-567	268	58	value	value	NOUN
can-567	268	59	of	of	ADP
can-567	268	60	the	the	DET
can-567	268	61	total	total	ADJ
can-567	268	62	current	current	NOUN
can-567	268	63	i	i	PRON
can-567	268	64	,	,	PUNCT
can-567	268	65	as	as	SCONJ
can-567	268	66	is	be	AUX
can-567	268	67	shown	show	VERB
can-567	268	68	in	in	ADP
can-567	268	69	figure	figure	NOUN
can-567	268	70	8	8	NUM
can-567	269	1	.	.	PUNCT
can-567	269	2	figure	figure	NOUN
can-567	269	3	8	8	NUM
can-567	269	4	.	.	PUNCT
can-567	270	1	dependencies	dependency	NOUN
can-567	270	2	for	for	ADP
can-567	270	3	current	current	ADJ
can-567	270	4	values	value	NOUN
can-567	271	1	i	i	PRON
can-567	271	2	:	:	PUNCT
can-567	271	3	1	1	X
can-567	271	4	—	—	SYM
can-567	271	5	2	2	NUM
can-567	271	6	μa	μa	NOUN
can-567	271	7	;	;	PUNCT
can-567	271	8	2	2	X
can-567	271	9	—	—	SYM
can-567	271	10	3	3	NUM
can-567	271	11	μa	μa	NOUN
can-567	271	12	;	;	PUNCT
can-567	271	13	3	3	NUM
can-567	271	14	—	—	SYM
can-567	271	15	4	4	NUM
can-567	271	16	μa	μa	NOUN
can-567	271	17	;	;	PUNCT
can-567	271	18	4	4	NUM
can-567	271	19	—	—	SYM
can-567	271	20	5	5	NUM
can-567	271	21	μa	μa	NOUN
can-567	271	22	;	;	PUNCT
can-567	271	23	5	5	NUM
can-567	271	24	—	—	PUNCT
can-567	271	25	6	6	NUM
can-567	271	26	μa	μa	NOUN
can-567	271	27	;	;	PUNCT
can-567	271	28	6	6	NUM
can-567	271	29	—	—	SYM
can-567	271	30	7	7	NUM
can-567	271	31	μa	μa	NOUN
can-567	271	32	.	.	PUNCT
can-567	272	1	this	this	DET
can-567	272	2	figure	figure	NOUN
can-567	272	3	represents	represent	VERB
can-567	272	4	several	several	ADJ
can-567	272	5	regions	region	NOUN
can-567	272	6	in	in	ADP
can-567	272	7	the	the	DET
can-567	272	8	space	space	NOUN
can-567	272	9	of	of	ADP
can-567	272	10	length	length	NOUN
can-567	272	11	—	—	PUNCT
can-567	272	12	cnt	cnt	PROPN
can-567	272	13	area	area	NOUN
can-567	272	14	.	.	PUNCT
can-567	273	1	this	this	DET
can-567	273	2	space	space	NOUN
can-567	273	3	is	be	AUX
can-567	273	4	divided	divide	VERB
can-567	273	5	into	into	ADP
can-567	273	6	regions	region	NOUN
can-567	273	7	by	by	ADP
can-567	273	8	the	the	DET
can-567	273	9	curves	curve	NOUN
can-567	273	10	,	,	PUNCT
can-567	273	11	which	which	PRON
can-567	273	12	are	be	AUX
can-567	273	13	calculated	calculate	VERB
can-567	273	14	for	for	ADP
can-567	273	15	certain	certain	ADJ
can-567	273	16	currents	current	NOUN
can-567	273	17	.	.	PUNCT
can-567	274	1	these	these	DET
can-567	274	2	curves	curve	NOUN
can-567	274	3	represent	represent	VERB
can-567	274	4	the	the	DET
can-567	274	5	boundary	boundary	ADJ
can-567	274	6	behind	behind	ADP
can-567	274	7	which	which	PRON
can-567	274	8	the	the	DET
can-567	274	9	regime	regime	NOUN
can-567	274	10	of	of	ADP
can-567	274	11	thermionic	thermionic	ADJ
can-567	274	12	emission	emission	NOUN
can-567	274	13	and	and	CCONJ
can-567	274	14	degradation	degradation	NOUN
can-567	274	15	of	of	ADP
can-567	274	16	cnts	cnts	PROPN
can-567	274	17	occurs	occur	VERB
can-567	274	18	.	.	PUNCT
can-567	275	1	for	for	ADP
can-567	275	2	each	each	DET
can-567	275	3	curve	curve	NOUN
can-567	275	4	,	,	PUNCT
can-567	275	5	the	the	DET
can-567	275	6	following	follow	VERB
can-567	275	7	statement	statement	NOUN
can-567	275	8	is	be	AUX
can-567	275	9	true	true	ADJ
can-567	275	10	:	:	PUNCT
can-567	275	11	if	if	SCONJ
can-567	275	12	the	the	DET
can-567	275	13	length	length	NOUN
can-567	275	14	of	of	ADP
can-567	275	15	the	the	DET
can-567	275	16	nanotube	nanotube	NOUN
can-567	275	17	is	be	AUX
can-567	275	18	larger	large	ADJ
can-567	275	19	and	and	CCONJ
can-567	275	20	the	the	DET
can-567	275	21	area	area	NOUN
can-567	275	22	is	be	AUX
can-567	275	23	smaller	small	ADJ
can-567	275	24	,	,	PUNCT
can-567	275	25	then	then	ADV
can-567	275	26	we	we	PRON
can-567	275	27	cross	cross	VERB
can-567	275	28	the	the	DET
can-567	275	29	boundary	boundary	NOUN
can-567	275	30	and	and	CCONJ
can-567	275	31	fall	fall	VERB
can-567	275	32	into	into	ADP
can-567	275	33	the	the	DET
can-567	275	34	degradation	degradation	NOUN
can-567	275	35	region	region	NOUN
can-567	275	36	.	.	PUNCT
can-567	276	1	with	with	ADP
can-567	276	2	inverse	inverse	NOUN
can-567	276	3	relations	relation	NOUN
can-567	276	4	between	between	ADP
can-567	276	5	the	the	DET
can-567	276	6	parameters	parameter	NOUN
can-567	276	7	,	,	PUNCT
can-567	276	8	namely	namely	ADV
can-567	276	9	,	,	PUNCT
can-567	276	10	the	the	DET
can-567	276	11	length	length	NOUN
can-567	276	12	is	be	AUX
can-567	276	13	less	less	ADJ
can-567	276	14	than	than	ADP
can-567	276	15	the	the	DET
can-567	276	16	boundary	boundary	ADJ
can-567	276	17	one	one	NOUN
can-567	276	18	,	,	PUNCT
can-567	276	19	and	and	CCONJ
can-567	276	20	the	the	DET
can-567	276	21	area	area	NOUN
can-567	276	22	is	be	AUX
can-567	276	23	larger	large	ADJ
can-567	276	24	,	,	PUNCT
can-567	276	25	and	and	CCONJ
can-567	276	26	then	then	ADV
can-567	276	27	we	we	PRON
can-567	276	28	fall	fall	VERB
can-567	276	29	into	into	ADP
can-567	276	30	the	the	DET
can-567	276	31	region	region	NOUN
can-567	276	32	of	of	ADP
can-567	276	33	stability	stability	NOUN
can-567	276	34	of	of	ADP
can-567	276	35	the	the	DET
can-567	276	36	emission	emission	NOUN
can-567	276	37	.	.	PUNCT
can-567	277	1	5	5	X
can-567	277	2	.	.	X
can-567	277	3	summary	summary	NOUN
can-567	277	4	and	and	CCONJ
can-567	277	5	conclusions	conclusion	VERB
can-567	277	6	the	the	DET
can-567	277	7	analysis	analysis	NOUN
can-567	277	8	of	of	ADP
can-567	277	9	emission	emission	NOUN
can-567	277	10	processes	process	NOUN
can-567	277	11	with	with	ADP
can-567	277	12	a	a	DET
can-567	277	13	single	single	ADJ
can-567	277	14	nanotube	nanotube	NOUN
can-567	277	15	showed	show	VERB
can-567	277	16	that	that	SCONJ
can-567	277	17	when	when	SCONJ
can-567	277	18	the	the	DET
can-567	277	19	current	current	ADJ
can-567	277	20	density	density	NOUN
can-567	277	21	increases	increase	NOUN
can-567	277	22	,	,	PUNCT
can-567	277	23	the	the	DET
can-567	277	24	end	end	NOUN
can-567	277	25	that	that	PRON
can-567	277	26	emits	emit	VERB
can-567	277	27	electrons	electron	NOUN
can-567	277	28	is	be	AUX
can-567	277	29	heated	heat	VERB
can-567	277	30	.	.	PUNCT
can-567	278	1	in	in	ADP
can-567	278	2	this	this	DET
can-567	278	3	case	case	NOUN
can-567	278	4	,	,	PUNCT
can-567	278	5	along	along	ADP
can-567	278	6	with	with	ADP
can-567	278	7	the	the	DET
can-567	278	8	field	field	NOUN
can-567	278	9	emission	emission	NOUN
can-567	278	10	current	current	NOUN
can-567	278	11	,	,	PUNCT
can-567	278	12	a	a	DET
can-567	278	13	thermionic	thermionic	ADJ
can-567	278	14	emission	emission	NOUN
can-567	278	15	current	current	NOUN
can-567	278	16	appears	appear	VERB
can-567	278	17	.	.	PUNCT
can-567	279	1	the	the	DET
can-567	279	2	growth	growth	NOUN
can-567	279	3	of	of	ADP
can-567	279	4	the	the	DET
can-567	279	5	total	total	ADJ
can-567	279	6	current	current	ADJ
can-567	279	7	causes	cause	NOUN
can-567	279	8	overheating	overheat	VERB
can-567	279	9	of	of	ADP
can-567	279	10	the	the	DET
can-567	279	11	end	end	NOUN
can-567	279	12	of	of	ADP
can-567	279	13	the	the	DET
can-567	279	14	nanotube	nanotube	NOUN
can-567	279	15	.	.	PUNCT
can-567	280	1	this	this	DET
can-567	280	2	current	current	NOUN
can-567	280	3	is	be	AUX
can-567	280	4	almost	almost	ADV
can-567	280	5	completely	completely	ADV
can-567	280	6	associated	associate	VERB
can-567	280	7	with	with	ADP
can-567	280	8	the	the	DET
can-567	280	9	phenomenon	phenomenon	NOUN
can-567	280	10	of	of	ADP
can-567	280	11	thermionic	thermionic	ADJ
can-567	280	12	emission	emission	NOUN
can-567	280	13	.	.	PUNCT
can-567	281	1	at	at	ADP
can-567	281	2	the	the	DET
can-567	281	3	same	same	ADJ
can-567	281	4	time	time	NOUN
can-567	281	5	,	,	PUNCT
can-567	281	6	the	the	DET
can-567	281	7	emission	emission	NOUN
can-567	281	8	process	process	NOUN
can-567	281	9	be22	be22	PROPN
can-567	281	10	rscnt	rscnt	NOUN
can-567	281	11			VERB
can-567	281	12	mmn	mmn	PROPN
can-567	281	13	3.0	3.0	NUM
can-567	281	14	*	*	NOUN
can-567	281	15			NUM
can-567	281	16	)	)	PUNCT
can-567	281	17	(	(	PUNCT
can-567	281	18	2	2	NUM
can-567	281	19	0	0	NUM
can-567	281	20	2	2	NUM
can-567	281	21	rrs	rrs	PROPN
can-567	281	22			PROPN
can-567	281	23			PROPN
can-567	281	24	58	58	NUM
can-567	281	25	comes	come	VERB
can-567	281	26	unstable	unstable	ADJ
can-567	281	27	.	.	PUNCT
can-567	282	1	so	so	ADV
can-567	282	2	the	the	DET
can-567	282	3	temperature	temperature	NOUN
can-567	282	4	of	of	ADP
can-567	282	5	overheating	overheat	VERB
can-567	282	6	can	can	AUX
can-567	282	7	exceed	exceed	VERB
can-567	282	8	1000	1000	NUM
can-567	282	9	°	°	NUM
can-567	282	10	с	с	NOUN
can-567	282	11	,	,	PUNCT
can-567	282	12	and	and	CCONJ
can-567	282	13	then	then	ADV
can-567	282	14	the	the	DET
can-567	282	15	nanotube	nanotube	NOUN
can-567	282	16	begins	begin	VERB
can-567	282	17	to	to	PART
can-567	282	18	break	break	VERB
can-567	282	19	down	down	ADP
can-567	282	20	.	.	PUNCT
can-567	283	1	to	to	PART
can-567	283	2	analyze	analyze	VERB
can-567	283	3	these	these	DET
can-567	283	4	processes	process	NOUN
can-567	283	5	,	,	PUNCT
can-567	283	6	within	within	ADP
can-567	283	7	the	the	DET
can-567	283	8	framework	framework	NOUN
can-567	283	9	of	of	ADP
can-567	283	10	this	this	DET
can-567	283	11	work	work	NOUN
can-567	283	12	,	,	PUNCT
can-567	283	13	an	an	DET
can-567	283	14	algorithm	algorithm	NOUN
can-567	283	15	has	have	AUX
can-567	283	16	been	be	AUX
can-567	283	17	developed	develop	VERB
can-567	283	18	that	that	PRON
can-567	283	19	relies	rely	VERB
can-567	283	20	on	on	ADP
can-567	283	21	numerical	numerical	ADJ
can-567	283	22	calculations	calculation	NOUN
can-567	283	23	of	of	ADP
can-567	283	24	the	the	DET
can-567	283	25	field	field	NOUN
can-567	283	26	emission	emission	NOUN
can-567	283	27	current	current	NOUN
can-567	283	28	and	and	CCONJ
can-567	283	29	the	the	DET
can-567	283	30	overheat	overheat	NOUN
can-567	283	31	temperature	temperature	NOUN
can-567	283	32	.	.	PUNCT
can-567	284	1	it	it	PRON
can-567	284	2	is	be	AUX
can-567	284	3	shown	show	VERB
can-567	284	4	that	that	SCONJ
can-567	284	5	when	when	SCONJ
can-567	284	6	there	there	PRON
can-567	284	7	is	be	VERB
can-567	284	8	overheating	overheating	ADJ
can-567	284	9	,	,	PUNCT
can-567	284	10	a	a	DET
can-567	284	11	negative	negative	ADJ
can-567	284	12	resistance	resistance	NOUN
can-567	284	13	region	region	NOUN
can-567	284	14	occurs	occur	VERB
can-567	284	15	.	.	PUNCT
can-567	285	1	at	at	ADP
can-567	285	2	this	this	DET
can-567	285	3	moment	moment	NOUN
can-567	285	4	,	,	PUNCT
can-567	285	5	the	the	DET
can-567	285	6	thermionic	thermionic	ADJ
can-567	285	7	current	current	NOUN
can-567	285	8	begins	begin	VERB
can-567	285	9	to	to	PART
can-567	285	10	predominate	predominate	VERB
can-567	285	11	.	.	PUNCT
can-567	286	1	the	the	DET
can-567	286	2	correlation	correlation	NOUN
can-567	286	3	between	between	ADP
can-567	286	4	the	the	DET
can-567	286	5	current	current	ADJ
can-567	286	6	density	density	NOUN
can-567	286	7	,	,	PUNCT
can-567	286	8	length	length	NOUN
can-567	286	9	and	and	CCONJ
can-567	286	10	cross	cross	VERB
can-567	286	11	sectional	sectional	ADJ
can-567	286	12	area	area	NOUN
can-567	286	13	of	of	ADP
can-567	286	14	the	the	DET
can-567	286	15	nanotube	nanotube	NOUN
can-567	286	16	was	be	AUX
can-567	286	17	calculated	calculate	VERB
can-567	286	18	,	,	PUNCT
can-567	286	19	whi	whi	PROPN
can-567	286	20	ch	ch	NOUN
can-567	286	21	allows	allow	VERB
can-567	286	22	estimating	estimate	VERB
can-567	286	23	the	the	DET
can-567	286	24	regions	region	NOUN
can-567	286	25	in	in	ADP
can-567	286	26	which	which	PRON
can-567	286	27	cathode	cathode	NOUN
can-567	286	28	degradation	degradation	NOUN
can-567	286	29	can	can	AUX
can-567	286	30	progress	progress	VERB
can-567	286	31	and	and	CCONJ
can-567	286	32	the	the	DET
can-567	286	33	emission	emission	NOUN
can-567	286	34	becomes	become	VERB
can-567	286	35	unstable	unstable	ADJ
can-567	286	36	.	.	PUNCT
can-567	287	1	acknowledgements	acknowledgement	NOUN
can-567	287	2	the	the	DET
can-567	287	3	work	work	NOUN
can-567	287	4	was	be	AUX
can-567	287	5	carried	carry	VERB
can-567	287	6	out	out	ADP
can-567	287	7	with	with	ADP
can-567	287	8	the	the	DET
can-567	287	9	financial	financial	ADJ
can-567	287	10	support	support	NOUN
can-567	287	11	of	of	ADP
can-567	287	12	the	the	DET
can-567	287	13	ministry	ministry	PROPN
can-567	287	14	of	of	ADP
can-567	287	15	education	education	PROPN
can-567	287	16	and	and	CCONJ
can-567	287	17	science	science	NOUN
can-567	287	18	of	of	ADP
can-567	287	19	russia	russia	PROPN
can-567	287	20	(	(	PUNCT
can-567	287	21	project	project	VERB
can-567	287	22	no	no	INTJ
can-567	287	23	.	.	PUNCT
can-567	287	24	:	:	PUNCT
can-567	288	1	16.9007.2017	16.9007.2017	NUM
can-567	288	2	/	/	SYM
can-567	288	3	бч	бч	NOUN
can-567	288	4	)	)	PUNCT
can-567	288	5	.	.	PUNCT
can-567	289	1	references	reference	NOUN
can-567	289	2	1	1	NUM
can-567	289	3	.	.	PUNCT
can-567	289	4	bulyarskiy	bulyarskiy	PROPN
can-567	289	5	sv	sv	PROPN
can-567	289	6	.	.	PUNCT
can-567	289	7	carbon	carbon	NOUN
can-567	289	8	nanotubes	nanotube	NOUN
can-567	289	9	:	:	PUNCT
can-567	289	10	technology	technology	NOUN
can-567	289	11	(	(	PUNCT
can-567	289	12	in	in	ADP
can-567	289	13	russian	russian	NOUN
can-567	289	14	)	)	PUNCT
can-567	289	15	.	.	PUNCT
can-567	290	1	manage	manage	VERB
can-567	290	2	properties	property	NOUN
can-567	290	3	application	application	NOUN
can-567	290	4	.	.	PUNCT
can-567	291	1	ulyanovsk	ulyanovsk	NOUN
can-567	291	2	:	:	PUNCT
can-567	292	1	strezhen	strezhen	NOUN
can-567	292	2	;	;	PUNCT
can-567	292	3	2011	2011	NUM
can-567	292	4	.	.	PUNCT
can-567	293	1	p.479	p.479	X
can-567	293	2	.	.	PUNCT
can-567	294	1	2	2	X
can-567	294	2	.	.	X
can-567	294	3	chernozatonskii	chernozatonskii	PROPN
can-567	294	4	la	la	PROPN
can-567	294	5	,	,	PUNCT
can-567	294	6	gulyaev	gulyaev	PROPN
can-567	294	7	yv	yv	PROPN
can-567	294	8	,	,	PUNCT
can-567	294	9	kosakovskaja	kosakovskaja	PROPN
can-567	294	10	zj	zj	PROPN
can-567	294	11	,	,	PUNCT
can-567	294	12	et	et	PROPN
can-567	294	13	al	al	PROPN
can-567	294	14	.	.	PROPN
can-567	294	15	electron	electron	PROPN
can-567	294	16	field	field	NOUN
can-567	294	17	emission	emission	NOUN
can-567	294	18	from	from	ADP
can-567	294	19	nanofilament	nanofilament	ADJ
can-567	294	20	carbon	carbon	NOUN
can-567	294	21	films	film	NOUN
can-567	294	22	.	.	PUNCT
can-567	295	1	chemical	chemical	NOUN
can-567	295	2	physics	physics	PROPN
can-567	295	3	letters	letter	NOUN
can-567	295	4	1995	1995	NUM
can-567	295	5	;	;	PUNCT
can-567	295	6	233(1	233(1	NUM
can-567	295	7	-	-	SYM
can-567	295	8	2	2	NUM
can-567	295	9	):	):	PUNCT
can-567	295	10	63–68	63–68	NUM
can-567	295	11	.	.	PUNCT
can-567	296	1	3	3	X
can-567	296	2	.	.	X
can-567	296	3	de	de	PROPN
can-567	296	4	heer	heer	PROPN
can-567	296	5	wa	wa	PROPN
can-567	296	6	,	,	PUNCT
can-567	296	7	chatelain	chatelain	VERB
can-567	296	8	a	a	PRON
can-567	296	9	,	,	PUNCT
can-567	296	10	ugarte	ugarte	NOUN
can-567	296	11	d.	d.	PROPN
can-567	296	12	a	a	DET
can-567	296	13	carbon	carbon	NOUN
can-567	296	14	nanotube	nanotube	VERB
can-567	296	15	field	field	NOUN
can-567	296	16	-	-	PUNCT
can-567	296	17	emission	emission	NOUN
can-567	296	18	electron	electron	NOUN
can-567	296	19	source	source	NOUN
can-567	296	20	.	.	PUNCT
can-567	297	1	science	science	NOUN
can-567	297	2	1995	1995	NUM
can-567	297	3	;	;	PUNCT
can-567	297	4	270	270	NUM
can-567	297	5	:	:	SYM
can-567	297	6	1179–1180	1179–1180	NUM
can-567	297	7	.	.	PUNCT
can-567	298	1	4	4	NUM
can-567	298	2	.	.	X
can-567	298	3	rinzler	rinzler	PROPN
can-567	298	4	ag	ag	PROPN
can-567	298	5	,	,	PUNCT
can-567	298	6	hafner	hafner	PROPN
can-567	298	7	jh	jh	PROPN
can-567	298	8	,	,	PUNCT
can-567	298	9	nikolaev	nikolaev	ADV
can-567	298	10	p	p	X
can-567	298	11	,	,	PUNCT
can-567	298	12	et	et	PROPN
can-567	298	13	al	al	PROPN
can-567	298	14	.	.	PUNCT
can-567	299	1	unraveling	unravel	VERB
can-567	299	2	nanotubes	nanotube	NOUN
can-567	299	3	:	:	PUNCT
can-567	299	4	field	field	NOUN
can-567	299	5	emission	emission	NOUN
can-567	299	6	from	from	ADP
can-567	299	7	an	an	DET
can-567	299	8	atomic	atomic	ADJ
can-567	299	9	wire	wire	NOUN
can-567	299	10	.	.	PUNCT
can-567	300	1	science	science	NOUN
can-567	300	2	1995	1995	NUM
can-567	300	3	;	;	PUNCT
can-567	300	4	269	269	NUM
can-567	300	5	:	:	PUNCT
can-567	300	6	1550–1553	1550–1553	NUM
can-567	300	7	.	.	PUNCT
can-567	301	1	5	5	NUM
can-567	301	2	.	.	X
can-567	302	1	wang	wang	PROPN
can-567	302	2	q	q	PROPN
can-567	302	3	,	,	PUNCT
can-567	302	4	yan	yan	PROPN
can-567	302	5	m	m	PROPN
can-567	302	6	,	,	PUNCT
can-567	302	7	chang	chang	PROPN
can-567	302	8	r.	r.	PROPN
can-567	302	9	flat	flat	PROPN
can-567	302	10	panel	panel	NOUN
can-567	302	11	display	display	NOUN
can-567	302	12	prototype	prototype	NOUN
can-567	302	13	using	use	VERB
can-567	302	14	gated	gate	VERB
can-567	302	15	carbon	carbon	NOUN
can-567	302	16	nanotube	nanotube	ADJ
can-567	302	17	field	field	NOUN
can-567	302	18	emitters	emitter	NOUN
can-567	302	19	.	.	PUNCT
can-567	303	1	applied	apply	VERB
can-567	303	2	physics	physics	NOUN
can-567	303	3	letters	letter	NOUN
can-567	303	4	2001	2001	NUM
can-567	303	5	;	;	PUNCT
can-567	303	6	78	78	NUM
can-567	303	7	:	:	SYM
can-567	303	8	1294–1296	1294–1296	NUM
can-567	303	9	.	.	NOUN
can-567	304	1	6	6	NUM
can-567	304	2	.	.	X
can-567	304	3	mauger	mauger	PROPN
can-567	304	4	m	m	PROPN
can-567	304	5	,	,	PUNCT
can-567	304	6	vu	vu	PROPN
can-567	304	7	tv	tv	NOUN
can-567	304	8	.	.	PUNCT
can-567	305	1	vertically	vertically	ADV
can-567	305	2	aligned	align	VERB
can-567	305	3	carbon	carbon	NOUN
can-567	305	4	nanotube	nanotube	NOUN
can-567	305	5	arrays	array	NOUN
can-567	305	6	for	for	ADP
can-567	305	7	giant	giant	ADJ
can-567	305	8	field	field	NOUN
can-567	305	9	emission	emission	NOUN
can-567	305	10	displays	display	NOUN
can-567	305	11	.	.	PUNCT
can-567	306	1	journal	journal	NOUN
can-567	306	2	of	of	ADP
can-567	306	3	vacuum	vacuum	PROPN
can-567	306	4	science	science	PROPN
can-567	306	5	&	&	CCONJ
can-567	306	6	technology	technology	PROPN
can-567	306	7	b	b	PROPN
can-567	306	8	microelectronics	microelectronics	PROPN
can-567	306	9	&	&	CCONJ
can-567	306	10	nanometer	nanometer	PROPN
can-567	306	11	structures	structure	NOUN
can-567	306	12	2006	2006	NUM
can-567	306	13	;	;	PUNCT
can-567	306	14	24(2	24(2	NUM
can-567	306	15	):	):	PUNCT
can-567	306	16	997–1003	997–1003	NUM
can-567	306	17	.	.	NOUN
can-567	307	1	7	7	X
can-567	307	2	.	.	X
can-567	307	3	reyes	reyes	PROPN
can-567	307	4	-	-	PUNCT
can-567	307	5	mena	mena	PROPN
can-567	307	6	a	a	PROPN
can-567	307	7	,	,	PUNCT
can-567	307	8	jensen	jensen	PROPN
can-567	307	9	ch	ch	PROPN
can-567	307	10	,	,	PUNCT
can-567	307	11	bard	bard	ADJ
can-567	307	12	e	e	NOUN
can-567	307	13	,	,	PUNCT
can-567	307	14	et	et	PROPN
can-567	307	15	al	al	PROPN
can-567	307	16	.	.	PUNCT
can-567	308	1	miniature	miniature	PROPN
can-567	308	2	x	x	PROPN
can-567	308	3	-	-	NOUN
can-567	308	4	ray	ray	NOUN
can-567	308	5	tubes	tube	NOUN
can-567	308	6	utilizing	utilize	VERB
can-567	308	7	carbon	carbon	NOUN
can-567	308	8	-	-	PUNCT
can-567	308	9	nanotube	nanotube	NOUN
can-567	308	10	based	base	VERB
can-567	308	11	cold	cold	ADJ
can-567	308	12	cathodes	cathode	NOUN
can-567	308	13	.	.	PUNCT
can-567	309	1	advances	advance	NOUN
can-567	309	2	in	in	ADP
can-567	309	3	x	x	NOUN
can-567	309	4	-	-	NOUN
can-567	309	5	ray	ray	NOUN
can-567	309	6	analysis	analysis	NOUN
can-567	309	7	2005	2005	NUM
can-567	309	8	;	;	PUNCT
can-567	309	9	48	48	NUM
can-567	309	10	:	:	PUNCT
can-567	309	11	204–209	204–209	NUM
can-567	309	12	.	.	PUNCT
can-567	310	1	8	8	NUM
can-567	310	2	.	.	X
can-567	310	3	matsumoto	matsumoto	PROPN
can-567	310	4	t	t	PROPN
can-567	310	5	,	,	PUNCT
can-567	310	6	mimura	mimura	PROPN
can-567	310	7	h.	h.	PROPN
can-567	310	8	point	point	PROPN
can-567	310	9	x	x	PROPN
can-567	310	10	-	-	NOUN
can-567	310	11	ray	ray	NOUN
can-567	310	12	source	source	NOUN
can-567	310	13	using	use	VERB
can-567	310	14	graphite	graphite	NOUN
can-567	310	15	nanofibers	nanofiber	NOUN
can-567	310	16	and	and	CCONJ
can-567	310	17	its	its	PRON
can-567	310	18	application	application	NOUN
can-567	310	19	to	to	ADP
can-567	310	20	x	x	NOUN
can-567	310	21	-	-	NOUN
can-567	310	22	ray	ray	NOUN
can-567	310	23	radiography	radiography	NOUN
can-567	310	24	.	.	PUNCT
can-567	311	1	applied	apply	VERB
can-567	311	2	physics	physics	NOUN
can-567	311	3	letters	letter	NOUN
can-567	311	4	2003	2003	NUM
can-567	311	5	;	;	PUNCT
can-567	311	6	82	82	NUM
can-567	311	7	:	:	SYM
can-567	311	8	1637	1637	NUM
can-567	311	9	–	–	PUNCT
can-567	311	10	1639	1639	NUM
can-567	311	11	.	.	PUNCT
can-567	312	1	9	9	NUM
can-567	312	2	.	.	X
can-567	313	1	saito	saito	PROPN
can-567	313	2	y	y	PROPN
can-567	313	3	,	,	PUNCT
can-567	313	4	uemura	uemura	NOUN
can-567	313	5	s	s	PROPN
can-567	313	6	,	,	PUNCT
can-567	313	7	hamaguchi	hamaguchi	PROPN
can-567	313	8	k.	k.	PROPN
can-567	313	9	cathode	cathode	PROPN
can-567	313	10	ray	ray	NOUN
can-567	313	11	tube	tube	NOUN
can-567	313	12	lighting	lighting	NOUN
can-567	313	13	elements	element	NOUN
can-567	313	14	with	with	ADP
can-567	313	15	carbon	carbon	NOUN
can-567	313	16	nanotube	nanotube	ADJ
can-567	313	17	field	field	NOUN
can-567	313	18	emitters	emitter	NOUN
can-567	313	19	.	.	PUNCT
can-567	314	1	japanese	japanese	ADJ
can-567	314	2	journal	journal	PROPN
can-567	314	3	of	of	ADP
can-567	314	4	applied	applied	ADJ
can-567	314	5	physics	physics	NOUN
can-567	314	6	1998	1998	NUM
can-567	314	7	;	;	PUNCT
can-567	314	8	37(3b	37(3b	NUM
can-567	314	9	):	):	PUNCT
can-567	314	10	l346	l346	PROPN
can-567	314	11	–	–	PUNCT
can-567	314	12	l348	l348	PROPN
can-567	314	13	.	.	PROPN
can-567	315	1	10	10	NUM
can-567	315	2	.	.	PUNCT
can-567	315	3	croci	croci	PROPN
can-567	315	4	m	m	PROPN
can-567	315	5	,	,	PUNCT
can-567	315	6	arfaoui	arfaoui	PROPN
can-567	315	7	i	i	PRON
can-567	315	8	,	,	PUNCT
can-567	315	9	stöckli	stöckli	PROPN
can-567	315	10	t	t	PROPN
can-567	315	11	,	,	PUNCT
can-567	315	12	et	et	PROPN
can-567	315	13	al	al	PROPN
can-567	315	14	.	.	PUNCT
can-567	316	1	a	a	DET
can-567	316	2	fully	fully	ADV
can-567	316	3	sealed	seal	VERB
can-567	316	4	luminescent	luminescent	NOUN
can-567	316	5	tube	tube	NOUN
can-567	316	6	based	base	VERB
can-567	316	7	on	on	ADP
can-567	316	8	carbon	carbon	NOUN
can-567	316	9	nanotube	nanotube	NOUN
can-567	316	10	field	field	NOUN
can-567	316	11	emission	emission	NOUN
can-567	316	12	.	.	PUNCT
can-567	317	1	microelectronics	microelectronic	NOUN
can-567	317	2	journal	journal	PROPN
can-567	317	3	2004	2004	NUM
can-567	317	4	;	;	PUNCT
can-567	317	5	35	35	NUM
can-567	317	6	:	:	SYM
can-567	317	7	329	329	NUM
can-567	317	8	–	–	PUNCT
can-567	317	9	336	336	NUM
can-567	317	10	.	.	PUNCT
can-567	317	11	11	11	NUM
can-567	317	12	.	.	PUNCT
can-567	318	1	yasutomo	yasutomo	PROPN
can-567	318	2	y	y	PROPN
can-567	318	3	,	,	PUNCT
can-567	318	4	ohue	ohue	PROPN
can-567	318	5	w	w	PROPN
can-567	318	6	,	,	PUNCT
can-567	318	7	gotoh	gotoh	PROPN
can-567	318	8	y	y	PROPN
can-567	318	9	,	,	PUNCT
can-567	318	10	et	et	PROPN
can-567	318	11	al	al	PROPN
can-567	318	12	.	.	PROPN
can-567	318	13	frequency	frequency	PROPN
can-567	318	14	mixing	mix	VERB
can-567	318	15	with	with	ADP
can-567	318	16	a	a	DET
can-567	318	17	tetrode	tetrode	ADJ
can-567	318	18	vacuum	vacuum	NOUN
can-567	318	19	transistor	transistor	NOUN
can-567	318	20	.	.	PUNCT
can-567	319	1	ieee	ieee	NOUN
can-567	319	2	,	,	PUNCT
can-567	319	3	2012	2012	NUM
can-567	319	4	.	.	PUNCT
can-567	320	1	12	12	NUM
can-567	320	2	.	.	PUNCT
can-567	320	3	sabaut	sabaut	PROPN
can-567	320	4	l	l	PROPN
can-567	320	5	,	,	PUNCT
can-567	320	6	ponard	ponard	NOUN
can-567	320	7	p	p	NOUN
can-567	320	8	,	,	PUNCT
can-567	320	9	mazellier	mazellier	NOUN
can-567	320	10	jp	jp	NOUN
can-567	320	11	,	,	PUNCT
can-567	320	12	et	et	PROPN
can-567	320	13	al	al	PROPN
can-567	320	14	.	.	PROPN
can-567	320	15	electrostatic	electrostatic	ADJ
can-567	320	16	modeling	modeling	NOUN
can-567	320	17	of	of	ADP
can-567	320	18	an	an	DET
can-567	320	19	in	in	ADP
can-567	320	20	-	-	PUNCT
can-567	320	21	plane	plane	NOUN
can-567	320	22	gated	gate	VERB
can-567	320	23	field	field	NOUN
can-567	320	24	emission	emission	NOUN
can-567	320	25	cathode	cathode	NOUN
can-567	320	26	.	.	PUNCT
can-567	321	1	journal	journal	NOUN
can-567	321	2	of	of	ADP
can-567	321	3	vacuum	vacuum	PROPN
can-567	321	4	science	science	PROPN
can-567	321	5	&	&	CCONJ
can-567	321	6	technology	technology	PROPN
can-567	321	7	b	b	PROPN
can-567	321	8	2016	2016	NUM
can-567	321	9	;	;	PUNCT
can-567	321	10	34(2	34(2	NUM
can-567	321	11	):	):	PUNCT
can-567	321	12	02g101	02g101	NOUN
can-567	321	13	.	.	PUNCT
can-567	322	1	13	13	NUM
can-567	322	2	.	.	PUNCT
can-567	322	3	yuan	yuan	NOUN
can-567	322	4	x	x	SYM
can-567	322	5	,	,	PUNCT
can-567	322	6	zhu	zhu	PROPN
can-567	322	7	w	w	PROPN
can-567	322	8	,	,	PUNCT
can-567	322	9	zhang	zhang	PROPN
can-567	322	10	y	y	PROPN
can-567	322	11	,	,	PUNCT
can-567	322	12	et	et	PROPN
can-567	322	13	al	al	PROPN
can-567	322	14	.	.	PUNCT
can-567	323	1	a	a	DET
can-567	323	2	fully	fully	ADV
can-567	323	3	-	-	PUNCT
can-567	323	4	sealed	seal	VERB
can-567	323	5	carbon	carbon	NOUN
can-567	323	6	-	-	PUNCT
can-567	323	7	nanotube	nanotube	ADJ
can-567	323	8	cold	cold	ADJ
can-567	323	9	-	-	PUNCT
can-567	323	10	cathode	cathode	NOUN
can-567	323	11	terahertz	terahertz	NOUN
can-567	323	12	gyrotron	gyrotron	NOUN
can-567	323	13	.	.	PUNCT
can-567	324	1	scientific	scientific	ADJ
can-567	324	2	reports	report	NOUN
can-567	324	3	6	6	NUM
can-567	324	4	.	.	SYM
can-567	324	5	2016	2016	NUM
can-567	324	6	.	.	PUNCT
can-567	325	1	article	article	NOUN
can-567	325	2	number	number	NOUN
can-567	325	3	:	:	PUNCT
can-567	325	4	32936	32936	NUM
can-567	325	5	.	.	PUNCT
can-567	326	1	14	14	NUM
can-567	326	2	.	.	PUNCT
can-567	327	1	paoloni	paoloni	PROPN
can-567	327	2	c	c	PROPN
can-567	327	3	,	,	PUNCT
can-567	327	4	carlo	carlo	PROPN
can-567	327	5	a	a	PRON
can-567	327	6	,	,	PUNCT
can-567	327	7	brunetti	brunetti	NOUN
can-567	327	8	f	f	PROPN
can-567	327	9	,	,	PUNCT
can-567	327	10	et	et	PROPN
can-567	327	11	al	al	PROPN
can-567	327	12	.	.	PROPN
can-567	327	13	design	design	NOUN
can-567	327	14	and	and	CCONJ
can-567	327	15	fabrication	fabrication	NOUN
can-567	327	16	of	of	ADP
can-567	327	17	a	a	DET
can-567	327	18	1	1	NUM
can-567	327	19	thz	thz	NUM
can-567	327	20	backward	backward	ADJ
can-567	327	21	wave	wave	NOUN
can-567	327	22	amplifier	amplifier	NOUN
can-567	327	23	.	.	PUNCT
can-567	328	1	terahertz	terahertz	NOUN
can-567	328	2	science	science	NOUN
can-567	328	3	and	and	CCONJ
can-567	328	4	technology	technology	NOUN
can-567	328	5	2011	2011	NUM
can-567	328	6	;	;	PUNCT
can-567	328	7	4	4	NUM
can-567	328	8	:	:	SYM
can-567	328	9	1102	1102	NUM
can-567	328	10	–	–	PUNCT
can-567	328	11	1110	1110	NUM
can-567	328	12	.	.	PUNCT
can-567	329	1	15	15	NUM
can-567	329	2	.	.	PUNCT
can-567	330	1	rupesinghe	rupesinghe	PROPN
can-567	330	2	nl	nl	PROPN
can-567	330	3	,	,	PUNCT
can-567	330	4	chhowalla	chhowalla	PROPN
can-567	330	5	m	m	PROPN
can-567	330	6	,	,	PUNCT
can-567	330	7	teo	teo	PROPN
can-567	330	8	kbk	kbk	PROPN
can-567	330	9	,	,	PUNCT
can-567	330	10	et	et	PROPN
can-567	330	11	al	al	PROPN
can-567	330	12	.	.	PROPN
can-567	330	13	field	field	NOUN
can-567	330	14	emission	emission	NOUN
can-567	330	15	vacuum	vacuum	NOUN
can-567	330	16	power	power	NOUN
can-567	330	17	switch	switch	NOUN
can-567	330	18	using	use	VERB
can-567	330	19	vertically	vertically	ADV
can-567	330	20	aligned	align	VERB
can-567	330	21	carbon	carbon	NOUN
can-567	330	22	nanotubes	nanotube	NOUN
can-567	330	23	.	.	PUNCT
can-567	331	1	journal	journal	PROPN
can-567	331	2	of	of	ADP
can-567	331	3	vacuum	vacuum	PROPN
can-567	331	4	science	science	PROPN
can-567	331	5	&	&	CCONJ
can-567	331	6	technology	technology	PROPN
can-567	331	7	b	b	PROPN
can-567	331	8	2003	2003	NUM
can-567	331	9	;	;	PUNCT
can-567	331	10	21(1	21(1	NUM
can-567	331	11	):	):	PUNCT
can-567	331	12	1071–1076	1071–1076	NUM
can-567	331	13	.	.	PUNCT
can-567	332	1	16	16	NUM
can-567	332	2	.	.	PUNCT
can-567	333	1	eletskii	eletskii	ADJ
can-567	333	2	av	av	PROPN
can-567	333	3	.	.	PUNCT
can-567	334	1	carbon	carbon	NOUN
can-567	334	2	nanotube	nanotube	NOUN
can-567	334	3	-	-	PUNCT
can-567	334	4	based	base	VERB
can-567	334	5	electron	electron	NOUN
can-567	334	6	field	field	NOUN
can-567	334	7	emitters	emitter	NOUN
can-567	334	8	.	.	PUNCT
can-567	335	1	uspekhi	uspekhi	PROPN
can-567	335	2	fizicheskih	fizicheskih	PROPN
can-567	335	3	nauk	nauk	PROPN
can-567	335	4	2010	2010	NUM
can-567	335	5	;	;	PUNCT
can-567	335	6	180(9	180(9	NUM
can-567	335	7	):	):	PUNCT
can-567	335	8	897	897	NUM
can-567	335	9	.	.	PUNCT
can-567	336	1	17	17	NUM
can-567	336	2	.	.	PUNCT
can-567	337	1	bocharov	bocharov	PROPN
can-567	337	2	gs	gs	PROPN
can-567	337	3	,	,	PUNCT
can-567	337	4	eletskii	eletskii	ADJ
can-567	337	5	av	av	PROPN
can-567	337	6	.	.	PUNCT
can-567	337	7	theory	theory	NOUN
can-567	337	8	of	of	ADP
can-567	337	9	carbon	carbon	NOUN
can-567	337	10	nanotube	nanotube	NOUN
can-567	337	11	(	(	PUNCT
can-567	337	12	cnt)-based	cnt)-base	VERB
can-567	337	13	electron	electron	NOUN
can-567	337	14	field	field	NOUN
can-567	337	15	emitters	emitter	NOUN
can-567	337	16	.	.	PUNCT
can-567	338	1	nanomaterials	nanomaterial	NOUN
can-567	338	2	2013	2013	NUM
can-567	338	3	;	;	PUNCT
can-567	338	4	3	3	NUM
can-567	338	5	:	:	SYM
can-567	338	6	393–442	393–442	NUM
can-567	338	7	.	.	NOUN
can-567	338	8	18	18	NUM
can-567	338	9	.	.	PUNCT
can-567	339	1	murphy	murphy	PROPN
can-567	339	2	el	el	PROPN
can-567	339	3	,	,	PUNCT
can-567	339	4	good	good	PROPN
can-567	339	5	rh	rh	PROPN
can-567	339	6	.	.	PUNCT
can-567	339	7	thermionic	thermionic	PROPN
can-567	339	8	emission	emission	NOUN
can-567	339	9	,	,	PUNCT
can-567	339	10	field	field	NOUN
can-567	339	11	emission	emission	NOUN
can-567	339	12	,	,	PUNCT
can-567	339	13	and	and	CCONJ
can-567	339	14	the	the	DET
can-567	339	15	transition	transition	NOUN
can-567	339	16	region	region	NOUN
can-567	339	17	.	.	PUNCT
can-567	340	1	physical	physical	ADJ
can-567	340	2	review	review	NOUN
can-567	340	3	1956	1956	NUM
can-567	340	4	;	;	PUNCT
can-567	340	5	102	102	NUM
can-567	340	6	:	:	SYM
can-567	340	7	1464–1473	1464–1473	NUM
can-567	340	8	.	.	PUNCT
can-567	341	1	19	19	NUM
can-567	341	2	.	.	PUNCT
can-567	342	1	mayer	mayer	PROPN
can-567	342	2	a	a	PROPN
can-567	342	3	,	,	PUNCT
can-567	342	4	lambin	lambin	PROPN
can-567	342	5	ph	ph	PROPN
can-567	342	6	.	.	PROPN
can-567	342	7	quantum	quantum	ADJ
can-567	342	8	-	-	ADJ
can-567	342	9	mechanical	mechanical	ADJ
can-567	342	10	simulations	simulation	NOUN
can-567	342	11	of	of	ADP
can-567	342	12	field	field	NOUN
can-567	342	13	emission	emission	NOUN
can-567	342	14	from	from	ADP
can-567	342	15	carbon	carbon	NOUN
can-567	342	16	nanotubes	nanotube	NOUN
can-567	342	17	.	.	PUNCT
can-567	343	1	carbon	carbon	NOUN
can-567	343	2	2002	2002	NUM
can-567	343	3	;	;	PUNCT
can-567	343	4	40	40	NUM
can-567	343	5	:	:	PUNCT
can-567	343	6	429–436	429–436	NUM
can-567	343	7	.	.	PUNCT
can-567	343	8	20	20	NUM
can-567	343	9	.	.	PUNCT
can-567	344	1	sun	sun	PROPN
can-567	344	2	j	j	PROPN
can-567	344	3	,	,	PUNCT
can-567	344	4	zhang	zhang	PROPN
can-567	344	5	z	z	PROPN
can-567	344	6	,	,	PUNCT
can-567	344	7	hou	hou	PROPN
can-567	344	8	s	s	PROPN
can-567	344	9	,	,	PUNCT
can-567	344	10	et	et	PROPN
can-567	344	11	al	al	PROPN
can-567	344	12	.	.	PROPN
can-567	344	13	work	work	NOUN
can-567	344	14	function	function	NOUN
can-567	344	15	of	of	ADP
can-567	344	16	single	single	ADJ
can-567	344	17	-	-	PUNCT
can-567	344	18	walled	wall	VERB
can-567	344	19	carbon	carbon	NOUN
can-567	344	20	nanotubes	nanotube	NOUN
can-567	344	21	determined	determine	VERB
can-567	344	22	by	by	ADP
can-567	344	23	field	field	NOUN
can-567	344	24	emission	emission	NOUN
can-567	344	25	microscopy	microscopy	NOUN
can-567	344	26	.	.	PUNCT
can-567	345	1	applied	apply	VERB
can-567	345	2	physics	physics	PROPN
can-567	345	3	a	a	DET
can-567	345	4	2002	2002	NUM
can-567	345	5	;	;	PUNCT
can-567	345	6	75(4	75(4	NOUN
can-567	345	7	):	):	PUNCT
can-567	345	8	479–483	479–483	NUM
can-567	345	9	.	.	PUNCT
can-567	346	1	21	21	NUM
can-567	346	2	.	.	PUNCT
can-567	347	1	vincent	vincent	PROPN
can-567	347	2	p	p	PROPN
can-567	347	3	,	,	PUNCT
can-567	347	4	purcell	purcell	PROPN
can-567	347	5	st	st	PROPN
can-567	347	6	,	,	PUNCT
can-567	347	7	journe	journe	NOUN
can-567	347	8	c	c	NOUN
can-567	347	9	,	,	PUNCT
can-567	347	10	et	et	PROPN
can-567	347	11	al	al	PROPN
can-567	347	12	.	.	PROPN
can-567	347	13	modelization	modelization	NOUN
can-567	347	14	of	of	ADP
can-567	347	15	resistive	resistive	ADJ
can-567	347	16	heating	heating	NOUN
can-567	347	17	of	of	ADP
can-567	347	18	carbon	carbon	NOUN
can-567	347	19	nanotubes	nanotube	NOUN
can-567	347	20	during	during	ADP
can-567	347	21	field	field	NOUN
can-567	347	22	emission	emission	NOUN
can-567	347	23	.	.	PUNCT
can-567	348	1	physical	physical	PROPN
can-567	348	2	review	review	PROPN
can-567	348	3	b	b	PROPN
can-567	348	4	2002	2002	NUM
can-567	348	5	;	;	PUNCT
can-567	348	6	66(7	66(7	NUM
can-567	348	7	):	):	PUNCT
can-567	348	8	429–436	429–436	NUM
can-567	348	9	.	.	PUNCT
can-567	349	1	22	22	NUM
can-567	349	2	.	.	PUNCT
can-567	350	1	banerjee	banerjee	PROPN
can-567	350	2	pk	pk	PROPN
can-567	350	3	,	,	PUNCT
can-567	350	4	butterfield	butterfield	PROPN
can-567	350	5	r.	r.	PROPN
can-567	350	6	boundary	boundary	PROPN
can-567	350	7	element	element	PROPN
can-567	350	8	me	i	PRON
can-567	350	9	thods	thod	NOUN
can-567	350	10	in	in	ADP
can-567	350	11	engineering	engineering	NOUN
can-567	350	12	science	science	NOUN
can-567	350	13	.	.	PUNCT
can-567	351	1	london	london	PROPN
can-567	351	2	:	:	PUNCT
can-567	351	3	mcgraw	mcgraw	PROPN
can-567	351	4	hill	hill	PROPN
can-567	351	5	book	book	PROPN
can-567	351	6	company	company	PROPN
can-567	351	7	(	(	PUNCT
can-567	351	8	uk	uk	PROPN
can-567	351	9	)	)	PUNCT
can-567	351	10	limited	limited	ADJ
can-567	351	11	;	;	PUNCT
can-567	351	12	1981	1981	NUM
can-567	351	13	.	.	PUNCT
can-567	352	1	p.452	p.452	NOUN
can-567	352	2	.	.	PUNCT
can-567	353	1	23	23	NUM
can-567	353	2	.	.	X
can-567	354	1	brebbia	brebbia	PROPN
can-567	354	2	ca	ca	PROPN
can-567	354	3	,	,	PUNCT
can-567	354	4	telles	telles	PROPN
can-567	354	5	jcf	jcf	PROPN
can-567	354	6	,	,	PUNCT
can-567	354	7	wrobel	wrobel	PROPN
can-567	354	8	lc	lc	PROPN
can-567	354	9	.	.	PUNCT
can-567	355	1	boundary	boundary	ADJ
can-567	355	2	element	element	NOUN
can-567	355	3	techniques	technique	NOUN
can-567	355	4	.	.	PUNCT
can-567	356	1	berlin	berlin	PROPN
can-567	356	2	,	,	PUNCT
can-567	356	3	heidelberg	heidelberg	PROPN
can-567	356	4	,	,	PUNCT
can-567	356	5	new	new	PROPN
can-567	356	6	york	york	PROPN
can-567	356	7	,	,	PUNCT
can-567	356	8	tokyo	tokyo	PROPN
can-567	356	9	:	:	PUNCT
can-567	356	10	springer	springer	NOUN
can-567	356	11	-	-	PUNCT
can-567	356	12	verlag	verlag	PROPN
can-567	356	13	;	;	PUNCT
can-567	356	14	1984	1984	NUM
can-567	356	15	.	.	PUNCT
can-567	357	1	p.464	p.464	PROPN
can-567	357	2	.	.	PUNCT
can-567	358	1	24	24	NUM
can-567	358	2	.	.	PUNCT
can-567	358	3	shoup	shoup	PROPN
can-567	358	4	te	te	PROPN
can-567	358	5	.	.	PROPN
can-567	358	6	applied	apply	VERB
can-567	358	7	numerical	numerical	ADJ
can-567	358	8	methods	method	NOUN
can-567	358	9	for	for	ADP
can-567	358	10	microcomputers	microcomputer	NOUN
can-567	358	11	.	.	PUNCT
can-567	359	1	englewood	englewood	PROPN
can-567	359	2	cliffs，nj	cliffs，nj	PROPN
can-567	359	3	:	:	PUNCT
can-567	359	4	prentice	prentice	NOUN
can-567	359	5	-	-	PUNCT
can-567	359	6	hall	hall	NOUN
can-567	359	7	;	;	PUNCT
can-567	359	8	1984	1984	NUM
can-567	359	9	.	.	PUNCT
can-567	360	1	p.194	p.194	PROPN
can-567	360	2	.	.	PROPN
can-567	361	1	25	25	NUM
can-567	361	2	.	.	PUNCT
can-567	361	3	bocharov	bocharov	PROPN
can-567	361	4	gs	gs	AUX
can-567	361	5	,	,	PUNCT
can-567	361	6	eletskii	eletskii	ADJ
can-567	361	7	av	av	PROPN
can-567	361	8	.	.	PUNCT
can-567	361	9	thermal	thermal	ADJ
can-567	361	10	instability	instability	NOUN
can-567	361	11	of	of	ADP
can-567	361	12	field	field	NOUN
can-567	361	13	emission	emission	NOUN
can-567	361	14	from	from	ADP
can-567	361	15	carbon	carbon	NOUN
can-567	361	16	nanotubes	nanotube	NOUN
can-567	361	17	.	.	PUNCT
can-567	362	1	technical	technical	ADJ
can-567	362	2	physics	physics	PROPN
can-567	362	3	2007	2007	NUM
can-567	362	4	;	;	PUNCT
can-567	362	5	52(4	52(4	NUM
can-567	362	6	):	):	PUNCT
can-567	362	7	498–503	498–503	NUM
can-567	362	8	.	.	PROPN
can-567	363	1	26	26	NUM
can-567	363	2	.	.	PUNCT
can-567	363	3	bocharov	bocharov	PROPN
can-567	363	4	gs	gs	PROPN
can-567	363	5	,	,	PUNCT
can-567	363	6	eletskii	eletskii	ADJ
can-567	363	7	av	av	PROPN
can-567	363	8	,	,	PUNCT
can-567	363	9	sommerer	sommerer	PROPN
can-567	363	10	tj	tj	PROPN
can-567	363	11	.	.	PROPN
can-567	363	12	optimization	optimization	NOUN
can-567	363	13	of	of	ADP
can-567	363	14	the	the	DET
can-567	363	15	parameters	parameter	NOUN
can-567	363	16	of	of	ADP
can-567	363	17	a	a	DET
can-567	363	18	carbon	carbon	NOUN
can-567	363	19	nanotube	nanotube	NOUN
can-567	363	20	-	-	PUNCT
can-567	363	21	based	base	VERB
can-567	363	22	field	field	NOUN
can-567	363	23	-	-	PUNCT
can-567	363	24	emission	emission	NOUN
can-567	363	25	cathode	cathode	NOUN
can-567	363	26	.	.	PUNCT
can-567	364	1	technical	technical	ADJ
can-567	364	2	physics	physics	PROPN
can-567	364	3	2011	2011	NUM
can-567	364	4	;	;	PUNCT
can-567	364	5	56(4	56(4	NUM
can-567	364	6	):	):	PUNCT
can-567	364	7	540–545	540–545	NUM
can-567	364	8	.	.	PUNCT
can-567	365	1	59	59	NUM
can-567	365	2	27	27	NUM
can-567	365	3	.	.	PUNCT
can-567	366	1	ziman	ziman	PROPN
can-567	366	2	jm	jm	PROPN
can-567	366	3	.	.	PROPN
can-567	366	4	electrons	electron	NOUN
can-567	366	5	and	and	CCONJ
can-567	366	6	phonons	phonon	NOUN
can-567	366	7	.	.	PUNCT
can-567	367	1	the	the	DET
can-567	367	2	theory	theory	NOUN
can-567	367	3	of	of	ADP
can-567	367	4	transport	transport	NOUN
can-567	367	5	phenomena	phenomenon	NOUN
can-567	367	6	in	in	ADP
can-567	367	7	solids	solid	NOUN
can-567	367	8	.	.	PUNCT
can-567	368	1	oxford	oxford	PROPN
can-567	368	2	at	at	ADP
can-567	368	3	the	the	DET
can-567	368	4	clarendon	clarendon	PROPN
can-567	368	5	press	press	NOUN
can-567	368	6	;	;	PUNCT
can-567	368	7	1960	1960	NUM
can-567	368	8	.	.	PUNCT
can-567	369	1	p.554	p.554	NOUN
can-567	369	2	.	.	PUNCT
can-567	370	1	28	28	NUM
can-567	370	2	.	.	PUNCT
can-567	371	1	hone	hone	PROPN
can-567	371	2	j	j	PROPN
can-567	371	3	,	,	PUNCT
can-567	371	4	llaguno	llaguno	PROPN
can-567	371	5	mc	mc	PROPN
can-567	371	6	,	,	PUNCT
can-567	371	7	biercuk	biercuk	PROPN
can-567	371	8	mj	mj	PROPN
can-567	371	9	,	,	PUNCT
can-567	371	10	et	et	PROPN
can-567	371	11	al	al	PROPN
can-567	371	12	.	.	PUNCT
can-567	371	13	thermal	thermal	ADJ
can-567	371	14	properties	property	NOUN
can-567	371	15	of	of	ADP
can-567	371	16	carbon	carbon	NOUN
can-567	371	17	nanotubes	nanotube	NOUN
can-567	371	18	and	and	CCONJ
can-567	371	19	nanotube	nanotube	NOUN
can-567	371	20	-	-	PUNCT
can-567	371	21	based	base	VERB
can-567	371	22	materials	material	NOUN
can-567	371	23	.	.	PUNCT
can-567	372	1	applied	apply	VERB
can-567	372	2	physics	physics	PROPN
can-567	372	3	a	a	DET
can-567	372	4	2002	2002	NUM
can-567	372	5	;	;	PUNCT
can-567	372	6	74	74	NUM
can-567	372	7	:	:	PUNCT
can-567	372	8	339–343	339–343	NUM
can-567	372	9	.	.	PUNCT
can-567	373	1	29	29	NUM
can-567	373	2	.	.	PUNCT
can-567	373	3	paulini	paulini	PROPN
can-567	373	4	j	j	PROPN
can-567	373	5	,	,	PUNCT
can-567	373	6	klein	klein	PROPN
can-567	373	7	t	t	PROPN
can-567	373	8	,	,	PUNCT
can-567	373	9	simon	simon	PROPN
can-567	373	10	g.	g.	PROPN
can-567	373	11	thermo	thermo	PROPN
can-567	373	12	-	-	PUNCT
can-567	373	13	field	field	NOUN
can-567	373	14	emission	emission	NOUN
can-567	373	15	and	and	CCONJ
can-567	373	16	the	the	DET
can-567	373	17	nottingham	nottingham	PROPN
can-567	373	18	effect	effect	NOUN
can-567	373	19	.	.	PUNCT
can-567	374	1	journal	journal	NOUN
can-567	374	2	of	of	ADP
can-567	374	3	physics	physics	PROPN
can-567	375	1	d	d	PROPN
can-567	375	2	:	:	PUNCT
can-567	375	3	applied	apply	VERB
can-567	375	4	physics1993	physics1993	PROPN
can-567	375	5	(	(	PUNCT
can-567	375	6	printed	print	VERB
can-567	375	7	in	in	ADP
can-567	375	8	the	the	DET
can-567	375	9	uk	uk	PROPN
can-567	375	10	)	)	PUNCT
can-567	375	11	;	;	PUNCT
can-567	376	1	26	26	NUM
can-567	376	2	:	:	SYM
can-567	376	3	1310	1310	NUM
can-567	376	4	–	–	PUNCT
can-567	376	5	1315	1315	NUM
can-567	376	6	.	.	PUNCT
can-567	376	7	30	30	NUM
can-567	376	8	.	.	PUNCT
can-567	377	1	wei	wei	PROPN
can-567	377	2	w	w	PROPN
can-567	377	3	,	,	PUNCT
can-567	377	4	liu	liu	PROPN
can-567	377	5	y	y	PROPN
can-567	377	6	,	,	PUNCT
can-567	377	7	wei	wei	PROPN
can-567	377	8	y	y	PROPN
can-567	377	9	,	,	PUNCT
can-567	377	10	et	et	PROPN
can-567	377	11	al	al	PROPN
can-567	377	12	.	.	PROPN
can-567	377	13	tip	tip	PROPN
can-567	377	14	cooling	cool	VERB
can-567	377	15	effect	effect	NOUN
can-567	377	16	and	and	CCONJ
can-567	377	17	failure	failure	NOUN
can-567	377	18	mechanism	mechanism	NOUN
can-567	377	19	of	of	ADP
can-567	377	20	field	field	NOUN
can-567	377	21	-	-	PUNCT
can-567	377	22	emitting	emit	VERB
can-567	377	23	carbon	carbon	NOUN
can-567	377	24	nanotubes	nanotube	NOUN
can-567	377	25	.	.	PUNCT
can-567	378	1	nano	nano	NOUN
can-567	378	2	letters	letter	NOUN
can-567	378	3	2007	2007	NUM
can-567	378	4	;	;	PUNCT
can-567	378	5	7	7	NUM
can-567	378	6	:	:	SYM
can-567	378	7	64–68	64–68	NUM
can-567	378	8	.	.	PUNCT
can-567	379	1	31	31	NUM
can-567	379	2	.	.	PUNCT
can-567	380	1	huang	huang	PROPN
can-567	380	2	n	n	PROPN
can-567	380	3	,	,	PUNCT
can-567	380	4	chen	chen	PROPN
can-567	380	5	j	j	PROPN
can-567	380	6	,	,	PUNCT
can-567	380	7	chen	chen	PROPN
can-567	380	8	j	j	PROPN
can-567	380	9	,	,	PUNCT
can-567	380	10	et	et	PROPN
can-567	380	11	al	al	PROPN
can-567	380	12	.	.	PUNCT
can-567	380	13	mechanism	mechanism	NOUN
can-567	380	14	responsible	responsible	ADJ
can-567	380	15	for	for	ADP
can-567	380	16	initiating	initiate	VERB
can-567	380	17	carbon	carbon	NOUN
can-567	380	18	nanotube	nanotube	NOUN
can-567	380	19	vacuum	vacuum	NOUN
can-567	380	20	breakdown	breakdown	NOUN
can-567	380	21	.	.	PUNCT
can-567	381	1	physics	physics	NOUN
can-567	381	2	review	review	PROPN
can-567	381	3	letter	letter	NOUN
can-567	381	4	2004	2004	NUM
can-567	381	5	;	;	PUNCT
can-567	381	6	93	93	NUM
can-567	381	7	:	:	SYM
can-567	381	8	075501	075501	NUM
can-567	381	9	.	.	PUNCT
