id	sid	tid	token	lemma	pos
ap-2008	1	1	acta	acta	PROPN
ap-2008	1	2	polytechnica	polytechnica	PROPN
ap-2008	1	3	doi:10.14311	doi:10.14311	PROPN
ap-2008	1	4	/	/	SYM
ap-2008	1	5	ap.2013.53.0832	ap.2013.53.0832	PROPN
ap-2008	1	6	acta	acta	PROPN
ap-2008	1	7	polytechnica	polytechnica	PROPN
ap-2008	1	8	53(supplement):832–838	53(supplement):832–838	NUM
ap-2008	1	9	,	,	PUNCT
ap-2008	1	10	2013	2013	NUM
ap-2008	1	11	©	©	PROPN
ap-2008	1	12	czech	czech	PROPN
ap-2008	1	13	technical	technical	PROPN
ap-2008	1	14	university	university	PROPN
ap-2008	1	15	in	in	ADP
ap-2008	1	16	prague	prague	PROPN
ap-2008	1	17	,	,	PUNCT
ap-2008	1	18	2013	2013	NUM
ap-2008	1	19	available	available	ADJ
ap-2008	1	20	online	online	ADV
ap-2008	1	21	at	at	ADP
ap-2008	1	22	http://ojs.cvut.cz/ojs/index.php/ap	http://ojs.cvut.cz/ojs/index.php/ap	PROPN
ap-2008	1	23	the	the	DET
ap-2008	1	24	sensitivity	sensitivity	NOUN
ap-2008	1	25	of	of	ADP
ap-2008	1	26	the	the	DET
ap-2008	1	27	greenhouse	greenhouse	NOUN
ap-2008	1	28	effect	effect	NOUN
ap-2008	1	29	to	to	ADP
ap-2008	1	30	changes	change	NOUN
ap-2008	1	31	in	in	ADP
ap-2008	1	32	the	the	DET
ap-2008	1	33	concentration	concentration	NOUN
ap-2008	1	34	of	of	ADP
ap-2008	1	35	gases	gas	NOUN
ap-2008	1	36	in	in	ADP
ap-2008	1	37	planetary	planetary	ADJ
ap-2008	1	38	atmospheres	atmosphere	NOUN
ap-2008	1	39	smadar	smadar	NOUN
ap-2008	1	40	bresslera,∗	bresslera,∗	NOUN
ap-2008	1	41	,	,	PUNCT
ap-2008	1	42	giora	giora	PROPN
ap-2008	1	43	shaviva	shaviva	PROPN
ap-2008	1	44	,	,	PUNCT
ap-2008	1	45	nir	nir	PROPN
ap-2008	1	46	j	j	PROPN
ap-2008	1	47	shavivb	shavivb	VERB
ap-2008	1	48	a	a	DET
ap-2008	1	49	dept	dept	NOUN
ap-2008	1	50	.	.	PROPN
ap-2008	1	51	of	of	ADP
ap-2008	1	52	physics	physics	PROPN
ap-2008	1	53	,	,	PUNCT
ap-2008	1	54	israel	israel	PROPN
ap-2008	1	55	institute	institute	PROPN
ap-2008	1	56	of	of	ADP
ap-2008	1	57	technology	technology	PROPN
ap-2008	1	58	,	,	PUNCT
ap-2008	1	59	haifa	haifa	PROPN
ap-2008	1	60	32000	32000	NUM
ap-2008	1	61	,	,	PUNCT
ap-2008	1	62	israel	israel	PROPN
ap-2008	1	63	b	b	PROPN
ap-2008	1	64	racah	racah	PROPN
ap-2008	1	65	institute	institute	PROPN
ap-2008	1	66	of	of	ADP
ap-2008	1	67	theoretical	theoretical	ADJ
ap-2008	1	68	physics	physics	NOUN
ap-2008	1	69	,	,	PUNCT
ap-2008	1	70	the	the	DET
ap-2008	1	71	hebrew	hebrew	ADJ
ap-2008	1	72	university	university	NOUN
ap-2008	1	73	,	,	PUNCT
ap-2008	1	74	jerusalem	jerusalem	PROPN
ap-2008	1	75	91904	91904	NUM
ap-2008	1	76	,	,	PUNCT
ap-2008	1	77	israel	israel	PROPN
ap-2008	1	78	∗	∗	VERB
ap-2008	1	79	corresponding	correspond	VERB
ap-2008	1	80	author	author	NOUN
ap-2008	1	81	:	:	PUNCT
ap-2008	1	82	smadar@physics.technion.ac.il	smadar@physics.technion.ac.il	PROPN
ap-2008	1	83	abstract	abstract	PROPN
ap-2008	1	84	.	.	PUNCT
ap-2008	2	1	we	we	PRON
ap-2008	2	2	present	present	VERB
ap-2008	2	3	a	a	DET
ap-2008	2	4	radiative	radiative	ADJ
ap-2008	2	5	transfer	transfer	NOUN
ap-2008	2	6	model	model	NOUN
ap-2008	2	7	for	for	ADP
ap-2008	2	8	earth	earth	NOUN
ap-2008	2	9	-	-	PUNCT
ap-2008	2	10	like	like	ADP
ap-2008	2	11	-	-	PUNCT
ap-2008	2	12	planets	planet	NOUN
ap-2008	2	13	(	(	PUNCT
ap-2008	2	14	elp	elp	PROPN
ap-2008	2	15	)	)	PUNCT
ap-2008	2	16	.	.	PUNCT
ap-2008	3	1	the	the	DET
ap-2008	3	2	model	model	NOUN
ap-2008	3	3	allows	allow	VERB
ap-2008	3	4	the	the	DET
ap-2008	3	5	assessment	assessment	NOUN
ap-2008	3	6	of	of	ADP
ap-2008	3	7	the	the	DET
ap-2008	3	8	effect	effect	NOUN
ap-2008	3	9	of	of	ADP
ap-2008	3	10	a	a	DET
ap-2008	3	11	change	change	NOUN
ap-2008	3	12	in	in	ADP
ap-2008	3	13	the	the	DET
ap-2008	3	14	concentration	concentration	NOUN
ap-2008	3	15	of	of	ADP
ap-2008	3	16	an	an	DET
ap-2008	3	17	atmospheric	atmospheric	ADJ
ap-2008	3	18	component	component	NOUN
ap-2008	3	19	,	,	PUNCT
ap-2008	3	20	especially	especially	ADV
ap-2008	3	21	a	a	DET
ap-2008	3	22	greenhouse	greenhouse	NOUN
ap-2008	3	23	gas	gas	NOUN
ap-2008	3	24	(	(	PUNCT
ap-2008	3	25	ghg	ghg	PROPN
ap-2008	3	26	)	)	PUNCT
ap-2008	3	27	,	,	PUNCT
ap-2008	3	28	on	on	ADP
ap-2008	3	29	the	the	DET
ap-2008	3	30	surface	surface	NOUN
ap-2008	3	31	temperature	temperature	NOUN
ap-2008	3	32	of	of	ADP
ap-2008	3	33	a	a	DET
ap-2008	3	34	planet	planet	NOUN
ap-2008	3	35	.	.	PUNCT
ap-2008	4	1	the	the	DET
ap-2008	4	2	model	model	NOUN
ap-2008	4	3	is	be	AUX
ap-2008	4	4	based	base	VERB
ap-2008	4	5	on	on	ADP
ap-2008	4	6	the	the	DET
ap-2008	4	7	separation	separation	NOUN
ap-2008	4	8	between	between	ADP
ap-2008	4	9	the	the	DET
ap-2008	4	10	contribution	contribution	NOUN
ap-2008	4	11	of	of	ADP
ap-2008	4	12	the	the	DET
ap-2008	4	13	short	short	ADJ
ap-2008	4	14	wavelength	wavelength	NOUN
ap-2008	4	15	molecular	molecular	ADJ
ap-2008	4	16	absorption	absorption	NOUN
ap-2008	4	17	and	and	CCONJ
ap-2008	4	18	the	the	DET
ap-2008	4	19	long	long	ADJ
ap-2008	4	20	wavelength	wavelength	NOUN
ap-2008	4	21	one	one	NUM
ap-2008	4	22	.	.	PUNCT
ap-2008	5	1	a	a	DET
ap-2008	5	2	unique	unique	ADJ
ap-2008	5	3	feature	feature	NOUN
ap-2008	5	4	of	of	ADP
ap-2008	5	5	the	the	DET
ap-2008	5	6	model	model	NOUN
ap-2008	5	7	is	be	AUX
ap-2008	5	8	the	the	DET
ap-2008	5	9	condition	condition	NOUN
ap-2008	5	10	of	of	ADP
ap-2008	5	11	energy	energy	NOUN
ap-2008	5	12	conservation	conservation	NOUN
ap-2008	5	13	at	at	ADP
ap-2008	5	14	every	every	DET
ap-2008	5	15	point	point	NOUN
ap-2008	5	16	in	in	ADP
ap-2008	5	17	the	the	DET
ap-2008	5	18	atmosphere	atmosphere	NOUN
ap-2008	5	19	.	.	PUNCT
ap-2008	6	1	the	the	DET
ap-2008	6	2	radiative	radiative	ADJ
ap-2008	6	3	transfer	transfer	NOUN
ap-2008	6	4	equation	equation	NOUN
ap-2008	6	5	is	be	AUX
ap-2008	6	6	solved	solve	VERB
ap-2008	6	7	in	in	ADP
ap-2008	6	8	the	the	DET
ap-2008	6	9	two	two	NUM
ap-2008	6	10	stream	stream	NOUN
ap-2008	6	11	approximation	approximation	NOUN
ap-2008	6	12	without	without	ADP
ap-2008	6	13	assuming	assume	VERB
ap-2008	6	14	the	the	DET
ap-2008	6	15	existence	existence	NOUN
ap-2008	6	16	of	of	ADP
ap-2008	6	17	an	an	DET
ap-2008	6	18	lte	lte	NOUN
ap-2008	6	19	in	in	ADP
ap-2008	6	20	any	any	DET
ap-2008	6	21	wavelength	wavelength	NOUN
ap-2008	6	22	range	range	NOUN
ap-2008	6	23	.	.	PUNCT
ap-2008	7	1	the	the	DET
ap-2008	7	2	model	model	NOUN
ap-2008	7	3	allows	allow	VERB
ap-2008	7	4	us	we	PRON
ap-2008	7	5	to	to	PART
ap-2008	7	6	solve	solve	VERB
ap-2008	7	7	the	the	DET
ap-2008	7	8	simpson	simpson	PROPN
ap-2008	7	9	paradox	paradox	PROPN
ap-2008	7	10	,	,	PUNCT
ap-2008	7	11	whereby	whereby	SCONJ
ap-2008	7	12	the	the	DET
ap-2008	7	13	greenhouse	greenhouse	NOUN
ap-2008	7	14	effect	effect	NOUN
ap-2008	7	15	(	(	PUNCT
ap-2008	7	16	ghe	ghe	PROPN
ap-2008	7	17	)	)	PUNCT
ap-2008	7	18	has	have	VERB
ap-2008	7	19	no	no	DET
ap-2008	7	20	temperature	temperature	NOUN
ap-2008	7	21	limit	limit	NOUN
ap-2008	7	22	.	.	PUNCT
ap-2008	8	1	on	on	ADP
ap-2008	8	2	the	the	DET
ap-2008	8	3	contrary	contrary	NOUN
ap-2008	8	4	,	,	PUNCT
ap-2008	8	5	we	we	PRON
ap-2008	8	6	show	show	VERB
ap-2008	8	7	that	that	SCONJ
ap-2008	8	8	the	the	DET
ap-2008	8	9	temperature	temperature	NOUN
ap-2008	8	10	saturates	saturate	VERB
ap-2008	8	11	,	,	PUNCT
ap-2008	8	12	and	and	CCONJ
ap-2008	8	13	its	its	PRON
ap-2008	8	14	value	value	NOUN
ap-2008	8	15	depends	depend	VERB
ap-2008	8	16	primarily	primarily	ADV
ap-2008	8	17	on	on	ADP
ap-2008	8	18	the	the	DET
ap-2008	8	19	distance	distance	NOUN
ap-2008	8	20	of	of	ADP
ap-2008	8	21	the	the	DET
ap-2008	8	22	planet	planet	NOUN
ap-2008	8	23	from	from	ADP
ap-2008	8	24	the	the	DET
ap-2008	8	25	central	central	ADJ
ap-2008	8	26	star	star	NOUN
ap-2008	8	27	.	.	PUNCT
ap-2008	9	1	we	we	PRON
ap-2008	9	2	also	also	ADV
ap-2008	9	3	show	show	VERB
ap-2008	9	4	how	how	SCONJ
ap-2008	9	5	the	the	DET
ap-2008	9	6	relative	relative	ADJ
ap-2008	9	7	humidity	humidity	NOUN
ap-2008	9	8	affects	affect	VERB
ap-2008	9	9	the	the	DET
ap-2008	9	10	surface	surface	NOUN
ap-2008	9	11	temperature	temperature	NOUN
ap-2008	9	12	of	of	ADP
ap-2008	9	13	a	a	DET
ap-2008	9	14	planet	planet	NOUN
ap-2008	9	15	and	and	CCONJ
ap-2008	9	16	explain	explain	VERB
ap-2008	9	17	why	why	SCONJ
ap-2008	9	18	the	the	DET
ap-2008	9	19	effect	effect	NOUN
ap-2008	9	20	is	be	AUX
ap-2008	9	21	smaller	small	ADJ
ap-2008	9	22	than	than	ADP
ap-2008	9	23	the	the	DET
ap-2008	9	24	one	one	NUM
ap-2008	9	25	derived	derive	VERB
ap-2008	9	26	when	when	SCONJ
ap-2008	9	27	the	the	DET
ap-2008	9	28	above	above	ADJ
ap-2008	9	29	assumptions	assumption	NOUN
ap-2008	9	30	are	be	AUX
ap-2008	9	31	neglected	neglect	VERB
ap-2008	9	32	.	.	PUNCT
ap-2008	10	1	keywords	keyword	NOUN
ap-2008	10	2	:	:	PUNCT
ap-2008	10	3	greenhouse	greenhouse	NOUN
ap-2008	10	4	effect	effect	NOUN
ap-2008	10	5	,	,	PUNCT
ap-2008	10	6	radiative	radiative	ADJ
ap-2008	10	7	transfer	transfer	NOUN
ap-2008	10	8	,	,	PUNCT
ap-2008	10	9	earth	earth	NOUN
ap-2008	10	10	like	like	ADP
ap-2008	10	11	planets	planet	NOUN
ap-2008	10	12	,	,	PUNCT
ap-2008	10	13	surface	surface	NOUN
ap-2008	10	14	temperature	temperature	NOUN
ap-2008	10	15	.	.	PUNCT
ap-2008	11	1	1	1	X
ap-2008	11	2	.	.	X
ap-2008	11	3	introduction	introduction	NOUN
ap-2008	11	4	the	the	DET
ap-2008	11	5	influence	influence	NOUN
ap-2008	11	6	of	of	ADP
ap-2008	11	7	concentration	concentration	NOUN
ap-2008	11	8	changes	change	NOUN
ap-2008	11	9	of	of	ADP
ap-2008	11	10	atmospheric	atmospheric	ADJ
ap-2008	11	11	gases	gas	NOUN
ap-2008	11	12	on	on	ADP
ap-2008	11	13	the	the	DET
ap-2008	11	14	surface	surface	NOUN
ap-2008	11	15	temperature	temperature	NOUN
ap-2008	11	16	of	of	ADP
ap-2008	11	17	planetary	planetary	ADJ
ap-2008	11	18	atmospheres	atmosphere	NOUN
ap-2008	11	19	is	be	AUX
ap-2008	11	20	a	a	DET
ap-2008	11	21	leading	lead	VERB
ap-2008	11	22	thread	thread	NOUN
ap-2008	11	23	in	in	ADP
ap-2008	11	24	current	current	ADJ
ap-2008	11	25	planetary	planetary	ADJ
ap-2008	11	26	research	research	NOUN
ap-2008	11	27	[	[	X
ap-2008	11	28	7	7	NUM
ap-2008	11	29	]	]	PUNCT
ap-2008	11	30	.	.	PUNCT
ap-2008	12	1	due	due	ADP
ap-2008	12	2	to	to	ADP
ap-2008	12	3	the	the	DET
ap-2008	12	4	importance	importance	NOUN
ap-2008	12	5	of	of	ADP
ap-2008	12	6	the	the	DET
ap-2008	12	7	problem	problem	NOUN
ap-2008	12	8	,	,	PUNCT
ap-2008	12	9	it	it	PRON
ap-2008	12	10	is	be	AUX
ap-2008	12	11	desirable	desirable	ADJ
ap-2008	12	12	to	to	PART
ap-2008	12	13	have	have	VERB
ap-2008	12	14	a	a	DET
ap-2008	12	15	model	model	NOUN
ap-2008	12	16	which	which	PRON
ap-2008	12	17	can	can	AUX
ap-2008	12	18	predict	predict	VERB
ap-2008	12	19	correctly	correctly	ADV
ap-2008	12	20	the	the	DET
ap-2008	12	21	greenhouse	greenhouse	NOUN
ap-2008	12	22	effect	effect	NOUN
ap-2008	12	23	and	and	CCONJ
ap-2008	12	24	its	its	PRON
ap-2008	12	25	dependence	dependence	NOUN
ap-2008	12	26	on	on	ADP
ap-2008	12	27	various	various	ADJ
ap-2008	12	28	changes	change	NOUN
ap-2008	12	29	,	,	PUNCT
ap-2008	12	30	while	while	SCONJ
ap-2008	12	31	at	at	ADP
ap-2008	12	32	the	the	DET
ap-2008	12	33	same	same	ADJ
ap-2008	12	34	time	time	NOUN
ap-2008	12	35	being	be	AUX
ap-2008	12	36	sufficiently	sufficiently	ADV
ap-2008	12	37	simple	simple	ADJ
ap-2008	12	38	to	to	PART
ap-2008	12	39	provide	provide	VERB
ap-2008	12	40	a	a	DET
ap-2008	12	41	tool	tool	NOUN
ap-2008	12	42	to	to	PART
ap-2008	12	43	understand	understand	VERB
ap-2008	12	44	the	the	DET
ap-2008	12	45	details	detail	NOUN
ap-2008	12	46	of	of	ADP
ap-2008	12	47	the	the	DET
ap-2008	12	48	radiative	radiative	ADJ
ap-2008	12	49	transfer	transfer	NOUN
ap-2008	12	50	physical	physical	ADJ
ap-2008	12	51	processes	process	NOUN
ap-2008	12	52	affecting	affect	VERB
ap-2008	12	53	this	this	DET
ap-2008	12	54	problem	problem	NOUN
ap-2008	12	55	.	.	PUNCT
ap-2008	13	1	we	we	PRON
ap-2008	13	2	devised	devise	VERB
ap-2008	13	3	such	such	DET
ap-2008	13	4	a	a	DET
ap-2008	13	5	model	model	NOUN
ap-2008	13	6	.	.	PUNCT
ap-2008	14	1	the	the	DET
ap-2008	14	2	model	model	NOUN
ap-2008	14	3	consists	consist	VERB
ap-2008	14	4	of	of	ADP
ap-2008	14	5	two	two	NUM
ap-2008	14	6	parts	part	NOUN
ap-2008	14	7	–	–	PUNCT
ap-2008	14	8	radiative	radiative	ADJ
ap-2008	14	9	transfer	transfer	NOUN
ap-2008	14	10	and	and	CCONJ
ap-2008	14	11	the	the	DET
ap-2008	14	12	molecular	molecular	ADJ
ap-2008	14	13	absorption	absorption	NOUN
ap-2008	14	14	dependent	dependent	ADJ
ap-2008	14	15	optical	optical	ADJ
ap-2008	14	16	depth	depth	NOUN
ap-2008	14	17	.	.	PUNCT
ap-2008	15	1	we	we	PRON
ap-2008	15	2	find	find	VERB
ap-2008	15	3	that	that	SCONJ
ap-2008	15	4	the	the	DET
ap-2008	15	5	minimum	minimum	ADJ
ap-2008	15	6	number	number	NOUN
ap-2008	15	7	of	of	ADP
ap-2008	15	8	bands	band	NOUN
ap-2008	15	9	needed	need	VERB
ap-2008	15	10	for	for	ADP
ap-2008	15	11	a	a	DET
ap-2008	15	12	model	model	NOUN
ap-2008	15	13	to	to	PART
ap-2008	15	14	be	be	AUX
ap-2008	15	15	faithful	faithful	ADJ
ap-2008	15	16	to	to	ADP
ap-2008	15	17	the	the	DET
ap-2008	15	18	underlying	underlie	VERB
ap-2008	15	19	physics	physics	NOUN
ap-2008	15	20	,	,	PUNCT
ap-2008	15	21	is	be	AUX
ap-2008	15	22	a	a	DET
ap-2008	15	23	two	two	NUM
ap-2008	15	24	-	-	PUNCT
ap-2008	15	25	band	band	NOUN
ap-2008	15	26	semi	semi	ADJ
ap-2008	15	27	-	-	ADJ
ap-2008	15	28	grey	grey	ADJ
ap-2008	15	29	model	model	NOUN
ap-2008	15	30	.	.	PUNCT
ap-2008	16	1	consequently	consequently	ADV
ap-2008	16	2	,	,	PUNCT
ap-2008	16	3	we	we	PRON
ap-2008	16	4	first	first	ADV
ap-2008	16	5	solve	solve	VERB
ap-2008	16	6	the	the	DET
ap-2008	16	7	radiative	radiative	ADJ
ap-2008	16	8	transfer	transfer	NOUN
ap-2008	16	9	problem	problem	NOUN
ap-2008	16	10	in	in	ADP
ap-2008	16	11	terms	term	NOUN
ap-2008	16	12	of	of	ADP
ap-2008	16	13	two	two	NUM
ap-2008	16	14	optical	optical	ADJ
ap-2008	16	15	depths	depth	NOUN
ap-2008	16	16	in	in	ADP
ap-2008	16	17	the	the	DET
ap-2008	16	18	two	two	NUM
ap-2008	16	19	chosen	choose	VERB
ap-2008	16	20	bands	band	NOUN
ap-2008	16	21	,	,	PUNCT
ap-2008	16	22	chosen	choose	VERB
ap-2008	16	23	in	in	ADP
ap-2008	16	24	such	such	DET
ap-2008	16	25	a	a	DET
ap-2008	16	26	way	way	NOUN
ap-2008	16	27	as	as	SCONJ
ap-2008	16	28	to	to	PART
ap-2008	16	29	provide	provide	VERB
ap-2008	16	30	a	a	DET
ap-2008	16	31	faithful	faithful	ADJ
ap-2008	16	32	representation	representation	NOUN
ap-2008	16	33	of	of	ADP
ap-2008	16	34	the	the	DET
ap-2008	16	35	underlying	underlie	VERB
ap-2008	16	36	radiative	radiative	ADJ
ap-2008	16	37	transfer	transfer	NOUN
ap-2008	16	38	.	.	PUNCT
ap-2008	17	1	we	we	PRON
ap-2008	17	2	denote	denote	VERB
ap-2008	17	3	the	the	DET
ap-2008	17	4	two	two	NUM
ap-2008	17	5	bands	band	NOUN
ap-2008	17	6	by	by	ADP
ap-2008	17	7	“	"	PUNCT
ap-2008	17	8	vis	vis	X
ap-2008	17	9	”	"	PUNCT
ap-2008	17	10	and	and	CCONJ
ap-2008	17	11	“	"	PUNCT
ap-2008	17	12	fir	fir	NOUN
ap-2008	17	13	”	"	PUNCT
ap-2008	17	14	and	and	CCONJ
ap-2008	17	15	we	we	PRON
ap-2008	17	16	will	will	AUX
ap-2008	17	17	specify	specify	VERB
ap-2008	17	18	them	they	PRON
ap-2008	17	19	shortly	shortly	ADV
ap-2008	17	20	.	.	PUNCT
ap-2008	18	1	the	the	DET
ap-2008	18	2	radiative	radiative	ADJ
ap-2008	18	3	transfer	transfer	NOUN
ap-2008	18	4	equation	equation	NOUN
ap-2008	18	5	is	be	AUX
ap-2008	18	6	then	then	ADV
ap-2008	18	7	solved	solve	VERB
ap-2008	18	8	in	in	ADP
ap-2008	18	9	terms	term	NOUN
ap-2008	18	10	of	of	ADP
ap-2008	18	11	the	the	DET
ap-2008	18	12	optical	optical	ADJ
ap-2008	18	13	depths	depth	NOUN
ap-2008	18	14	τvis	τvis	NOUN
ap-2008	18	15	and	and	CCONJ
ap-2008	18	16	τfir	τfir	VERB
ap-2008	18	17	to	to	PART
ap-2008	18	18	yield	yield	VERB
ap-2008	18	19	a	a	DET
ap-2008	18	20	universal	universal	ADJ
ap-2008	18	21	function	function	NOUN
ap-2008	18	22	tsurf(τvis	tsurf(τvis	PROPN
ap-2008	18	23	,	,	PUNCT
ap-2008	18	24	τfir	τfir	NOUN
ap-2008	18	25	)	)	PUNCT
ap-2008	18	26	.	.	PUNCT
ap-2008	19	1	as	as	SCONJ
ap-2008	19	2	the	the	DET
ap-2008	19	3	solution	solution	NOUN
ap-2008	19	4	is	be	AUX
ap-2008	19	5	found	find	VERB
ap-2008	19	6	in	in	ADP
ap-2008	19	7	terms	term	NOUN
ap-2008	19	8	of	of	ADP
ap-2008	19	9	dimensionless	dimensionless	NOUN
ap-2008	19	10	quantities	quantity	NOUN
ap-2008	19	11	,	,	PUNCT
ap-2008	19	12	it	it	PRON
ap-2008	19	13	is	be	AUX
ap-2008	19	14	universal	universal	ADJ
ap-2008	19	15	and	and	CCONJ
ap-2008	19	16	does	do	AUX
ap-2008	19	17	not	not	PART
ap-2008	19	18	depend	depend	VERB
ap-2008	19	19	on	on	ADP
ap-2008	19	20	many	many	ADJ
ap-2008	19	21	of	of	ADP
ap-2008	19	22	the	the	DET
ap-2008	19	23	planetary	planetary	ADJ
ap-2008	19	24	parameters	parameter	NOUN
ap-2008	19	25	such	such	ADJ
ap-2008	19	26	as	as	ADP
ap-2008	19	27	its	its	PRON
ap-2008	19	28	mass	mass	NOUN
ap-2008	19	29	or	or	CCONJ
ap-2008	19	30	specific	specific	ADJ
ap-2008	19	31	composition	composition	NOUN
ap-2008	19	32	of	of	ADP
ap-2008	19	33	the	the	DET
ap-2008	19	34	atmosphere	atmosphere	NOUN
ap-2008	19	35	.	.	PUNCT
ap-2008	20	1	once	once	SCONJ
ap-2008	20	2	we	we	PRON
ap-2008	20	3	obtain	obtain	VERB
ap-2008	20	4	the	the	DET
ap-2008	20	5	universal	universal	ADJ
ap-2008	20	6	solution	solution	NOUN
ap-2008	20	7	to	to	ADP
ap-2008	20	8	the	the	DET
ap-2008	20	9	radiative	radiative	ADJ
ap-2008	20	10	transfer	transfer	NOUN
ap-2008	20	11	problem	problem	NOUN
ap-2008	20	12	,	,	PUNCT
ap-2008	20	13	we	we	PRON
ap-2008	20	14	calculate	calculate	VERB
ap-2008	20	15	the	the	DET
ap-2008	20	16	optical	optical	ADJ
ap-2008	20	17	depths	depth	NOUN
ap-2008	20	18	τvis	τvis	NOUN
ap-2008	20	19	and	and	CCONJ
ap-2008	20	20	τfir	τfir	NOUN
ap-2008	20	21	from	from	ADP
ap-2008	20	22	the	the	DET
ap-2008	20	23	basic	basic	ADJ
ap-2008	20	24	molecular	molecular	ADJ
ap-2008	20	25	absorption	absorption	NOUN
ap-2008	20	26	data	datum	NOUN
ap-2008	20	27	.	.	PUNCT
ap-2008	21	1	as	as	SCONJ
ap-2008	21	2	the	the	DET
ap-2008	21	3	molecular	molecular	ADJ
ap-2008	21	4	absorption	absorption	NOUN
ap-2008	21	5	is	be	AUX
ap-2008	21	6	predominantly	predominantly	ADV
ap-2008	21	7	line	line	NOUN
ap-2008	21	8	absorption	absorption	NOUN
ap-2008	21	9	with	with	ADP
ap-2008	21	10	wide	wide	ADJ
ap-2008	21	11	windows	window	NOUN
ap-2008	21	12	,	,	PUNCT
ap-2008	21	13	special	special	ADJ
ap-2008	21	14	care	care	NOUN
ap-2008	21	15	must	must	AUX
ap-2008	21	16	be	be	AUX
ap-2008	21	17	exercised	exercise	VERB
ap-2008	21	18	in	in	ADP
ap-2008	21	19	devising	devise	VERB
ap-2008	21	20	the	the	DET
ap-2008	21	21	algorithm	algorithm	NOUN
ap-2008	21	22	which	which	PRON
ap-2008	21	23	converts	convert	VERB
ap-2008	21	24	the	the	DET
ap-2008	21	25	molecular	molecular	ADJ
ap-2008	21	26	absorption	absorption	NOUN
ap-2008	21	27	coefficients	coefficient	NOUN
ap-2008	21	28	κ(λ	κ(λ	VERB
ap-2008	21	29	)	)	PUNCT
ap-2008	21	30	into	into	ADP
ap-2008	21	31	the	the	DET
ap-2008	21	32	above	above	ADJ
ap-2008	21	33	optical	optical	ADJ
ap-2008	21	34	depths	depth	NOUN
ap-2008	21	35	.	.	PUNCT
ap-2008	22	1	with	with	ADP
ap-2008	22	2	the	the	DET
ap-2008	22	3	universal	universal	ADJ
ap-2008	22	4	radiative	radiative	ADJ
ap-2008	22	5	transfer	transfer	NOUN
ap-2008	22	6	solution	solution	NOUN
ap-2008	22	7	and	and	CCONJ
ap-2008	22	8	the	the	DET
ap-2008	22	9	optical	optical	ADJ
ap-2008	22	10	depths	depth	NOUN
ap-2008	22	11	,	,	PUNCT
ap-2008	22	12	a	a	DET
ap-2008	22	13	change	change	NOUN
ap-2008	22	14	δx	δx	NOUN
ap-2008	22	15	in	in	ADP
ap-2008	22	16	the	the	DET
ap-2008	22	17	concentration	concentration	NOUN
ap-2008	22	18	of	of	ADP
ap-2008	22	19	a	a	DET
ap-2008	22	20	certain	certain	ADJ
ap-2008	22	21	gas	gas	NOUN
ap-2008	22	22	yields	yield	NOUN
ap-2008	22	23	a	a	DET
ap-2008	22	24	change	change	NOUN
ap-2008	22	25	δt	δt	NOUN
ap-2008	22	26	according	accord	VERB
ap-2008	22	27	to	to	ADP
ap-2008	22	28	:	:	PUNCT
ap-2008	22	29	∂tsurf	∂tsurf	ADP
ap-2008	22	30	∂x	∂x	PROPN
ap-2008	22	31	=	=	PUNCT
ap-2008	22	32	∂tsurf	∂tsurf	ADP
ap-2008	22	33	∂τvis	∂τvis	PRON
ap-2008	22	34	∂τvis	∂τvis	PROPN
ap-2008	22	35	∂x	∂x	PROPN
ap-2008	22	36	+	+	CCONJ
ap-2008	22	37	∂tsurf	∂tsurf	ADP
ap-2008	22	38	∂τfir	∂τfir	ADJ
ap-2008	22	39	∂τfir	∂τfir	PROPN
ap-2008	22	40	∂x	∂x	PROPN
ap-2008	22	41	,	,	PUNCT
ap-2008	22	42	(	(	PUNCT
ap-2008	22	43	1	1	X
ap-2008	22	44	)	)	PUNCT
ap-2008	22	45	where	where	SCONJ
ap-2008	22	46	the	the	DET
ap-2008	22	47	optical	optical	ADJ
ap-2008	22	48	depths	depth	NOUN
ap-2008	22	49	τvis	τvis	NOUN
ap-2008	22	50	and	and	CCONJ
ap-2008	22	51	τfir	τfir	NOUN
ap-2008	22	52	will	will	AUX
ap-2008	22	53	be	be	AUX
ap-2008	22	54	defined	define	VERB
ap-2008	22	55	shortly	shortly	ADV
ap-2008	22	56	.	.	PUNCT
ap-2008	23	1	our	our	PRON
ap-2008	23	2	study	study	NOUN
ap-2008	23	3	is	be	AUX
ap-2008	23	4	unique	unique	ADJ
ap-2008	23	5	is	be	AUX
ap-2008	23	6	several	several	ADJ
ap-2008	23	7	ways	way	NOUN
ap-2008	23	8	.	.	PUNCT
ap-2008	24	1	in	in	ADP
ap-2008	24	2	particular	particular	ADJ
ap-2008	24	3	,	,	PUNCT
ap-2008	24	4	we	we	PRON
ap-2008	24	5	define	define	VERB
ap-2008	24	6	the	the	DET
ap-2008	24	7	two	two	NUM
ap-2008	24	8	wavelength	wavelength	NOUN
ap-2008	24	9	bands	band	NOUN
ap-2008	24	10	according	accord	VERB
ap-2008	24	11	to	to	ADP
ap-2008	24	12	physical	physical	ADJ
ap-2008	24	13	properties	property	NOUN
ap-2008	24	14	.	.	PUNCT
ap-2008	25	1	since	since	SCONJ
ap-2008	25	2	the	the	DET
ap-2008	25	3	original	original	ADJ
ap-2008	25	4	treatment	treatment	NOUN
ap-2008	25	5	by	by	ADP
ap-2008	25	6	simpson	simpson	NOUN
ap-2008	26	1	[	[	X
ap-2008	26	2	10	10	NUM
ap-2008	26	3	,	,	PUNCT
ap-2008	26	4	11	11	NUM
ap-2008	26	5	]	]	PUNCT
ap-2008	26	6	,	,	PUNCT
ap-2008	26	7	the	the	DET
ap-2008	26	8	semi	semi	ADJ
ap-2008	26	9	-	-	ADJ
ap-2008	26	10	grey	grey	ADJ
ap-2008	26	11	model	model	NOUN
ap-2008	26	12	has	have	AUX
ap-2008	26	13	only	only	ADV
ap-2008	26	14	been	be	AUX
ap-2008	26	15	applied	apply	VERB
ap-2008	26	16	to	to	ADP
ap-2008	26	17	rt	rt	PROPN
ap-2008	26	18	problems	problem	NOUN
ap-2008	26	19	by	by	ADP
ap-2008	26	20	thomas	thomas	PROPN
ap-2008	26	21	and	and	CCONJ
ap-2008	26	22	stamnes	stamne	NOUN
ap-2008	26	23	[	[	X
ap-2008	26	24	12	12	NUM
ap-2008	26	25	]	]	PUNCT
ap-2008	26	26	and	and	CCONJ
ap-2008	26	27	practically	practically	ADV
ap-2008	26	28	no	no	DET
ap-2008	26	29	other	other	ADJ
ap-2008	26	30	similar	similar	ADJ
ap-2008	26	31	distinction	distinction	NOUN
ap-2008	26	32	was	be	AUX
ap-2008	26	33	made	make	VERB
ap-2008	26	34	.	.	PUNCT
ap-2008	27	1	it	it	PRON
ap-2008	27	2	is	be	AUX
ap-2008	27	3	also	also	ADV
ap-2008	27	4	crucial	crucial	ADJ
ap-2008	27	5	to	to	PART
ap-2008	27	6	note	note	VERB
ap-2008	27	7	the	the	DET
ap-2008	27	8	fundamental	fundamental	ADJ
ap-2008	27	9	difference	difference	NOUN
ap-2008	27	10	between	between	ADP
ap-2008	27	11	stellar	stellar	ADJ
ap-2008	27	12	and	and	CCONJ
ap-2008	27	13	planetary	planetary	ADJ
ap-2008	27	14	atmospheres	atmosphere	NOUN
ap-2008	27	15	.	.	PUNCT
ap-2008	28	1	the	the	DET
ap-2008	28	2	molecular	molecular	ADJ
ap-2008	28	3	absorption	absorption	NOUN
ap-2008	28	4	,	,	PUNCT
ap-2008	28	5	with	with	ADP
ap-2008	28	6	its	its	PRON
ap-2008	28	7	large	large	ADJ
ap-2008	28	8	variation	variation	NOUN
ap-2008	28	9	in	in	ADP
ap-2008	28	10	wavelength	wavelength	NOUN
ap-2008	28	11	,	,	PUNCT
ap-2008	28	12	and	and	CCONJ
ap-2008	28	13	the	the	DET
ap-2008	28	14	total	total	ADJ
ap-2008	28	15	optical	optical	ADJ
ap-2008	28	16	depth	depth	NOUN
ap-2008	28	17	of	of	ADP
ap-2008	28	18	planetary	planetary	ADJ
ap-2008	28	19	atmospheres	atmosphere	NOUN
ap-2008	28	20	,	,	PUNCT
ap-2008	28	21	are	be	AUX
ap-2008	28	22	such	such	ADJ
ap-2008	28	23	that	that	SCONJ
ap-2008	28	24	the	the	DET
ap-2008	28	25	atmosphere	atmosphere	NOUN
ap-2008	28	26	contains	contain	VERB
ap-2008	28	27	spectral	spectral	ADJ
ap-2008	28	28	windows	window	NOUN
ap-2008	28	29	through	through	ADP
ap-2008	28	30	which	which	PRON
ap-2008	28	31	the	the	DET
ap-2008	28	32	planetary	planetary	ADJ
ap-2008	28	33	radiation	radiation	NOUN
ap-2008	28	34	can	can	AUX
ap-2008	28	35	leak	leak	VERB
ap-2008	28	36	to	to	ADP
ap-2008	28	37	space	space	NOUN
ap-2008	28	38	almost	almost	ADV
ap-2008	28	39	freely	freely	ADV
ap-2008	28	40	.	.	PUNCT
ap-2008	29	1	such	such	DET
ap-2008	29	2	a	a	DET
ap-2008	29	3	phenomenon	phenomenon	NOUN
ap-2008	29	4	does	do	AUX
ap-2008	29	5	not	not	PART
ap-2008	29	6	exist	exist	VERB
ap-2008	29	7	in	in	ADP
ap-2008	29	8	stellar	stellar	ADJ
ap-2008	29	9	atmospheres	atmosphere	NOUN
ap-2008	29	10	which	which	PRON
ap-2008	29	11	are	be	AUX
ap-2008	29	12	hotter	hot	ADJ
ap-2008	29	13	and	and	CCONJ
ap-2008	29	14	in	in	ADP
ap-2008	29	15	which	which	PRON
ap-2008	29	16	the	the	DET
ap-2008	29	17	absorption	absorption	NOUN
ap-2008	29	18	is	be	AUX
ap-2008	29	19	due	due	ADJ
ap-2008	29	20	to	to	ADP
ap-2008	29	21	ions	ion	NOUN
ap-2008	29	22	.	.	PUNCT
ap-2008	30	1	consequently	consequently	ADV
ap-2008	30	2	,	,	PUNCT
ap-2008	30	3	the	the	DET
ap-2008	30	4	assumption	assumption	NOUN
ap-2008	30	5	of	of	ADP
ap-2008	30	6	lte	lte	PROPN
ap-2008	30	7	,	,	PUNCT
ap-2008	30	8	frequently	frequently	ADV
ap-2008	30	9	implemented	implement	VERB
ap-2008	30	10	in	in	ADP
ap-2008	30	11	stellar	stellar	ADJ
ap-2008	30	12	atmospheres	atmosphere	NOUN
ap-2008	30	13	,	,	PUNCT
ap-2008	30	14	is	be	AUX
ap-2008	30	15	not	not	PART
ap-2008	30	16	really	really	ADV
ap-2008	30	17	justified	justify	VERB
ap-2008	30	18	in	in	ADP
ap-2008	30	19	planetary	planetary	ADJ
ap-2008	30	20	832	832	NUM
ap-2008	30	21	http://dx.doi.org/10.14311/ap.2013.53.0832	http://dx.doi.org/10.14311/ap.2013.53.0832	ADP
ap-2008	30	22	http://ojs.cvut.cz/ojs/index.php/ap	http://ojs.cvut.cz/ojs/index.php/ap	PROPN
ap-2008	30	23	vol	vol	NOUN
ap-2008	30	24	.	.	PUNCT
ap-2008	31	1	53	53	NUM
ap-2008	31	2	supplement/2013	supplement/2013	VERB
ap-2008	31	3	the	the	DET
ap-2008	31	4	sensitivity	sensitivity	NOUN
ap-2008	31	5	of	of	ADP
ap-2008	31	6	the	the	DET
ap-2008	31	7	greenhouse	greenhouse	NOUN
ap-2008	31	8	effect	effect	NOUN
ap-2008	31	9	atmospheres	atmosphere	VERB
ap-2008	31	10	.	.	PUNCT
ap-2008	32	1	note	note	VERB
ap-2008	32	2	that	that	SCONJ
ap-2008	32	3	the	the	DET
ap-2008	32	4	assumption	assumption	NOUN
ap-2008	32	5	of	of	ADP
ap-2008	32	6	lte	lte	PROPN
ap-2008	32	7	is	be	AUX
ap-2008	32	8	usually	usually	ADV
ap-2008	32	9	referred	refer	VERB
ap-2008	32	10	to	to	ADP
ap-2008	32	11	the	the	DET
ap-2008	32	12	distribution	distribution	NOUN
ap-2008	32	13	of	of	ADP
ap-2008	32	14	the	the	DET
ap-2008	32	15	electrons	electron	NOUN
ap-2008	32	16	in	in	ADP
ap-2008	32	17	the	the	DET
ap-2008	32	18	various	various	ADJ
ap-2008	32	19	levels	level	NOUN
ap-2008	32	20	and	and	CCONJ
ap-2008	32	21	to	to	ADP
ap-2008	32	22	the	the	DET
ap-2008	32	23	distribution	distribution	NOUN
ap-2008	32	24	of	of	ADP
ap-2008	32	25	the	the	DET
ap-2008	32	26	radiation	radiation	NOUN
ap-2008	32	27	field	field	NOUN
ap-2008	32	28	with	with	ADP
ap-2008	32	29	wavelength	wavelength	NOUN
ap-2008	32	30	.	.	PUNCT
ap-2008	33	1	many	many	ADJ
ap-2008	33	2	treatments	treatment	NOUN
ap-2008	33	3	treat	treat	VERB
ap-2008	33	4	the	the	DET
ap-2008	33	5	visible	visible	ADJ
ap-2008	33	6	as	as	ADP
ap-2008	33	7	a	a	DET
ap-2008	33	8	heat	heat	NOUN
ap-2008	33	9	source	source	NOUN
ap-2008	33	10	and	and	CCONJ
ap-2008	33	11	the	the	DET
ap-2008	33	12	ir	ir	NOUN
ap-2008	33	13	in	in	ADP
ap-2008	33	14	the	the	DET
ap-2008	33	15	diffusion	diffusion	NOUN
ap-2008	33	16	approximation	approximation	NOUN
ap-2008	33	17	.	.	PUNCT
ap-2008	34	1	we	we	PRON
ap-2008	34	2	assume	assume	VERB
ap-2008	34	3	that	that	SCONJ
ap-2008	34	4	the	the	DET
ap-2008	34	5	electrons	electron	NOUN
ap-2008	34	6	satisfy	satisfy	VERB
ap-2008	34	7	the	the	DET
ap-2008	34	8	boltzmann	boltzmann	PROPN
ap-2008	34	9	distribution	distribution	NOUN
ap-2008	34	10	but	but	CCONJ
ap-2008	34	11	we	we	PRON
ap-2008	34	12	do	do	AUX
ap-2008	34	13	not	not	PART
ap-2008	34	14	assume	assume	VERB
ap-2008	34	15	that	that	SCONJ
ap-2008	34	16	the	the	DET
ap-2008	34	17	radiation	radiation	NOUN
ap-2008	34	18	field	field	NOUN
ap-2008	34	19	is	be	AUX
ap-2008	34	20	planckian	planckian	ADJ
ap-2008	34	21	.	.	PUNCT
ap-2008	35	1	in	in	ADP
ap-2008	35	2	this	this	DET
ap-2008	35	3	sense	sense	NOUN
ap-2008	35	4	,	,	PUNCT
ap-2008	35	5	the	the	DET
ap-2008	35	6	radiation	radiation	NOUN
ap-2008	35	7	field	field	NOUN
ap-2008	35	8	in	in	ADP
ap-2008	35	9	illuminated	illuminated	ADJ
ap-2008	35	10	planetary	planetary	ADJ
ap-2008	35	11	atmospheres	atmosphere	NOUN
ap-2008	35	12	is	be	AUX
ap-2008	35	13	not	not	PART
ap-2008	35	14	in	in	ADP
ap-2008	35	15	lte	lte	PROPN
ap-2008	35	16	and	and	CCONJ
ap-2008	35	17	it	it	PRON
ap-2008	35	18	is	be	AUX
ap-2008	35	19	improper	improper	ADJ
ap-2008	35	20	to	to	PART
ap-2008	35	21	assume	assume	VERB
ap-2008	35	22	that	that	SCONJ
ap-2008	35	23	f	f	PROPN
ap-2008	35	24	=	=	SYM
ap-2008	35	25	∇b(t	∇b(t	PROPN
ap-2008	35	26	)	)	PUNCT
ap-2008	35	27	where	where	SCONJ
ap-2008	35	28	f	f	PROPN
ap-2008	35	29	is	be	AUX
ap-2008	35	30	the	the	DET
ap-2008	35	31	radiation	radiation	NOUN
ap-2008	35	32	flux	flux	NOUN
ap-2008	35	33	.	.	PUNCT
ap-2008	36	1	separate	separate	ADJ
ap-2008	36	2	treatment	treatment	NOUN
ap-2008	36	3	of	of	ADP
ap-2008	36	4	the	the	DET
ap-2008	36	5	radiative	radiative	ADJ
ap-2008	36	6	transfer	transfer	NOUN
ap-2008	36	7	in	in	ADP
ap-2008	36	8	the	the	DET
ap-2008	36	9	visible	visible	ADJ
ap-2008	36	10	and	and	CCONJ
ap-2008	36	11	infrared	infrared	ADJ
ap-2008	36	12	was	be	AUX
ap-2008	36	13	already	already	ADV
ap-2008	36	14	carried	carry	VERB
ap-2008	36	15	out	out	ADP
ap-2008	36	16	in	in	ADP
ap-2008	36	17	the	the	DET
ap-2008	36	18	past	past	NOUN
ap-2008	36	19	(	(	PUNCT
ap-2008	36	20	cf	cf	NOUN
ap-2008	36	21	.	.	PUNCT
ap-2008	37	1	[	[	X
ap-2008	37	2	12	12	NUM
ap-2008	37	3	,	,	PUNCT
ap-2008	37	4	section	section	NOUN
ap-2008	37	5	12.3	12.3	NUM
ap-2008	37	6	]	]	PUNCT
ap-2008	37	7	)	)	PUNCT
ap-2008	37	8	.	.	PUNCT
ap-2008	38	1	our	our	PRON
ap-2008	38	2	treatment	treatment	NOUN
ap-2008	38	3	differs	differ	VERB
ap-2008	38	4	in	in	ADP
ap-2008	38	5	several	several	ADJ
ap-2008	38	6	points	point	NOUN
ap-2008	38	7	:	:	PUNCT
ap-2008	38	8	we	we	PRON
ap-2008	38	9	impose	impose	VERB
ap-2008	38	10	the	the	DET
ap-2008	38	11	energy	energy	NOUN
ap-2008	38	12	conservation	conservation	NOUN
ap-2008	38	13	at	at	ADP
ap-2008	38	14	each	each	DET
ap-2008	38	15	layer	layer	NOUN
ap-2008	38	16	,	,	PUNCT
ap-2008	38	17	we	we	PRON
ap-2008	38	18	redefine	redefine	VERB
ap-2008	38	19	the	the	DET
ap-2008	38	20	absorption	absorption	NOUN
ap-2008	38	21	coefficients	coefficient	NOUN
ap-2008	38	22	,	,	PUNCT
ap-2008	38	23	we	we	PRON
ap-2008	38	24	apply	apply	VERB
ap-2008	38	25	the	the	DET
ap-2008	38	26	radiative	radiative	ADJ
ap-2008	38	27	transfer	transfer	NOUN
ap-2008	38	28	and	and	CCONJ
ap-2008	38	29	not	not	PART
ap-2008	38	30	the	the	DET
ap-2008	38	31	diffusion	diffusion	NOUN
ap-2008	38	32	approximation	approximation	NOUN
ap-2008	38	33	,	,	PUNCT
ap-2008	38	34	and	and	CCONJ
ap-2008	38	35	we	we	PRON
ap-2008	38	36	find	find	VERB
ap-2008	38	37	the	the	DET
ap-2008	38	38	temperature	temperature	NOUN
ap-2008	38	39	feedback	feedback	NOUN
ap-2008	38	40	directly	directly	ADV
ap-2008	38	41	from	from	ADP
ap-2008	38	42	the	the	DET
ap-2008	38	43	radiative	radiative	ADJ
ap-2008	38	44	equation	equation	NOUN
ap-2008	38	45	and	and	CCONJ
ap-2008	38	46	not	not	PART
ap-2008	38	47	from	from	ADP
ap-2008	38	48	the	the	DET
ap-2008	38	49	diffusion	diffusion	NOUN
ap-2008	38	50	approximation	approximation	NOUN
ap-2008	38	51	for	for	ADP
ap-2008	38	52	the	the	DET
ap-2008	38	53	far	far	ADV
ap-2008	38	54	infrared	infrared	ADJ
ap-2008	38	55	part	part	NOUN
ap-2008	38	56	of	of	ADP
ap-2008	38	57	the	the	DET
ap-2008	38	58	spectrum	spectrum	NOUN
ap-2008	38	59	.	.	PUNCT
ap-2008	39	1	2	2	X
ap-2008	39	2	.	.	X
ap-2008	39	3	basic	basic	ADJ
ap-2008	39	4	assumptions	assumption	NOUN
ap-2008	39	5	we	we	PRON
ap-2008	39	6	show	show	VERB
ap-2008	39	7	in	in	ADP
ap-2008	39	8	fig	fig	NOUN
ap-2008	39	9	.	.	PUNCT
ap-2008	40	1	1	1	NUM
ap-2008	40	2	the	the	DET
ap-2008	40	3	specific	specific	ADJ
ap-2008	40	4	intensities	intensity	NOUN
ap-2008	40	5	of	of	ADP
ap-2008	40	6	the	the	DET
ap-2008	40	7	insolating	insolate	VERB
ap-2008	40	8	star	star	NOUN
ap-2008	40	9	and	and	CCONJ
ap-2008	40	10	the	the	DET
ap-2008	40	11	thermal	thermal	ADJ
ap-2008	40	12	emission	emission	NOUN
ap-2008	40	13	of	of	ADP
ap-2008	40	14	the	the	DET
ap-2008	40	15	planet	planet	NOUN
ap-2008	40	16	.	.	PUNCT
ap-2008	41	1	we	we	PRON
ap-2008	41	2	define	define	VERB
ap-2008	41	3	λrad	λrad	NOUN
ap-2008	41	4	as	as	ADP
ap-2008	41	5	the	the	DET
ap-2008	41	6	wavelength	wavelength	NOUN
ap-2008	41	7	at	at	ADP
ap-2008	41	8	which	which	PRON
ap-2008	41	9	the	the	DET
ap-2008	41	10	two	two	NUM
ap-2008	41	11	intensities	intensity	NOUN
ap-2008	41	12	are	be	AUX
ap-2008	41	13	equal	equal	ADJ
ap-2008	41	14	,	,	PUNCT
ap-2008	41	15	namely	namely	ADV
ap-2008	41	16	ip(λrad	ip(λrad	NOUN
ap-2008	41	17	)	)	PUNCT
ap-2008	41	18	=	=	PUNCT
ap-2008	41	19	(	(	PUNCT
ap-2008	41	20	1−	1−	NUM
ap-2008	41	21	a	a	NOUN
ap-2008	41	22	)	)	PUNCT
ap-2008	41	23	4	4	NUM
ap-2008	41	24	(	(	PUNCT
ap-2008	41	25	r∗	r∗	PROPN
ap-2008	41	26	d	d	NOUN
ap-2008	41	27	)	)	PUNCT
ap-2008	41	28	2	2	NUM
ap-2008	41	29	i∗(λrad	i∗(λrad	PROPN
ap-2008	41	30	)	)	PUNCT
ap-2008	41	31	,	,	PUNCT
ap-2008	41	32	(	(	PUNCT
ap-2008	41	33	2	2	X
ap-2008	41	34	)	)	PUNCT
ap-2008	41	35	where	where	SCONJ
ap-2008	41	36	ip	ip	NOUN
ap-2008	41	37	and	and	CCONJ
ap-2008	41	38	i∗	i∗	NOUN
ap-2008	41	39	are	be	AUX
ap-2008	41	40	the	the	DET
ap-2008	41	41	specific	specific	ADJ
ap-2008	41	42	intensities	intensity	NOUN
ap-2008	41	43	of	of	ADP
ap-2008	41	44	the	the	DET
ap-2008	41	45	planet	planet	NOUN
ap-2008	41	46	and	and	CCONJ
ap-2008	41	47	the	the	DET
ap-2008	41	48	insolating	insolate	VERB
ap-2008	41	49	star	star	NOUN
ap-2008	41	50	at	at	ADP
ap-2008	41	51	the	the	DET
ap-2008	41	52	top	top	NOUN
ap-2008	41	53	of	of	ADP
ap-2008	41	54	the	the	DET
ap-2008	41	55	planetary	planetary	ADJ
ap-2008	41	56	atmosphere	atmosphere	NOUN
ap-2008	41	57	.	.	PUNCT
ap-2008	42	1	a	a	PRON
ap-2008	42	2	is	be	AUX
ap-2008	42	3	the	the	DET
ap-2008	42	4	mean	mean	ADJ
ap-2008	42	5	albedo	albedo	NOUN
ap-2008	42	6	.	.	PUNCT
ap-2008	43	1	energy	energy	NOUN
ap-2008	43	2	conservation	conservation	NOUN
ap-2008	43	3	implies	imply	VERB
ap-2008	43	4	that	that	SCONJ
ap-2008	43	5	1	1	NUM
ap-2008	43	6	cv	cv	PROPN
ap-2008	43	7	dq(z	dq(z	NUM
ap-2008	43	8	)	)	PUNCT
ap-2008	43	9	dt	dt	NOUN
ap-2008	44	1	=	=	SYM
ap-2008	44	2	∫	∫	PROPN
ap-2008	44	3	∞	∞	NOUN
ap-2008	44	4	0	0	PUNCT
ap-2008	45	1	κ(λ	κ(λ	VERB
ap-2008	45	2	,	,	PUNCT
ap-2008	45	3	z	z	NOUN
ap-2008	45	4	)	)	PUNCT
ap-2008	46	1	[	[	X
ap-2008	46	2	j(λ	j(λ	NOUN
ap-2008	46	3	,	,	PUNCT
ap-2008	46	4	z)−b(λ	z)−b(λ	PROPN
ap-2008	46	5	,	,	PUNCT
ap-2008	46	6	z)]dλ	z)]dλ	NOUN
ap-2008	46	7	,	,	PUNCT
ap-2008	46	8	(	(	PUNCT
ap-2008	46	9	3	3	X
ap-2008	46	10	)	)	PUNCT
ap-2008	46	11	where	where	SCONJ
ap-2008	46	12	j	j	PROPN
ap-2008	46	13	is	be	AUX
ap-2008	46	14	the	the	DET
ap-2008	46	15	mean	mean	ADJ
ap-2008	46	16	specific	specific	ADJ
ap-2008	46	17	intensity	intensity	NOUN
ap-2008	46	18	.	.	PUNCT
ap-2008	47	1	a	a	DET
ap-2008	47	2	further	further	ADJ
ap-2008	47	3	requirement	requirement	NOUN
ap-2008	47	4	of	of	ADP
ap-2008	47	5	steady	steady	ADJ
ap-2008	47	6	state	state	NOUN
ap-2008	47	7	implies	imply	VERB
ap-2008	47	8	that	that	SCONJ
ap-2008	47	9	dq(z)/dt	dq(z)/dt	NOUN
ap-2008	47	10	=	=	SYM
ap-2008	47	11	0	0	X
ap-2008	47	12	.	.	PUNCT
ap-2008	47	13	as	as	ADV
ap-2008	47	14	apparent	apparent	ADJ
ap-2008	47	15	in	in	ADP
ap-2008	47	16	the	the	DET
ap-2008	47	17	figure	figure	NOUN
ap-2008	47	18	,	,	PUNCT
ap-2008	47	19	j(λ	j(λ	NOUN
ap-2008	47	20	)	)	PUNCT
ap-2008	47	21	�	�	PROPN
ap-2008	47	22	b(λ(tatm	b(λ(tatm	PROPN
ap-2008	47	23	)	)	PUNCT
ap-2008	47	24	)	)	PUNCT
ap-2008	47	25	for	for	ADP
ap-2008	47	26	λ	λ	PROPN
ap-2008	47	27	<	<	X
ap-2008	47	28	λrad	λrad	PROPN
ap-2008	47	29	.	.	PUNCT
ap-2008	48	1	consequently	consequently	ADV
ap-2008	48	2	,	,	PUNCT
ap-2008	48	3	we	we	PRON
ap-2008	48	4	can	can	AUX
ap-2008	48	5	split	split	VERB
ap-2008	48	6	the	the	DET
ap-2008	48	7	energy	energy	NOUN
ap-2008	48	8	integral	integral	ADJ
ap-2008	48	9	,	,	PUNCT
ap-2008	48	10	and	and	CCONJ
ap-2008	48	11	write	write	VERB
ap-2008	48	12	∫	∫	PROPN
ap-2008	48	13	λrad	λrad	NOUN
ap-2008	48	14	0	0	PUNCT
ap-2008	49	1	κ(λ	κ(λ	VERB
ap-2008	49	2	,	,	PUNCT
ap-2008	49	3	z)j(λ	z)j(λ	NOUN
ap-2008	49	4	,	,	PUNCT
ap-2008	50	1	z)dλ	z)dλ	PROPN
ap-2008	50	2	=	=	SYM
ap-2008	50	3	∫	∫	PROPN
ap-2008	51	1	∞	∞	NUM
ap-2008	51	2	λrad	λrad	PROPN
ap-2008	51	3	κ(λ	κ(λ	PROPN
ap-2008	51	4	,	,	PUNCT
ap-2008	51	5	z	z	NOUN
ap-2008	51	6	)	)	PUNCT
ap-2008	52	1	[	[	X
ap-2008	52	2	j(λ	j(λ	NOUN
ap-2008	52	3	,	,	PUNCT
ap-2008	52	4	z)−b(λ	z)−b(λ	PROPN
ap-2008	52	5	,	,	PUNCT
ap-2008	52	6	z	z	NOUN
ap-2008	52	7	)	)	PUNCT
ap-2008	52	8	]	]	PUNCT
ap-2008	52	9	dλ	dλ	NOUN
ap-2008	52	10	(	(	PUNCT
ap-2008	52	11	4	4	NUM
ap-2008	52	12	)	)	PUNCT
ap-2008	52	13	the	the	DET
ap-2008	52	14	first	first	ADJ
ap-2008	52	15	term	term	NOUN
ap-2008	52	16	is	be	AUX
ap-2008	52	17	positive	positive	ADJ
ap-2008	52	18	definite	definite	ADJ
ap-2008	52	19	and	and	CCONJ
ap-2008	52	20	hence	hence	ADV
ap-2008	52	21	always	always	ADV
ap-2008	52	22	represents	represent	VERB
ap-2008	52	23	heating	heating	NOUN
ap-2008	52	24	.	.	PUNCT
ap-2008	53	1	the	the	DET
ap-2008	53	2	second	second	ADJ
ap-2008	53	3	term	term	NOUN
ap-2008	53	4	must	must	AUX
ap-2008	53	5	therefore	therefore	ADV
ap-2008	53	6	be	be	AUX
ap-2008	53	7	negative	negative	ADJ
ap-2008	53	8	and	and	CCONJ
ap-2008	53	9	thus	thus	ADV
ap-2008	53	10	represents	represent	VERB
ap-2008	53	11	cooling	cool	VERB
ap-2008	53	12	.	.	PUNCT
ap-2008	54	1	clearly	clearly	ADV
ap-2008	54	2	,	,	PUNCT
ap-2008	54	3	the	the	DET
ap-2008	54	4	two	two	NUM
ap-2008	54	5	wavelength	wavelength	NOUN
ap-2008	54	6	ranges	range	NOUN
ap-2008	54	7	describe	describe	VERB
ap-2008	54	8	different	different	ADJ
ap-2008	54	9	phenomena	phenomenon	NOUN
ap-2008	54	10	.	.	PUNCT
ap-2008	55	1	at	at	ADP
ap-2008	55	2	this	this	DET
ap-2008	55	3	point	point	NOUN
ap-2008	55	4	,	,	PUNCT
ap-2008	55	5	we	we	PRON
ap-2008	55	6	can	can	AUX
ap-2008	55	7	also	also	ADV
ap-2008	55	8	state	state	VERB
ap-2008	55	9	that	that	SCONJ
ap-2008	55	10	j	j	PROPN
ap-2008	55	11	=	=	SYM
ap-2008	55	12	b	b	PROPN
ap-2008	55	13	,	,	PUNCT
ap-2008	55	14	which	which	PRON
ap-2008	55	15	is	be	AUX
ap-2008	55	16	the	the	DET
ap-2008	55	17	condition	condition	NOUN
ap-2008	55	18	for	for	ADP
ap-2008	55	19	lte	lte	PROPN
ap-2008	55	20	,	,	PUNCT
ap-2008	55	21	only	only	ADV
ap-2008	55	22	if	if	SCONJ
ap-2008	55	23	the	the	DET
ap-2008	55	24	first	first	ADJ
ap-2008	55	25	integral	integral	ADJ
ap-2008	55	26	vanishes	vanishe	NOUN
ap-2008	55	27	,	,	PUNCT
ap-2008	55	28	namely	namely	ADV
ap-2008	55	29	there	there	PRON
ap-2008	55	30	is	be	VERB
ap-2008	55	31	no	no	DET
ap-2008	55	32	heating	heating	NOUN
ap-2008	55	33	of	of	ADP
ap-2008	55	34	the	the	DET
ap-2008	55	35	atmosphere	atmosphere	NOUN
ap-2008	55	36	by	by	ADP
ap-2008	55	37	absorbed	absorb	VERB
ap-2008	55	38	radiation	radiation	NOUN
ap-2008	55	39	.	.	PUNCT
ap-2008	56	1	our	our	PRON
ap-2008	56	2	semi	semi	ADJ
ap-2008	56	3	-	-	ADJ
ap-2008	56	4	grey	grey	ADJ
ap-2008	56	5	model	model	NOUN
ap-2008	56	6	therefore	therefore	ADV
ap-2008	56	7	has	have	VERB
ap-2008	56	8	two	two	NUM
ap-2008	56	9	bands	band	NOUN
ap-2008	56	10	,	,	PUNCT
ap-2008	56	11	the	the	DET
ap-2008	56	12	vis	vis	X
ap-2008	56	13	band	band	NOUN
ap-2008	56	14	in	in	ADP
ap-2008	56	15	the	the	DET
ap-2008	56	16	range	range	NOUN
ap-2008	56	17	up	up	ADP
ap-2008	56	18	to	to	ADP
ap-2008	56	19	λrad	λrad	NOUN
ap-2008	56	20	,	,	PUNCT
ap-2008	56	21	and	and	CCONJ
ap-2008	56	22	the	the	DET
ap-2008	56	23	fir	fir	NOUN
ap-2008	56	24	band	band	NOUN
ap-2008	56	25	for	for	ADP
ap-2008	56	26	wavelength	wavelength	NOUN
ap-2008	56	27	in	in	ADP
ap-2008	56	28	te	te	PROPN
ap-2008	56	29	ns	ns	NUM
ap-2008	56	30	ity	ity	PROPN
ap-2008	56	31	/a	/a	PUNCT
ap-2008	56	32	bs	bs	PROPN
ap-2008	56	33	or	or	CCONJ
ap-2008	56	34	pt	pt	X
ap-2008	56	35	io	io	PROPN
ap-2008	56	36	n	n	PRON
ap-2008	56	37	central	central	ADJ
ap-2008	56	38	star	star	NOUN
ap-2008	56	39	emission	emission	NOUN
ap-2008	56	40	planet	planet	NOUN
ap-2008	56	41	emission	emission	NOUN
ap-2008	56	42	!	!	PUNCT
ap-2008	57	1	(	(	PUNCT
ap-2008	57	2	"	"	PUNCT
ap-2008	57	3	)	)	PUNCT
ap-2008	57	4	"	"	PUNCT
ap-2008	57	5	cut	cut	VERB
ap-2008	57	6	"	"	PUNCT
ap-2008	57	7	rad	rad	NOUN
ap-2008	57	8	figure	figure	NOUN
ap-2008	57	9	1	1	NUM
ap-2008	57	10	.	.	PUNCT
ap-2008	58	1	the	the	DET
ap-2008	58	2	definition	definition	NOUN
ap-2008	58	3	of	of	ADP
ap-2008	58	4	λrad	λrad	NOUN
ap-2008	58	5	,	,	PUNCT
ap-2008	58	6	where	where	SCONJ
ap-2008	58	7	the	the	DET
ap-2008	58	8	specific	specific	ADJ
ap-2008	58	9	intensity	intensity	NOUN
ap-2008	58	10	of	of	ADP
ap-2008	58	11	insolation	insolation	NOUN
ap-2008	58	12	equals	equal	VERB
ap-2008	58	13	the	the	DET
ap-2008	58	14	specific	specific	ADJ
ap-2008	58	15	intensity	intensity	NOUN
ap-2008	58	16	of	of	ADP
ap-2008	58	17	the	the	DET
ap-2008	58	18	planetary	planetary	ADJ
ap-2008	58	19	thermal	thermal	ADJ
ap-2008	58	20	emission	emission	NOUN
ap-2008	58	21	.	.	PUNCT
ap-2008	59	1	also	also	ADV
ap-2008	59	2	shown	show	VERB
ap-2008	59	3	is	be	AUX
ap-2008	59	4	the	the	DET
ap-2008	59	5	definition	definition	NOUN
ap-2008	59	6	of	of	ADP
ap-2008	59	7	λcut	λcut	NOUN
ap-2008	59	8	,	,	PUNCT
ap-2008	59	9	the	the	DET
ap-2008	59	10	wavelength	wavelength	NOUN
ap-2008	59	11	above	above	ADP
ap-2008	59	12	which	which	PRON
ap-2008	59	13	the	the	DET
ap-2008	59	14	molecular	molecular	ADJ
ap-2008	59	15	absorption	absorption	NOUN
ap-2008	59	16	(	(	PUNCT
ap-2008	59	17	denoted	denote	VERB
ap-2008	59	18	by	by	ADP
ap-2008	59	19	κ	κ	NOUN
ap-2008	59	20	)	)	PUNCT
ap-2008	59	21	becomes	become	VERB
ap-2008	59	22	significant	significant	ADJ
ap-2008	59	23	.	.	PUNCT
ap-2008	60	1	λ	λ	X
ap-2008	60	2	>	>	X
ap-2008	60	3	λrad	λrad	PROPN
ap-2008	60	4	.	.	PUNCT
ap-2008	61	1	the	the	DET
ap-2008	61	2	radiative	radiative	ADJ
ap-2008	61	3	transfer	transfer	NOUN
ap-2008	61	4	equation	equation	NOUN
ap-2008	61	5	is	be	AUX
ap-2008	61	6	solved	solve	VERB
ap-2008	61	7	in	in	ADP
ap-2008	61	8	the	the	DET
ap-2008	61	9	two	two	NUM
ap-2008	61	10	stream	stream	NOUN
ap-2008	61	11	approximation	approximation	NOUN
ap-2008	61	12	.	.	PUNCT
ap-2008	62	1	however	however	ADV
ap-2008	62	2	,	,	PUNCT
ap-2008	62	3	while	while	SCONJ
ap-2008	62	4	the	the	DET
ap-2008	62	5	optical	optical	ADJ
ap-2008	62	6	depths	depth	NOUN
ap-2008	62	7	τvis	τvis	NOUN
ap-2008	62	8	and	and	CCONJ
ap-2008	62	9	τfir	τfir	NOUN
ap-2008	62	10	are	be	AUX
ap-2008	62	11	constant	constant	ADJ
ap-2008	62	12	over	over	ADP
ap-2008	62	13	the	the	DET
ap-2008	62	14	respective	respective	ADJ
ap-2008	62	15	wavelengths	wavelength	NOUN
ap-2008	62	16	,	,	PUNCT
ap-2008	62	17	we	we	PRON
ap-2008	62	18	allow	allow	VERB
ap-2008	62	19	i(λ	i(λ	PROPN
ap-2008	62	20	)	)	PUNCT
ap-2008	62	21	to	to	PART
ap-2008	62	22	change	change	VERB
ap-2008	62	23	with	with	ADP
ap-2008	62	24	λ	λ	PROPN
ap-2008	62	25	.	.	PUNCT
ap-2008	63	1	we	we	PRON
ap-2008	63	2	assumed	assume	VERB
ap-2008	63	3	in	in	ADP
ap-2008	63	4	the	the	DET
ap-2008	63	5	calculations	calculation	NOUN
ap-2008	63	6	reported	report	VERB
ap-2008	63	7	here	here	ADV
ap-2008	63	8	:	:	PUNCT
ap-2008	63	9	nvis	nvis	PROPN
ap-2008	63	10	=	=	SYM
ap-2008	63	11	200	200	NUM
ap-2008	63	12	wavelengths	wavelength	NOUN
ap-2008	63	13	in	in	ADP
ap-2008	63	14	the	the	DET
ap-2008	63	15	range	range	NOUN
ap-2008	63	16	(	(	PUNCT
ap-2008	63	17	103å÷λrad	103å÷λrad	NUM
ap-2008	63	18	)	)	PUNCT
ap-2008	63	19	and	and	CCONJ
ap-2008	63	20	nfir	nfir	ADJ
ap-2008	63	21	=	=	SYM
ap-2008	63	22	400	400	NUM
ap-2008	63	23	wavelengths	wavelength	NOUN
ap-2008	63	24	in	in	ADP
ap-2008	63	25	the	the	DET
ap-2008	63	26	range	range	NOUN
ap-2008	63	27	(	(	PUNCT
ap-2008	63	28	λrad	λrad	NOUN
ap-2008	63	29	÷	÷	NUM
ap-2008	63	30	8×	8×	NUM
ap-2008	63	31	105å	105å	NOUN
ap-2008	63	32	)	)	PUNCT
ap-2008	63	33	.	.	PUNCT
ap-2008	64	1	the	the	DET
ap-2008	64	2	atmosphere	atmosphere	NOUN
ap-2008	64	3	was	be	AUX
ap-2008	64	4	divided	divide	VERB
ap-2008	64	5	into	into	ADP
ap-2008	64	6	50	50	NUM
ap-2008	64	7	slabs	slab	NOUN
ap-2008	64	8	.	.	PUNCT
ap-2008	65	1	each	each	DET
ap-2008	65	2	slab	slab	NOUN
ap-2008	65	3	has	have	VERB
ap-2008	65	4	an	an	DET
ap-2008	65	5	optical	optical	ADJ
ap-2008	65	6	depth	depth	NOUN
ap-2008	65	7	of	of	ADP
ap-2008	65	8	τvis/50	τvis/50	PUNCT
ap-2008	65	9	for	for	ADP
ap-2008	65	10	λ	λ	PROPN
ap-2008	65	11	<	<	X
ap-2008	65	12	λrad	λrad	NOUN
ap-2008	65	13	and	and	CCONJ
ap-2008	65	14	an	an	DET
ap-2008	65	15	optical	optical	ADJ
ap-2008	65	16	depth	depth	NOUN
ap-2008	65	17	τfir/50	τfir/50	NOUN
ap-2008	65	18	for	for	ADP
ap-2008	65	19	λ	λ	PROPN
ap-2008	65	20	>	>	X
ap-2008	65	21	λrad	λrad	PROPN
ap-2008	65	22	.	.	PUNCT
ap-2008	66	1	the	the	DET
ap-2008	66	2	nvis	nvis	ADJ
ap-2008	66	3	and	and	CCONJ
ap-2008	66	4	nfir	nfir	ADJ
ap-2008	66	5	wavelengths	wavelength	NOUN
ap-2008	66	6	were	be	AUX
ap-2008	66	7	distributed	distribute	VERB
ap-2008	66	8	logarithmically	logarithmically	ADV
ap-2008	66	9	.	.	PUNCT
ap-2008	67	1	the	the	DET
ap-2008	67	2	energy	energy	NOUN
ap-2008	67	3	condition	condition	NOUN
ap-2008	67	4	was	be	AUX
ap-2008	67	5	used	use	VERB
ap-2008	67	6	to	to	PART
ap-2008	67	7	calculate	calculate	VERB
ap-2008	67	8	the	the	DET
ap-2008	67	9	temperature	temperature	NOUN
ap-2008	67	10	of	of	ADP
ap-2008	67	11	slab	slab	NOUN
ap-2008	67	12	i.	i.	PROPN
ap-2008	67	13	the	the	DET
ap-2008	67	14	energy	energy	NOUN
ap-2008	67	15	condition	condition	NOUN
ap-2008	67	16	in	in	ADP
ap-2008	67	17	our	our	PRON
ap-2008	67	18	calculation	calculation	NOUN
ap-2008	67	19	is	be	AUX
ap-2008	67	20	given	give	VERB
ap-2008	67	21	by	by	ADP
ap-2008	67	22	:	:	PUNCT
ap-2008	67	23	τvis	τvis	PROPN
ap-2008	67	24	natm	natm	PROPN
ap-2008	67	25	j	j	PROPN
ap-2008	67	26	=	=	PROPN
ap-2008	67	27	nvis∑	nvis∑	NOUN
ap-2008	67	28	j=1	j=1	PUNCT
ap-2008	68	1	[	[	X
ap-2008	68	2	ji	ji	X
ap-2008	68	3	,	,	PUNCT
ap-2008	68	4	j	j	PROPN
ap-2008	68	5	−b(ti	−b(ti	PROPN
ap-2008	68	6	,	,	PUNCT
ap-2008	68	7	j	j	PROPN
ap-2008	68	8	)	)	PUNCT
ap-2008	68	9	]	]	PUNCT
ap-2008	68	10	(	(	PUNCT
ap-2008	68	11	5	5	X
ap-2008	68	12	)	)	PUNCT
ap-2008	68	13	+	+	CCONJ
ap-2008	68	14	τfir	τfir	PROPN
ap-2008	68	15	natm	natm	PROPN
ap-2008	68	16	j	j	PROPN
ap-2008	69	1	=	=	PROPN
ap-2008	69	2	nfir∑	nfir∑	NOUN
ap-2008	69	3	j=1	j=1	PROPN
ap-2008	70	1	[	[	X
ap-2008	70	2	ji	ji	X
ap-2008	70	3	,	,	PUNCT
ap-2008	70	4	j	j	PROPN
ap-2008	70	5	−b(ti	−b(ti	PROPN
ap-2008	70	6	,	,	PUNCT
ap-2008	70	7	j	j	PROPN
ap-2008	70	8	)	)	PUNCT
ap-2008	70	9	]	]	PUNCT
ap-2008	71	1	=	=	PUNCT
ap-2008	71	2	0	0	NUM
ap-2008	71	3	where	where	SCONJ
ap-2008	71	4	natm	natm	PROPN
ap-2008	71	5	is	be	AUX
ap-2008	71	6	the	the	DET
ap-2008	71	7	number	number	NOUN
ap-2008	71	8	of	of	ADP
ap-2008	71	9	layers	layer	NOUN
ap-2008	71	10	in	in	ADP
ap-2008	71	11	the	the	DET
ap-2008	71	12	atmosphere	atmosphere	NOUN
ap-2008	71	13	(	(	PUNCT
ap-2008	71	14	50	50	NUM
ap-2008	71	15	in	in	ADP
ap-2008	71	16	our	our	PRON
ap-2008	71	17	case	case	NOUN
ap-2008	71	18	)	)	PUNCT
ap-2008	71	19	and	and	CCONJ
ap-2008	71	20	the	the	DET
ap-2008	71	21	index	index	NOUN
ap-2008	71	22	i	i	PRON
ap-2008	71	23	runs	run	VERB
ap-2008	71	24	over	over	ADP
ap-2008	71	25	all	all	DET
ap-2008	71	26	layers	layer	NOUN
ap-2008	71	27	in	in	ADP
ap-2008	71	28	the	the	DET
ap-2008	71	29	atmosphere	atmosphere	NOUN
ap-2008	71	30	.	.	PUNCT
ap-2008	72	1	the	the	DET
ap-2008	72	2	above	above	ADJ
ap-2008	72	3	condition	condition	NOUN
ap-2008	72	4	must	must	AUX
ap-2008	72	5	be	be	AUX
ap-2008	72	6	satisfied	satisfied	ADJ
ap-2008	72	7	for	for	ADP
ap-2008	72	8	every	every	DET
ap-2008	72	9	i.	i.	NOUN
ap-2008	72	10	nvis	nvis	PROPN
ap-2008	72	11	and	and	CCONJ
ap-2008	72	12	nfir	nfir	PROPN
ap-2008	72	13	are	be	AUX
ap-2008	72	14	the	the	DET
ap-2008	72	15	number	number	NOUN
ap-2008	72	16	of	of	ADP
ap-2008	72	17	wavelengths	wavelength	NOUN
ap-2008	72	18	we	we	PRON
ap-2008	72	19	use	use	VERB
ap-2008	72	20	in	in	ADP
ap-2008	72	21	the	the	DET
ap-2008	72	22	respective	respective	ADJ
ap-2008	72	23	wavelength	wavelength	NOUN
ap-2008	72	24	range	range	NOUN
ap-2008	72	25	.	.	PUNCT
ap-2008	73	1	ji	ji	PROPN
ap-2008	73	2	,	,	PUNCT
ap-2008	73	3	j	j	PROPN
ap-2008	73	4	is	be	AUX
ap-2008	73	5	j	j	PROPN
ap-2008	73	6	at	at	ADP
ap-2008	73	7	atmospheric	atmospheric	ADJ
ap-2008	73	8	layer	layer	NOUN
ap-2008	73	9	i	i	PRON
ap-2008	73	10	and	and	CCONJ
ap-2008	73	11	wavelength	wavelength	NOUN
ap-2008	73	12	j	j	PROPN
ap-2008	73	13	and	and	CCONJ
ap-2008	73	14	b(ti	b(ti	PROPN
ap-2008	73	15	,	,	PUNCT
ap-2008	73	16	j	j	PROPN
ap-2008	73	17	)	)	PUNCT
ap-2008	73	18	is	be	AUX
ap-2008	73	19	the	the	DET
ap-2008	73	20	planck	planck	NOUN
ap-2008	73	21	function	function	NOUN
ap-2008	73	22	for	for	ADP
ap-2008	73	23	temperature	temperature	NOUN
ap-2008	73	24	ti	ti	NOUN
ap-2008	73	25	at	at	ADP
ap-2008	73	26	layer	layer	NOUN
ap-2008	73	27	i	i	PRON
ap-2008	73	28	and	and	CCONJ
ap-2008	73	29	wavelength	wavelength	VERB
ap-2008	73	30	λj	λj	INTJ
ap-2008	73	31	.	.	PUNCT
ap-2008	74	1	although	although	SCONJ
ap-2008	74	2	it	it	PRON
ap-2008	74	3	can	can	AUX
ap-2008	74	4	be	be	AUX
ap-2008	74	5	eliminated	eliminate	VERB
ap-2008	74	6	,	,	PUNCT
ap-2008	74	7	natm	natm	PROPN
ap-2008	74	8	is	be	AUX
ap-2008	74	9	kept	keep	VERB
ap-2008	74	10	for	for	ADP
ap-2008	74	11	clarity	clarity	NOUN
ap-2008	74	12	.	.	PUNCT
ap-2008	75	1	there	there	PRON
ap-2008	75	2	are	be	VERB
ap-2008	75	3	natm	natm	ADJ
ap-2008	75	4	such	such	ADJ
ap-2008	75	5	equations	equation	NOUN
ap-2008	75	6	to	to	PART
ap-2008	75	7	solve	solve	VERB
ap-2008	75	8	for	for	ADP
ap-2008	75	9	the	the	DET
ap-2008	75	10	temperature	temperature	NOUN
ap-2008	75	11	ti	ti	NOUN
ap-2008	75	12	in	in	ADP
ap-2008	75	13	each	each	DET
ap-2008	75	14	layer	layer	NOUN
ap-2008	75	15	i.	i.	NOUN
ap-2008	75	16	note	note	VERB
ap-2008	75	17	that	that	SCONJ
ap-2008	75	18	we	we	PRON
ap-2008	75	19	kept	keep	VERB
ap-2008	75	20	the	the	DET
ap-2008	75	21	planck	planck	NOUN
ap-2008	75	22	function	function	NOUN
ap-2008	75	23	in	in	ADP
ap-2008	75	24	the	the	DET
ap-2008	75	25	λ	λ	PROPN
ap-2008	75	26	<	<	X
ap-2008	75	27	λrad	λrad	ADJ
ap-2008	75	28	range	range	NOUN
ap-2008	75	29	despite	despite	SCONJ
ap-2008	75	30	the	the	DET
ap-2008	75	31	fact	fact	NOUN
ap-2008	75	32	that	that	SCONJ
ap-2008	75	33	it	it	PRON
ap-2008	75	34	is	be	AUX
ap-2008	75	35	very	very	ADV
ap-2008	75	36	small	small	ADJ
ap-2008	75	37	.	.	PUNCT
ap-2008	76	1	we	we	PRON
ap-2008	76	2	assume	assume	VERB
ap-2008	76	3	that	that	SCONJ
ap-2008	76	4	the	the	DET
ap-2008	76	5	total	total	ADJ
ap-2008	76	6	optical	optical	ADJ
ap-2008	76	7	depth	depth	NOUN
ap-2008	76	8	is	be	AUX
ap-2008	76	9	divided	divide	VERB
ap-2008	76	10	equally	equally	ADV
ap-2008	76	11	in	in	ADP
ap-2008	76	12	all	all	DET
ap-2008	76	13	the	the	DET
ap-2008	76	14	layers	layer	NOUN
ap-2008	76	15	of	of	ADP
ap-2008	76	16	the	the	DET
ap-2008	76	17	atmosphere	atmosphere	NOUN
ap-2008	76	18	.	.	PUNCT
ap-2008	77	1	this	this	PRON
ap-2008	77	2	implies	imply	VERB
ap-2008	77	3	that	that	SCONJ
ap-2008	77	4	the	the	DET
ap-2008	77	5	physical	physical	ADJ
ap-2008	77	6	width	width	NOUN
ap-2008	77	7	of	of	ADP
ap-2008	77	8	the	the	DET
ap-2008	77	9	atmosphere	atmosphere	NOUN
ap-2008	77	10	varies	vary	VERB
ap-2008	77	11	with	with	ADP
ap-2008	77	12	height	height	NOUN
ap-2008	77	13	.	.	PUNCT
ap-2008	78	1	moreover	moreover	ADV
ap-2008	78	2	,	,	PUNCT
ap-2008	78	3	we	we	PRON
ap-2008	78	4	work	work	VERB
ap-2008	78	5	with	with	ADP
ap-2008	78	6	the	the	DET
ap-2008	78	7	two	two	NUM
ap-2008	78	8	τ	τ	PROPN
ap-2008	78	9	’s	’s	NOUN
ap-2008	78	10	as	as	ADP
ap-2008	78	11	the	the	DET
ap-2008	78	12	independent	independent	ADJ
ap-2008	78	13	variables	variable	NOUN
ap-2008	78	14	,	,	PUNCT
ap-2008	78	15	not	not	PART
ap-2008	78	16	κ	κ	NOUN
ap-2008	78	17	.	.	NOUN
ap-2008	78	18	833	833	NUM
ap-2008	78	19	smadar	smadar	NOUN
ap-2008	78	20	bressler	bressler	NOUN
ap-2008	78	21	,	,	PUNCT
ap-2008	78	22	giora	giora	PROPN
ap-2008	78	23	shaviv	shaviv	PROPN
ap-2008	78	24	,	,	PUNCT
ap-2008	78	25	nir	nir	PROPN
ap-2008	78	26	j	j	PROPN
ap-2008	78	27	shaviv	shaviv	PROPN
ap-2008	78	28	acta	acta	PROPN
ap-2008	78	29	polytechnica	polytechnica	PROPN
ap-2008	78	30	figure	figure	NOUN
ap-2008	78	31	2	2	NUM
ap-2008	78	32	.	.	PUNCT
ap-2008	79	1	the	the	DET
ap-2008	79	2	surface	surface	NOUN
ap-2008	79	3	temperature	temperature	NOUN
ap-2008	79	4	as	as	ADP
ap-2008	79	5	a	a	DET
ap-2008	79	6	function	function	NOUN
ap-2008	79	7	of	of	ADP
ap-2008	79	8	τfir	τfir	NOUN
ap-2008	79	9	for	for	ADP
ap-2008	79	10	a	a	DET
ap-2008	79	11	fixed	fix	VERB
ap-2008	79	12	τvis	τvis	NOUN
ap-2008	79	13	.	.	PUNCT
ap-2008	79	14	also	also	ADV
ap-2008	79	15	shown	show	VERB
ap-2008	79	16	is	be	AUX
ap-2008	79	17	the	the	DET
ap-2008	79	18	sky	sky	NOUN
ap-2008	79	19	temperature	temperature	NOUN
ap-2008	79	20	tsky	tsky	NOUN
ap-2008	79	21	.	.	PUNCT
ap-2008	80	1	0.01	0.01	NUM
ap-2008	80	2	0.1	0.1	NUM
ap-2008	80	3	1	1	NUM
ap-2008	80	4	10	10	NUM
ap-2008	80	5	100	100	NUM
ap-2008	80	6	1000	1000	NUM
ap-2008	80	7	300	300	NUM
ap-2008	80	8	400	400	NUM
ap-2008	80	9	500	500	NUM
ap-2008	80	10	600	600	NUM
ap-2008	80	11	rad	rad	NOUN
ap-2008	80	12	åλ	åλ	NOUN
ap-2008	80	13	=	=	SYM
ap-2008	80	14	20,000	20,000	NUM
ap-2008	80	15	rad	rad	NOUN
ap-2008	80	16	åλ	åλ	NOUN
ap-2008	80	17	=	=	SYM
ap-2008	80	18	10,000	10,000	NUM
ap-2008	80	19	rad	rad	NOUN
ap-2008	80	20	åλ	åλ	NOUN
ap-2008	80	21	=	=	SYM
ap-2008	80	22	50,000	50,000	NUM
ap-2008	80	23	su	su	PROPN
ap-2008	80	24	rfa	rfa	PROPN
ap-2008	80	25	ce	ce	PROPN
ap-2008	80	26	te	te	PROPN
ap-2008	80	27	m	m	PROPN
ap-2008	80	28	pe	pe	INTJ
ap-2008	80	29	ra	ra	PROPN
ap-2008	80	30	tu	tu	PROPN
ap-2008	80	31	re	re	X
ap-2008	80	32	k	k	PROPN
ap-2008	80	33	τfir>>>1	τfir>>>1	PROPN
ap-2008	80	34	τvis	τvis	ADP
ap-2008	80	35	figure	figure	NOUN
ap-2008	80	36	3	3	NUM
ap-2008	80	37	.	.	PUNCT
ap-2008	81	1	the	the	DET
ap-2008	81	2	effect	effect	NOUN
ap-2008	81	3	of	of	ADP
ap-2008	81	4	τvis	τvis	NOUN
ap-2008	81	5	on	on	ADP
ap-2008	81	6	tsurf	tsurf	NOUN
ap-2008	81	7	for	for	ADP
ap-2008	81	8	three	three	NUM
ap-2008	81	9	cases	case	NOUN
ap-2008	81	10	.	.	PUNCT
ap-2008	82	1	3	3	X
ap-2008	82	2	.	.	X
ap-2008	82	3	greenhouse	greenhouse	NOUN
ap-2008	82	4	and	and	CCONJ
ap-2008	82	5	anti	anti	ADJ
ap-2008	82	6	-	-	ADJ
ap-2008	82	7	greenhouse	greenhouse	ADJ
ap-2008	82	8	models	model	NOUN
ap-2008	82	9	figure	figure	VERB
ap-2008	82	10	2	2	NUM
ap-2008	82	11	illustrates	illustrate	VERB
ap-2008	82	12	a	a	DET
ap-2008	82	13	typical	typical	ADJ
ap-2008	82	14	case	case	NOUN
ap-2008	82	15	,	,	PUNCT
ap-2008	82	16	where	where	SCONJ
ap-2008	82	17	τfir	τfir	ADJ
ap-2008	82	18	increases	increase	VERB
ap-2008	82	19	indefinitely	indefinitely	ADV
ap-2008	82	20	while	while	SCONJ
ap-2008	82	21	keeping	keep	VERB
ap-2008	82	22	τvis	τvis	ADP
ap-2008	82	23	fixed	fix	VERB
ap-2008	82	24	.	.	PUNCT
ap-2008	83	1	the	the	DET
ap-2008	83	2	surface	surface	NOUN
ap-2008	83	3	temperature	temperature	NOUN
ap-2008	83	4	increases	increase	VERB
ap-2008	83	5	slowly	slowly	ADV
ap-2008	83	6	for	for	ADP
ap-2008	83	7	small	small	ADJ
ap-2008	83	8	τfir	τfir	NOUN
ap-2008	83	9	’s	’s	PART
ap-2008	83	10	(	(	PUNCT
ap-2008	83	11	i.e.	i.e.	X
ap-2008	83	12	,	,	PUNCT
ap-2008	83	13	per	per	ADP
ap-2008	83	14	given	give	VERB
ap-2008	83	15	logarithmic	logarithmic	ADJ
ap-2008	83	16	increase	increase	NOUN
ap-2008	83	17	of	of	ADP
ap-2008	83	18	τfir	τfir	NOUN
ap-2008	83	19	)	)	PUNCT
ap-2008	83	20	,	,	PUNCT
ap-2008	83	21	but	but	CCONJ
ap-2008	83	22	when	when	SCONJ
ap-2008	83	23	τfir	τfir	ADJ
ap-2008	83	24	∼	∼	NOUN
ap-2008	83	25	1	1	NUM
ap-2008	83	26	,	,	PUNCT
ap-2008	83	27	the	the	DET
ap-2008	83	28	rate	rate	NOUN
ap-2008	83	29	of	of	ADP
ap-2008	83	30	increase	increase	NOUN
ap-2008	83	31	becomes	become	VERB
ap-2008	83	32	larger	large	ADJ
ap-2008	83	33	,	,	PUNCT
ap-2008	83	34	up	up	ADP
ap-2008	83	35	to	to	ADP
ap-2008	83	36	about	about	ADP
ap-2008	83	37	τfir	τfir	VERB
ap-2008	83	38	∼	∼	NOUN
ap-2008	83	39	100	100	NUM
ap-2008	83	40	,	,	PUNCT
ap-2008	83	41	where	where	SCONJ
ap-2008	83	42	the	the	DET
ap-2008	83	43	surface	surface	NOUN
ap-2008	83	44	temperature	temperature	NOUN
ap-2008	83	45	saturates	saturate	VERB
ap-2008	83	46	and	and	CCONJ
ap-2008	83	47	levels	level	NOUN
ap-2008	83	48	off	off	ADP
ap-2008	83	49	.	.	PUNCT
ap-2008	84	1	the	the	DET
ap-2008	84	2	reason	reason	NOUN
ap-2008	84	3	is	be	AUX
ap-2008	84	4	that	that	SCONJ
ap-2008	84	5	as	as	SCONJ
ap-2008	84	6	the	the	DET
ap-2008	84	7	temperature	temperature	NOUN
ap-2008	84	8	rises	rise	VERB
ap-2008	84	9	,	,	PUNCT
ap-2008	84	10	the	the	DET
ap-2008	84	11	peak	peak	NOUN
ap-2008	84	12	of	of	ADP
ap-2008	84	13	the	the	DET
ap-2008	84	14	planck	planck	NOUN
ap-2008	84	15	spectrum	spectrum	NOUN
ap-2008	84	16	progressively	progressively	ADV
ap-2008	84	17	moves	move	VERB
ap-2008	84	18	towards	towards	ADP
ap-2008	84	19	shorter	short	ADJ
ap-2008	84	20	wavelengths	wavelength	NOUN
ap-2008	84	21	and	and	CCONJ
ap-2008	84	22	thermal	thermal	ADJ
ap-2008	84	23	radiation	radiation	NOUN
ap-2008	84	24	leaks	leak	NOUN
ap-2008	84	25	through	through	ADP
ap-2008	84	26	the	the	DET
ap-2008	84	27	vis	vis	X
ap-2008	84	28	range	range	X
ap-2008	84	29	(	(	PUNCT
ap-2008	84	30	cf	cf	NOUN
ap-2008	84	31	.	.	PUNCT
ap-2008	85	1	[	[	X
ap-2008	85	2	9	9	NUM
ap-2008	85	3	]	]	SYM
ap-2008	85	4	)	)	PUNCT
ap-2008	85	5	.	.	PUNCT
ap-2008	86	1	thus	thus	ADV
ap-2008	86	2	,	,	PUNCT
ap-2008	86	3	the	the	DET
ap-2008	86	4	greenhouse	greenhouse	NOUN
ap-2008	86	5	effect	effect	NOUN
ap-2008	86	6	does	do	AUX
ap-2008	86	7	not	not	PART
ap-2008	86	8	experience	experience	VERB
ap-2008	86	9	a	a	DET
ap-2008	86	10	runaway	runaway	NOUN
ap-2008	86	11	when	when	SCONJ
ap-2008	86	12	the	the	DET
ap-2008	86	13	concentration	concentration	NOUN
ap-2008	86	14	of	of	ADP
ap-2008	86	15	any	any	DET
ap-2008	86	16	gas	gas	NOUN
ap-2008	86	17	,	,	PUNCT
ap-2008	86	18	and	and	CCONJ
ap-2008	86	19	its	its	PRON
ap-2008	86	20	corresponding	corresponding	ADJ
ap-2008	86	21	optical	optical	ADJ
ap-2008	86	22	depth	depth	NOUN
ap-2008	86	23	,	,	PUNCT
ap-2008	86	24	increase	increase	VERB
ap-2008	86	25	indefinitely	indefinitely	ADV
ap-2008	86	26	.	.	PUNCT
ap-2008	87	1	clearly	clearly	ADV
ap-2008	87	2	,	,	PUNCT
ap-2008	87	3	simpson	simpson	PROPN
ap-2008	87	4	’s	’s	PART
ap-2008	87	5	paradox	paradox	NOUN
ap-2008	87	6	does	do	AUX
ap-2008	87	7	not	not	PART
ap-2008	87	8	exist	exist	VERB
ap-2008	87	9	when	when	SCONJ
ap-2008	87	10	the	the	DET
ap-2008	87	11	problem	problem	NOUN
ap-2008	87	12	is	be	AUX
ap-2008	87	13	solved	solve	VERB
ap-2008	87	14	properly	properly	ADV
ap-2008	87	15	.	.	PUNCT
ap-2008	88	1	previous	previous	ADJ
ap-2008	88	2	attempts	attempt	NOUN
ap-2008	88	3	to	to	PART
ap-2008	88	4	solve	solve	VERB
ap-2008	88	5	the	the	DET
ap-2008	88	6	paradox	paradox	NOUN
ap-2008	88	7	assumed	assume	VERB
ap-2008	88	8	the	the	DET
ap-2008	88	9	existence	existence	NOUN
ap-2008	88	10	of	of	ADP
ap-2008	88	11	windows	window	NOUN
ap-2008	88	12	in	in	ADP
ap-2008	88	13	the	the	DET
ap-2008	88	14	absorption	absorption	NOUN
ap-2008	88	15	coefficient	coefficient	NOUN
ap-2008	88	16	.	.	PUNCT
ap-2008	89	1	the	the	DET
ap-2008	89	2	saturation	saturation	NOUN
ap-2008	89	3	is	be	AUX
ap-2008	89	4	obtained	obtain	VERB
ap-2008	89	5	,	,	PUNCT
ap-2008	89	6	however	however	ADV
ap-2008	89	7	,	,	PUNCT
ap-2008	89	8	even	even	ADV
ap-2008	89	9	if	if	SCONJ
ap-2008	89	10	no	no	DET
ap-2008	89	11	windows	window	NOUN
ap-2008	89	12	are	be	AUX
ap-2008	89	13	assumed	assume	VERB
ap-2008	89	14	.	.	PUNCT
ap-2008	90	1	moreover	moreover	ADV
ap-2008	90	2	,	,	PUNCT
ap-2008	90	3	the	the	DET
ap-2008	90	4	saturation	saturation	NOUN
ap-2008	90	5	appears	appear	VERB
ap-2008	90	6	even	even	ADV
ap-2008	90	7	without	without	ADP
ap-2008	90	8	assuming	assume	VERB
ap-2008	90	9	various	various	ADJ
ap-2008	90	10	feedbacks	feedback	NOUN
ap-2008	90	11	like	like	ADP
ap-2008	90	12	increased	increase	VERB
ap-2008	90	13	albedo	albedo	NOUN
ap-2008	90	14	etc	etc	X
ap-2008	90	15	.	.	PUNCT
ap-2008	91	1	the	the	DET
ap-2008	91	2	figure	figure	NOUN
ap-2008	91	3	also	also	ADV
ap-2008	91	4	depicts	depict	VERB
ap-2008	91	5	the	the	DET
ap-2008	91	6	sky	sky	NOUN
ap-2008	91	7	temperature	temperature	NOUN
ap-2008	91	8	tsky	tsky	NOUN
ap-2008	91	9	,	,	PUNCT
ap-2008	91	10	defined	define	VERB
ap-2008	91	11	such	such	ADJ
ap-2008	91	12	that	that	SCONJ
ap-2008	91	13	σt	σt	ADP
ap-2008	91	14	4	4	NUM
ap-2008	91	15	sky	sky	NOUN
ap-2008	91	16	is	be	AUX
ap-2008	91	17	equal	equal	ADJ
ap-2008	91	18	to	to	ADP
ap-2008	91	19	the	the	DET
ap-2008	91	20	radiation	radiation	NOUN
ap-2008	91	21	flux	flux	NOUN
ap-2008	91	22	from	from	ADP
ap-2008	91	23	the	the	DET
ap-2008	91	24	atmosphere	atmosphere	NOUN
ap-2008	91	25	to	to	ADP
ap-2008	91	26	the	the	DET
ap-2008	91	27	surface	surface	NOUN
ap-2008	91	28	of	of	ADP
ap-2008	91	29	the	the	DET
ap-2008	91	30	planet	planet	NOUN
ap-2008	91	31	.	.	PUNCT
ap-2008	92	1	as	as	ADP
ap-2008	92	2	tsky	tsky	NOUN
ap-2008	92	3	<	<	X
ap-2008	92	4	tsurf	tsurf	ADJ
ap-2008	92	5	in	in	ADP
ap-2008	92	6	this	this	DET
ap-2008	92	7	equilibrium	equilibrium	NOUN
ap-2008	92	8	model	model	NOUN
ap-2008	92	9	,	,	PUNCT
ap-2008	92	10	the	the	DET
ap-2008	92	11	surface	surface	NOUN
ap-2008	92	12	cools	cool	VERB
ap-2008	92	13	by	by	ADP
ap-2008	92	14	exchanging	exchange	VERB
ap-2008	92	15	energy	energy	NOUN
ap-2008	92	16	with	with	ADP
ap-2008	92	17	the	the	DET
ap-2008	92	18	atmosphere	atmosphere	NOUN
ap-2008	92	19	.	.	PUNCT
ap-2008	93	1	figure	figure	NOUN
ap-2008	93	2	3	3	NUM
ap-2008	93	3	demonstrates	demonstrate	VERB
ap-2008	93	4	the	the	DET
ap-2008	93	5	effect	effect	NOUN
ap-2008	93	6	of	of	ADP
ap-2008	93	7	a	a	DET
ap-2008	93	8	changing	changing	NOUN
ap-2008	93	9	τvis	τvis	NOUN
ap-2008	93	10	on	on	ADP
ap-2008	93	11	the	the	DET
ap-2008	93	12	surface	surface	NOUN
ap-2008	93	13	temperature	temperature	NOUN
ap-2008	93	14	,	,	PUNCT
ap-2008	93	15	for	for	ADP
ap-2008	93	16	extremely	extremely	ADV
ap-2008	93	17	large	large	ADJ
ap-2008	93	18	τfir	τfir	NOUN
ap-2008	93	19	for	for	ADP
ap-2008	93	20	which	which	PRON
ap-2008	93	21	the	the	DET
ap-2008	93	22	saturation	saturation	NOUN
ap-2008	93	23	temperature	temperature	NOUN
ap-2008	93	24	is	be	AUX
ap-2008	93	25	reached	reach	VERB
ap-2008	93	26	.	.	PUNCT
ap-2008	94	1	we	we	PRON
ap-2008	94	2	show	show	VERB
ap-2008	94	3	that	that	SCONJ
ap-2008	94	4	τvis	τvis	ADP
ap-2008	94	5	is	be	AUX
ap-2008	94	6	sufficiently	sufficiently	ADV
ap-2008	94	7	powerful	powerful	ADJ
ap-2008	94	8	to	to	PART
ap-2008	94	9	create	create	VERB
ap-2008	94	10	an	an	DET
ap-2008	94	11	anti	anti	ADJ
ap-2008	94	12	-	-	NOUN
ap-2008	94	13	ghe	ghe	NOUN
ap-2008	94	14	even	even	ADV
ap-2008	94	15	under	under	ADP
ap-2008	94	16	the	the	DET
ap-2008	94	17	most	most	ADV
ap-2008	94	18	adverse	adverse	ADJ
ap-2008	94	19	condition	condition	NOUN
ap-2008	94	20	.	.	PUNCT
ap-2008	95	1	as	as	ADV
ap-2008	95	2	long	long	ADV
ap-2008	95	3	as	as	ADP
ap-2008	95	4	τvis	τvi	VERB
ap-2008	95	5	≤	≤	NUM
ap-2008	95	6	1	1	NUM
ap-2008	95	7	the	the	DET
ap-2008	95	8	effect	effect	NOUN
ap-2008	95	9	of	of	ADP
ap-2008	95	10	τvis	τvis	NOUN
ap-2008	95	11	is	be	AUX
ap-2008	95	12	negligible	negligible	ADJ
ap-2008	95	13	,	,	PUNCT
ap-2008	95	14	but	but	CCONJ
ap-2008	95	15	for	for	ADP
ap-2008	95	16	larger	large	ADJ
ap-2008	95	17	values	value	NOUN
ap-2008	95	18	,	,	PUNCT
ap-2008	95	19	the	the	DET
ap-2008	95	20	effect	effect	NOUN
ap-2008	95	21	is	be	AUX
ap-2008	95	22	very	very	ADV
ap-2008	95	23	noticeable	noticeable	ADJ
ap-2008	95	24	.	.	PUNCT
ap-2008	96	1	in	in	ADP
ap-2008	96	2	the	the	DET
ap-2008	96	3	limit	limit	NOUN
ap-2008	96	4	of	of	ADP
ap-2008	96	5	τvis	τvi	VERB
ap-2008	96	6	�	�	PROPN
ap-2008	96	7	100	100	NUM
ap-2008	96	8	,	,	PUNCT
ap-2008	96	9	the	the	DET
ap-2008	96	10	decrease	decrease	NOUN
ap-2008	96	11	in	in	ADP
ap-2008	96	12	temperature	temperature	NOUN
ap-2008	96	13	approaches	approach	VERB
ap-2008	96	14	an	an	DET
ap-2008	96	15	asymptotic	asymptotic	ADJ
ap-2008	96	16	value	value	NOUN
ap-2008	96	17	.	.	PUNCT
ap-2008	97	1	it	it	PRON
ap-2008	97	2	is	be	AUX
ap-2008	97	3	interesting	interesting	ADJ
ap-2008	97	4	to	to	PART
ap-2008	97	5	note	note	VERB
ap-2008	97	6	that	that	SCONJ
ap-2008	97	7	irrespective	irrespective	ADV
ap-2008	97	8	of	of	ADP
ap-2008	97	9	λrad	λrad	NOUN
ap-2008	97	10	,	,	PUNCT
ap-2008	97	11	the	the	DET
ap-2008	97	12	minimal	minimal	ADJ
ap-2008	97	13	temperature	temperature	NOUN
ap-2008	97	14	reached	reach	VERB
ap-2008	97	15	is	be	AUX
ap-2008	97	16	the	the	DET
ap-2008	97	17	same	same	ADJ
ap-2008	97	18	.	.	PUNCT
ap-2008	98	1	finally	finally	ADV
ap-2008	98	2	,	,	PUNCT
ap-2008	98	3	the	the	DET
ap-2008	98	4	saturation	saturation	NOUN
ap-2008	98	5	temperature	temperature	NOUN
ap-2008	98	6	is	be	AUX
ap-2008	98	7	not	not	PART
ap-2008	98	8	a	a	DET
ap-2008	98	9	monotonic	monotonic	ADJ
ap-2008	98	10	function	function	NOUN
ap-2008	98	11	of	of	ADP
ap-2008	98	12	λrad	λrad	NOUN
ap-2008	98	13	.	.	PUNCT
ap-2008	99	1	4	4	X
ap-2008	99	2	.	.	X
ap-2008	99	3	the	the	DET
ap-2008	99	4	resolution	resolution	NOUN
ap-2008	99	5	of	of	ADP
ap-2008	99	6	the	the	DET
ap-2008	99	7	simpson	simpson	PROPN
ap-2008	99	8	paradox	paradox	PROPN
ap-2008	99	9	in	in	ADP
ap-2008	99	10	1927	1927	NUM
ap-2008	99	11	simpson	simpson	NOUN
ap-2008	99	12	treated	treat	VERB
ap-2008	99	13	the	the	DET
ap-2008	99	14	radiative	radiative	ADJ
ap-2008	99	15	transfer	transfer	NOUN
ap-2008	99	16	problem	problem	NOUN
ap-2008	99	17	in	in	ADP
ap-2008	99	18	planetary	planetary	ADJ
ap-2008	99	19	atmospheres	atmosphere	NOUN
ap-2008	99	20	,	,	PUNCT
ap-2008	99	21	and	and	CCONJ
ap-2008	99	22	tacitly	tacitly	ADV
ap-2008	99	23	assumed	assume	VERB
ap-2008	99	24	:	:	PUNCT
ap-2008	99	25	(	(	PUNCT
ap-2008	99	26	a	a	X
ap-2008	99	27	)	)	PUNCT
ap-2008	99	28	that	that	PRON
ap-2008	99	29	λcut	λcut	ADJ
ap-2008	99	30	≡	≡	PROPN
ap-2008	99	31	λrad	λrad	PROPN
ap-2008	99	32	.	.	PUNCT
ap-2008	100	1	(	(	PUNCT
ap-2008	100	2	b	b	X
ap-2008	100	3	)	)	PUNCT
ap-2008	100	4	the	the	DET
ap-2008	100	5	existence	existence	NOUN
ap-2008	100	6	of	of	ADP
ap-2008	100	7	lte	lte	PROPN
ap-2008	100	8	for	for	ADP
ap-2008	100	9	the	the	DET
ap-2008	100	10	long	long	ADJ
ap-2008	100	11	wavelength	wavelength	NOUN
ap-2008	100	12	range	range	NOUN
ap-2008	100	13	.	.	PUNCT
ap-2008	101	1	under	under	ADP
ap-2008	101	2	these	these	DET
ap-2008	101	3	assumptions	assumption	NOUN
ap-2008	101	4	,	,	PUNCT
ap-2008	101	5	he	he	PRON
ap-2008	101	6	found	find	VERB
ap-2008	101	7	that	that	SCONJ
ap-2008	101	8	the	the	DET
ap-2008	101	9	temperature	temperature	NOUN
ap-2008	101	10	of	of	ADP
ap-2008	101	11	the	the	DET
ap-2008	101	12	atmosphere	atmosphere	NOUN
ap-2008	101	13	is	be	AUX
ap-2008	101	14	given	give	VERB
ap-2008	101	15	by	by	ADP
ap-2008	101	16	:	:	PUNCT
ap-2008	101	17	t	t	PROPN
ap-2008	101	18	4	4	NUM
ap-2008	101	19	p	p	NOUN
ap-2008	101	20	(	(	PUNCT
ap-2008	101	21	τ	τ	X
ap-2008	101	22	)	)	PUNCT
ap-2008	101	23	=	=	PUNCT
ap-2008	102	1	(	(	PUNCT
ap-2008	102	2	1	1	NUM
ap-2008	102	3	+	+	NUM
ap-2008	102	4	3τ	3τ	NUM
ap-2008	102	5	4	4	NUM
ap-2008	102	6	)	)	PUNCT
ap-2008	102	7	(	(	PUNCT
ap-2008	102	8	1−	1−	NUM
ap-2008	102	9	〈	〈	PROPN
ap-2008	102	10	a	a	PRON
ap-2008	102	11	〉	〉	NOUN
ap-2008	102	12	)	)	PUNCT
ap-2008	102	13	4	4	NUM
ap-2008	102	14	(	(	PUNCT
ap-2008	102	15	r∗	r∗	PROPN
ap-2008	102	16	d	d	NOUN
ap-2008	102	17	)	)	PUNCT
ap-2008	102	18	2	2	NUM
ap-2008	102	19	t	t	NOUN
ap-2008	102	20	4	4	NUM
ap-2008	102	21	∗	∗	NOUN
ap-2008	102	22	,	,	PUNCT
ap-2008	102	23	(	(	PUNCT
ap-2008	102	24	6	6	NUM
ap-2008	102	25	)	)	PUNCT
ap-2008	102	26	where	where	SCONJ
ap-2008	102	27	τ	τ	PROPN
ap-2008	102	28	is	be	AUX
ap-2008	102	29	the	the	DET
ap-2008	102	30	mean	mean	ADJ
ap-2008	102	31	optical	optical	ADJ
ap-2008	102	32	depth	depth	NOUN
ap-2008	102	33	for	for	ADP
ap-2008	102	34	λ	λ	PROPN
ap-2008	102	35	≥	≥	NOUN
ap-2008	102	36	λrad	λrad	PROPN
ap-2008	102	37	,	,	PUNCT
ap-2008	102	38	which	which	PRON
ap-2008	102	39	is	be	AUX
ap-2008	102	40	measured	measure	VERB
ap-2008	102	41	from	from	ADP
ap-2008	102	42	the	the	DET
ap-2008	102	43	top	top	NOUN
ap-2008	102	44	of	of	ADP
ap-2008	102	45	the	the	DET
ap-2008	102	46	atmosphere	atmosphere	NOUN
ap-2008	102	47	downward	downward	ADV
ap-2008	102	48	.	.	PUNCT
ap-2008	103	1	〈	〈	PROPN
ap-2008	103	2	a	a	DET
ap-2008	103	3	〉	〉	PROPN
ap-2008	103	4	is	be	AUX
ap-2008	103	5	the	the	DET
ap-2008	103	6	mean	mean	ADJ
ap-2008	103	7	albedo	albedo	NOUN
ap-2008	103	8	.	.	PUNCT
ap-2008	104	1	simpson	simpson	PROPN
ap-2008	104	2	did	do	AUX
ap-2008	104	3	not	not	PART
ap-2008	104	4	specify	specify	VERB
ap-2008	104	5	how	how	SCONJ
ap-2008	104	6	τ	τ	PROPN
ap-2008	104	7	is	be	AUX
ap-2008	104	8	evaluated	evaluate	VERB
ap-2008	104	9	,	,	PUNCT
ap-2008	104	10	presumably	presumably	ADV
ap-2008	104	11	it	it	PRON
ap-2008	104	12	was	be	AUX
ap-2008	104	13	the	the	DET
ap-2008	104	14	planck	planck	NOUN
ap-2008	104	15	mean	mean	VERB
ap-2008	104	16	.	.	PUNCT
ap-2008	105	1	in	in	ADP
ap-2008	105	2	particular	particular	ADJ
ap-2008	105	3	,	,	PUNCT
ap-2008	105	4	the	the	DET
ap-2008	105	5	temperature	temperature	NOUN
ap-2008	105	6	near	near	ADP
ap-2008	105	7	the	the	DET
ap-2008	105	8	surface	surface	NOUN
ap-2008	105	9	is	be	AUX
ap-2008	105	10	obtained	obtain	VERB
ap-2008	105	11	by	by	ADP
ap-2008	105	12	substituting	substitute	VERB
ap-2008	105	13	τ	τ	X
ap-2008	105	14	=	=	SYM
ap-2008	105	15	τtot	τtot	ADJ
ap-2008	105	16	.	.	PUNCT
ap-2008	106	1	obviously	obviously	ADV
ap-2008	106	2	,	,	PUNCT
ap-2008	106	3	as	as	ADP
ap-2008	106	4	τtot	τtot	ADJ
ap-2008	106	5	→∞	→∞	NOUN
ap-2008	106	6	,	,	PUNCT
ap-2008	106	7	so	so	ADV
ap-2008	106	8	does	do	VERB
ap-2008	106	9	tp	tp	NOUN
ap-2008	106	10	.	.	PUNCT
ap-2008	107	1	for	for	ADP
ap-2008	107	2	sufficiently	sufficiently	ADV
ap-2008	107	3	large	large	ADJ
ap-2008	107	4	τtot	τtot	ADJ
ap-2008	107	5	(	(	PUNCT
ap-2008	107	6	τtot	τtot	ADJ
ap-2008	108	1	≈	≈	PROPN
ap-2008	108	2	3.8×	3.8×	NUM
ap-2008	108	3	105	105	NUM
ap-2008	108	4	)	)	PUNCT
ap-2008	108	5	,	,	PUNCT
ap-2008	108	6	the	the	DET
ap-2008	108	7	temperature	temperature	NOUN
ap-2008	108	8	of	of	ADP
ap-2008	108	9	the	the	DET
ap-2008	108	10	planet	planet	NOUN
ap-2008	108	11	reaches	reach	VERB
ap-2008	108	12	the	the	DET
ap-2008	108	13	temperature	temperature	NOUN
ap-2008	108	14	of	of	ADP
ap-2008	108	15	the	the	DET
ap-2008	108	16	central	central	ADJ
ap-2008	108	17	star	star	NOUN
ap-2008	108	18	and	and	CCONJ
ap-2008	108	19	can	can	AUX
ap-2008	108	20	even	even	ADV
ap-2008	108	21	surpass	surpass	VERB
ap-2008	108	22	it	it	PRON
ap-2008	108	23	.	.	PUNCT
ap-2008	109	1	we	we	PRON
ap-2008	109	2	note	note	VERB
ap-2008	109	3	that	that	SCONJ
ap-2008	109	4	there	there	PRON
ap-2008	109	5	are	be	VERB
ap-2008	109	6	particular	particular	ADJ
ap-2008	109	7	wavelength	wavelength	NOUN
ap-2008	109	8	ranges	range	NOUN
ap-2008	109	9	in	in	ADP
ap-2008	109	10	the	the	DET
ap-2008	109	11	far	far	ADJ
ap-2008	109	12	ir	ir	NOUN
ap-2008	109	13	,	,	PUNCT
ap-2008	109	14	for	for	ADP
ap-2008	109	15	which	which	PRON
ap-2008	109	16	the	the	DET
ap-2008	109	17	total	total	ADJ
ap-2008	109	18	optical	optical	ADJ
ap-2008	109	19	depth	depth	NOUN
ap-2008	109	20	is	be	AUX
ap-2008	109	21	as	as	ADV
ap-2008	109	22	high	high	ADJ
ap-2008	109	23	as	as	ADP
ap-2008	109	24	104	104	NUM
ap-2008	109	25	.	.	PUNCT
ap-2008	110	1	the	the	DET
ap-2008	110	2	possibility	possibility	NOUN
ap-2008	110	3	of	of	ADP
ap-2008	110	4	a	a	DET
ap-2008	110	5	temperature	temperature	NOUN
ap-2008	110	6	runaway	runaway	NOUN
ap-2008	110	7	,	,	PUNCT
ap-2008	110	8	as	as	SCONJ
ap-2008	110	9	predicted	predict	VERB
ap-2008	110	10	by	by	ADP
ap-2008	110	11	the	the	DET
ap-2008	110	12	simple	simple	ADJ
ap-2008	110	13	simpson	simpson	PROPN
ap-2008	110	14	solution	solution	NOUN
ap-2008	110	15	,	,	PUNCT
ap-2008	110	16	was	be	AUX
ap-2008	110	17	coined	coin	VERB
ap-2008	110	18	the	the	DET
ap-2008	110	19	simpson	simpson	PROPN
ap-2008	110	20	paradox	paradox	PROPN
ap-2008	110	21	.	.	PUNCT
ap-2008	111	1	there	there	PRON
ap-2008	111	2	were	be	VERB
ap-2008	111	3	attempts	attempt	NOUN
ap-2008	111	4	to	to	PART
ap-2008	111	5	resolve	resolve	VERB
ap-2008	111	6	the	the	DET
ap-2008	111	7	paradox	paradox	NOUN
ap-2008	111	8	by	by	ADP
ap-2008	111	9	assuming	assume	VERB
ap-2008	111	10	the	the	DET
ap-2008	111	11	existence	existence	NOUN
ap-2008	111	12	of	of	ADP
ap-2008	111	13	windows	window	NOUN
ap-2008	111	14	in	in	ADP
ap-2008	111	15	the	the	DET
ap-2008	111	16	fir	fir	NOUN
ap-2008	111	17	.	.	PUNCT
ap-2008	112	1	however	however	ADV
ap-2008	112	2	,	,	PUNCT
ap-2008	112	3	it	it	PRON
ap-2008	112	4	is	be	AUX
ap-2008	112	5	obvious	obvious	ADJ
ap-2008	112	6	that	that	SCONJ
ap-2008	112	7	as	as	ADV
ap-2008	112	8	long	long	ADV
ap-2008	112	9	as	as	SCONJ
ap-2008	112	10	the	the	DET
ap-2008	112	11	vis	vis	X
ap-2008	112	12	band	band	NOUN
ap-2008	112	13	is	be	AUX
ap-2008	112	14	ignored	ignore	VERB
ap-2008	112	15	and	and	CCONJ
ap-2008	112	16	the	the	DET
ap-2008	112	17	radiative	radiative	ADJ
ap-2008	112	18	transfer	transfer	NOUN
ap-2008	112	19	is	be	AUX
ap-2008	112	20	solved	solve	VERB
ap-2008	112	21	with	with	ADP
ap-2008	112	22	a	a	DET
ap-2008	112	23	single	single	ADJ
ap-2008	112	24	band	band	NOUN
ap-2008	112	25	,	,	PUNCT
ap-2008	112	26	there	there	PRON
ap-2008	112	27	is	be	VERB
ap-2008	112	28	no	no	DET
ap-2008	112	29	way	way	NOUN
ap-2008	112	30	to	to	PART
ap-2008	112	31	eliminate	eliminate	VERB
ap-2008	112	32	the	the	DET
ap-2008	112	33	paradox	paradox	NOUN
ap-2008	112	34	.	.	PUNCT
ap-2008	113	1	our	our	PRON
ap-2008	113	2	treatment	treatment	NOUN
ap-2008	113	3	(	(	PUNCT
ap-2008	113	4	see	see	VERB
ap-2008	113	5	[	[	X
ap-2008	113	6	9	9	NUM
ap-2008	113	7	]	]	PUNCT
ap-2008	113	8	)	)	PUNCT
ap-2008	113	9	solves	solve	VERB
ap-2008	113	10	the	the	DET
ap-2008	113	11	problem	problem	NOUN
ap-2008	113	12	,	,	PUNCT
ap-2008	113	13	as	as	SCONJ
ap-2008	113	14	we	we	PRON
ap-2008	113	15	demonstrate	demonstrate	VERB
ap-2008	113	16	that	that	SCONJ
ap-2008	113	17	for	for	ADP
ap-2008	113	18	moderate	moderate	ADJ
ap-2008	113	19	optical	optical	ADJ
ap-2008	113	20	depths	depth	NOUN
ap-2008	113	21	of	of	ADP
ap-2008	113	22	τfir	τfir	NOUN
ap-2008	113	23	,	,	PUNCT
ap-2008	113	24	the	the	DET
ap-2008	113	25	temperature	temperature	NOUN
ap-2008	113	26	saturates	saturate	VERB
ap-2008	113	27	.	.	PUNCT
ap-2008	114	1	5	5	X
ap-2008	114	2	.	.	X
ap-2008	114	3	the	the	DET
ap-2008	114	4	(	(	PUNCT
ap-2008	114	5	τvis	τvis	NOUN
ap-2008	114	6	,	,	PUNCT
ap-2008	114	7	τfir	τfir	ADJ
ap-2008	114	8	)	)	PUNCT
ap-2008	114	9	plane	plane	NOUN
ap-2008	114	10	the	the	DET
ap-2008	114	11	main	main	ADJ
ap-2008	114	12	result	result	NOUN
ap-2008	114	13	is	be	AUX
ap-2008	114	14	shown	show	VERB
ap-2008	114	15	in	in	ADP
ap-2008	114	16	fig	fig	NOUN
ap-2008	114	17	.	.	PUNCT
ap-2008	115	1	4	4	NUM
ap-2008	115	2	where	where	SCONJ
ap-2008	115	3	the	the	DET
ap-2008	115	4	contour	contour	NOUN
ap-2008	115	5	lines	line	NOUN
ap-2008	115	6	of	of	ADP
ap-2008	115	7	constant	constant	ADJ
ap-2008	115	8	tsurf	tsurf	NOUN
ap-2008	115	9	in	in	ADP
ap-2008	115	10	the	the	DET
ap-2008	115	11	(	(	PUNCT
ap-2008	115	12	τvis	τvis	NOUN
ap-2008	115	13	,	,	PUNCT
ap-2008	115	14	τfir	τfir	ADJ
ap-2008	115	15	)	)	PUNCT
ap-2008	115	16	plane	plane	NOUN
ap-2008	115	17	are	be	AUX
ap-2008	115	18	plotted	plot	VERB
ap-2008	115	19	.	.	PUNCT
ap-2008	116	1	the	the	DET
ap-2008	116	2	classical	classical	ADJ
ap-2008	116	3	picture	picture	NOUN
ap-2008	116	4	of	of	ADP
ap-2008	116	5	the	the	DET
ap-2008	116	6	greenhouse	greenhouse	NOUN
ap-2008	116	7	effect	effect	NOUN
ap-2008	116	8	,	,	PUNCT
ap-2008	116	9	where	where	SCONJ
ap-2008	116	10	τvis	τvis	NOUN
ap-2008	116	11	does	do	AUX
ap-2008	116	12	not	not	PART
ap-2008	116	13	exist	exist	VERB
ap-2008	116	14	or	or	CCONJ
ap-2008	116	15	is	be	AUX
ap-2008	116	16	merged	merge	VERB
ap-2008	116	17	with	with	ADP
ap-2008	116	18	τfir	τfir	NOUN
ap-2008	116	19	,	,	PUNCT
ap-2008	116	20	is	be	AUX
ap-2008	116	21	along	along	ADP
ap-2008	116	22	the	the	DET
ap-2008	116	23	τfir	τfir	NOUN
ap-2008	116	24	axis	axis	NOUN
ap-2008	116	25	,	,	PUNCT
ap-2008	116	26	where	where	SCONJ
ap-2008	116	27	the	the	DET
ap-2008	116	28	surface	surface	NOUN
ap-2008	116	29	temperature	temperature	NOUN
ap-2008	116	30	rises	rise	VERB
ap-2008	116	31	monotonically	monotonically	ADV
ap-2008	116	32	and	and	CCONJ
ap-2008	116	33	saturates	saturate	VERB
ap-2008	116	34	.	.	PUNCT
ap-2008	117	1	as	as	ADV
ap-2008	117	2	long	long	ADV
ap-2008	117	3	as	as	ADP
ap-2008	117	4	τvis	τvi	VERB
ap-2008	117	5	<	<	X
ap-2008	117	6	1	1	NUM
ap-2008	117	7	,	,	PUNCT
ap-2008	117	8	its	its	PRON
ap-2008	117	9	effect	effect	NOUN
ap-2008	117	10	is	be	AUX
ap-2008	117	11	small	small	ADJ
ap-2008	117	12	,	,	PUNCT
ap-2008	117	13	but	but	CCONJ
ap-2008	117	14	as	as	ADP
ap-2008	117	15	τvis	τvis	ADP
ap-2008	117	16	increases	increase	NOUN
ap-2008	117	17	,	,	PUNCT
ap-2008	117	18	its	its	PRON
ap-2008	117	19	effect	effect	NOUN
ap-2008	117	20	becomes	become	VERB
ap-2008	117	21	more	more	ADV
ap-2008	117	22	prominent	prominent	ADJ
ap-2008	117	23	.	.	PUNCT
ap-2008	118	1	for	for	ADP
ap-2008	118	2	τvis	τvi	VERB
ap-2008	118	3	∼	∼	NOUN
ap-2008	118	4	10	10	NUM
ap-2008	118	5	,	,	PUNCT
ap-2008	118	6	it	it	PRON
ap-2008	118	7	reduces	reduce	VERB
ap-2008	118	8	the	the	DET
ap-2008	118	9	saturation	saturation	NOUN
ap-2008	118	10	temperature	temperature	NOUN
ap-2008	118	11	.	.	PUNCT
ap-2008	119	1	834	834	NUM
ap-2008	119	2	vol	vol	NOUN
ap-2008	119	3	.	.	PUNCT
ap-2008	120	1	53	53	NUM
ap-2008	120	2	supplement/2013	supplement/2013	VERB
ap-2008	120	3	the	the	DET
ap-2008	120	4	sensitivity	sensitivity	NOUN
ap-2008	120	5	of	of	ADP
ap-2008	120	6	the	the	DET
ap-2008	120	7	greenhouse	greenhouse	NOUN
ap-2008	120	8	effect	effect	NOUN
ap-2008	120	9	200	200	NUM
ap-2008	120	10	250	250	NUM
ap-2008	120	11	300	300	NUM
ap-2008	120	12	350	350	NUM
ap-2008	120	13	400	400	NUM
ap-2008	120	14	greenhouse	greenhouse	NOUN
ap-2008	120	15	saturation	saturation	NOUN
ap-2008	120	16	anti	anti	NOUN
ap-2008	120	17	-	-	NOUN
ap-2008	120	18	greenhouse	greenhouse	NOUN
ap-2008	120	19	-4	-4	PUNCT
ap-2008	120	20	-3	-3	INTJ
ap-2008	121	1	-2	-2	INTJ
ap-2008	122	1	-1	-1	SYM
ap-2008	122	2	0	0	NUM
ap-2008	122	3	1	1	NUM
ap-2008	122	4	2	2	NUM
ap-2008	122	5	-1	-1	SYM
ap-2008	122	6	0	0	NUM
ap-2008	122	7	1	1	NUM
ap-2008	122	8	2	2	NUM
ap-2008	122	9	3	3	NUM
ap-2008	122	10	log10	log10	PROPN
ap-2008	122	11	τvis	τvis	ADP
ap-2008	123	1	l	l	PROPN
ap-2008	123	2	og	og	PROPN
ap-2008	123	3	10	10	NUM
ap-2008	123	4	τ	τ	PROPN
ap-2008	123	5	fi	fi	NOUN
ap-2008	123	6	r	r	NOUN
ap-2008	123	7	figure	figure	NOUN
ap-2008	123	8	4	4	NUM
ap-2008	123	9	.	.	PUNCT
ap-2008	123	10	curves	curve	NOUN
ap-2008	123	11	of	of	ADP
ap-2008	123	12	constant	constant	ADJ
ap-2008	123	13	tsurf	tsurf	NOUN
ap-2008	123	14	in	in	ADP
ap-2008	123	15	the	the	DET
ap-2008	123	16	(	(	PUNCT
ap-2008	123	17	τvis	τvis	NOUN
ap-2008	123	18	,	,	PUNCT
ap-2008	123	19	τfir	τfir	ADJ
ap-2008	123	20	)	)	PUNCT
ap-2008	123	21	plane	plane	NOUN
ap-2008	123	22	.	.	PUNCT
ap-2008	124	1	the	the	DET
ap-2008	124	2	regions	region	NOUN
ap-2008	124	3	of	of	ADP
ap-2008	124	4	saturation	saturation	NOUN
ap-2008	124	5	,	,	PUNCT
ap-2008	124	6	greenhouse	greenhouse	NOUN
ap-2008	124	7	and	and	CCONJ
ap-2008	124	8	antigreenhouse	antigreenhouse	NOUN
ap-2008	124	9	are	be	AUX
ap-2008	124	10	marked	mark	VERB
ap-2008	124	11	.	.	PUNCT
ap-2008	125	1	the	the	DET
ap-2008	125	2	(	(	PUNCT
ap-2008	125	3	τvis	τvis	NOUN
ap-2008	125	4	,	,	PUNCT
ap-2008	125	5	τfir	τfir	ADJ
ap-2008	125	6	)	)	PUNCT
ap-2008	125	7	plane	plane	NOUN
ap-2008	125	8	allows	allow	VERB
ap-2008	125	9	us	we	PRON
ap-2008	125	10	to	to	PART
ap-2008	125	11	determine	determine	VERB
ap-2008	125	12	the	the	DET
ap-2008	125	13	effect	effect	NOUN
ap-2008	125	14	that	that	SCONJ
ap-2008	125	15	the	the	DET
ap-2008	125	16	change	change	NOUN
ap-2008	125	17	in	in	ADP
ap-2008	125	18	concentration	concentration	NOUN
ap-2008	125	19	of	of	ADP
ap-2008	125	20	an	an	DET
ap-2008	125	21	atmospheric	atmospheric	ADJ
ap-2008	125	22	constituent	constituent	NOUN
ap-2008	125	23	has	have	VERB
ap-2008	125	24	,	,	PUNCT
ap-2008	125	25	once	once	SCONJ
ap-2008	125	26	we	we	PRON
ap-2008	125	27	evaluate	evaluate	VERB
ap-2008	125	28	the	the	DET
ap-2008	125	29	two	two	NUM
ap-2008	125	30	optical	optical	ADJ
ap-2008	125	31	depths	depth	NOUN
ap-2008	125	32	τvis	τvis	NOUN
ap-2008	125	33	and	and	CCONJ
ap-2008	125	34	τfir	τfir	NOUN
ap-2008	125	35	and	and	CCONJ
ap-2008	125	36	their	their	PRON
ap-2008	125	37	changes	change	NOUN
ap-2008	125	38	with	with	ADP
ap-2008	125	39	concentration	concentration	NOUN
ap-2008	125	40	.	.	PUNCT
ap-2008	126	1	in	in	ADP
ap-2008	126	2	the	the	DET
ap-2008	126	3	next	next	ADJ
ap-2008	126	4	section	section	NOUN
ap-2008	126	5	we	we	PRON
ap-2008	126	6	show	show	VERB
ap-2008	126	7	how	how	SCONJ
ap-2008	126	8	to	to	PART
ap-2008	126	9	evaluate	evaluate	VERB
ap-2008	126	10	the	the	DET
ap-2008	126	11	mean	mean	ADJ
ap-2008	126	12	optical	optical	ADJ
ap-2008	126	13	depth	depth	NOUN
ap-2008	126	14	of	of	ADP
ap-2008	126	15	the	the	DET
ap-2008	126	16	relevant	relevant	ADJ
ap-2008	126	17	bands	band	NOUN
ap-2008	126	18	.	.	PUNCT
ap-2008	127	1	6	6	X
ap-2008	127	2	.	.	X
ap-2008	127	3	the	the	DET
ap-2008	127	4	algorithm	algorithm	NOUN
ap-2008	127	5	for	for	ADP
ap-2008	127	6	the	the	DET
ap-2008	127	7	optical	optical	ADJ
ap-2008	127	8	depth	depth	NOUN
ap-2008	127	9	both	both	CCONJ
ap-2008	127	10	the	the	DET
ap-2008	127	11	planck	planck	NOUN
ap-2008	127	12	and	and	CCONJ
ap-2008	127	13	the	the	DET
ap-2008	127	14	rosseland	rosseland	NOUN
ap-2008	127	15	means	mean	VERB
ap-2008	127	16	are	be	AUX
ap-2008	127	17	poor	poor	ADJ
ap-2008	127	18	averages	average	NOUN
ap-2008	127	19	of	of	ADP
ap-2008	127	20	the	the	DET
ap-2008	127	21	absorption	absorption	NOUN
ap-2008	127	22	when	when	SCONJ
ap-2008	127	23	it	it	PRON
ap-2008	127	24	comes	come	VERB
ap-2008	127	25	to	to	ADP
ap-2008	127	26	planetary	planetary	ADJ
ap-2008	127	27	atmospheres	atmosphere	NOUN
ap-2008	127	28	,	,	PUNCT
ap-2008	127	29	where	where	SCONJ
ap-2008	127	30	molecular	molecular	ADJ
ap-2008	127	31	absorption	absorption	NOUN
ap-2008	127	32	dominates	dominate	VERB
ap-2008	127	33	.	.	PUNCT
ap-2008	128	1	two	two	NUM
ap-2008	128	2	factors	factor	NOUN
ap-2008	128	3	play	play	VERB
ap-2008	128	4	here	here	ADV
ap-2008	128	5	,	,	PUNCT
ap-2008	128	6	the	the	DET
ap-2008	128	7	existence	existence	NOUN
ap-2008	128	8	of	of	ADP
ap-2008	128	9	spectral	spectral	ADJ
ap-2008	128	10	windows	window	NOUN
ap-2008	128	11	and	and	CCONJ
ap-2008	128	12	the	the	DET
ap-2008	128	13	large	large	ADJ
ap-2008	128	14	variation	variation	NOUN
ap-2008	128	15	as	as	ADP
ap-2008	128	16	a	a	DET
ap-2008	128	17	function	function	NOUN
ap-2008	128	18	of	of	ADP
ap-2008	128	19	wavelength	wavelength	NOUN
ap-2008	128	20	.	.	PUNCT
ap-2008	129	1	in	in	ADP
ap-2008	129	2	any	any	DET
ap-2008	129	3	averaging	averaging	NOUN
ap-2008	129	4	of	of	ADP
ap-2008	129	5	this	this	DET
ap-2008	129	6	sort	sort	NOUN
ap-2008	129	7	,	,	PUNCT
ap-2008	129	8	the	the	DET
ap-2008	129	9	optimal	optimal	ADJ
ap-2008	129	10	weight	weight	NOUN
ap-2008	129	11	function	function	NOUN
ap-2008	129	12	is	be	AUX
ap-2008	129	13	the	the	DET
ap-2008	129	14	one	one	NUM
ap-2008	129	15	which	which	PRON
ap-2008	129	16	is	be	AUX
ap-2008	129	17	the	the	DET
ap-2008	129	18	closest	close	ADJ
ap-2008	129	19	to	to	ADP
ap-2008	129	20	the	the	DET
ap-2008	129	21	actual	actual	ADJ
ap-2008	129	22	solution	solution	NOUN
ap-2008	129	23	,	,	PUNCT
ap-2008	129	24	which	which	PRON
ap-2008	129	25	is	be	AUX
ap-2008	129	26	of	of	ADP
ap-2008	129	27	course	course	NOUN
ap-2008	129	28	not	not	PART
ap-2008	129	29	known	know	VERB
ap-2008	129	30	.	.	PUNCT
ap-2008	130	1	nevertheless	nevertheless	ADV
ap-2008	130	2	,	,	PUNCT
ap-2008	130	3	it	it	PRON
ap-2008	130	4	is	be	AUX
ap-2008	130	5	imperative	imperative	ADJ
ap-2008	130	6	to	to	PART
ap-2008	130	7	have	have	VERB
ap-2008	130	8	a	a	DET
ap-2008	130	9	good	good	ADJ
ap-2008	130	10	guess	guess	NOUN
ap-2008	130	11	for	for	ADP
ap-2008	130	12	the	the	DET
ap-2008	130	13	weight	weight	NOUN
ap-2008	130	14	function	function	NOUN
ap-2008	130	15	,	,	PUNCT
ap-2008	130	16	or	or	CCONJ
ap-2008	130	17	else	else	ADV
ap-2008	130	18	the	the	DET
ap-2008	130	19	results	result	NOUN
ap-2008	130	20	may	may	AUX
ap-2008	130	21	be	be	AUX
ap-2008	130	22	completely	completely	ADV
ap-2008	130	23	skewed	skewed	ADJ
ap-2008	130	24	.	.	PUNCT
ap-2008	131	1	the	the	DET
ap-2008	131	2	failure	failure	NOUN
ap-2008	131	3	of	of	ADP
ap-2008	131	4	the	the	DET
ap-2008	131	5	rosseland	rosseland	NOUN
ap-2008	131	6	mean	mean	VERB
ap-2008	131	7	is	be	AUX
ap-2008	131	8	a	a	DET
ap-2008	131	9	good	good	ADJ
ap-2008	131	10	example	example	NOUN
ap-2008	131	11	for	for	ADP
ap-2008	131	12	a	a	DET
ap-2008	131	13	poor	poor	ADJ
ap-2008	131	14	weight	weight	NOUN
ap-2008	131	15	function	function	NOUN
ap-2008	131	16	which	which	PRON
ap-2008	131	17	yields	yield	VERB
ap-2008	131	18	an	an	DET
ap-2008	131	19	unacceptable	unacceptable	ADJ
ap-2008	131	20	result	result	NOUN
ap-2008	131	21	.	.	PUNCT
ap-2008	132	1	consider	consider	VERB
ap-2008	132	2	first	first	ADV
ap-2008	132	3	the	the	DET
ap-2008	132	4	vis	vis	X
ap-2008	132	5	range	range	NOUN
ap-2008	132	6	.	.	PUNCT
ap-2008	133	1	since	since	SCONJ
ap-2008	133	2	the	the	DET
ap-2008	133	3	temperature	temperature	NOUN
ap-2008	133	4	of	of	ADP
ap-2008	133	5	the	the	DET
ap-2008	133	6	radiation	radiation	NOUN
ap-2008	133	7	is	be	AUX
ap-2008	133	8	that	that	PRON
ap-2008	133	9	of	of	ADP
ap-2008	133	10	the	the	DET
ap-2008	133	11	central	central	ADJ
ap-2008	133	12	star	star	NOUN
ap-2008	133	13	and	and	CCONJ
ap-2008	133	14	hence	hence	ADV
ap-2008	133	15	very	very	ADV
ap-2008	133	16	high	high	ADJ
ap-2008	133	17	relative	relative	ADJ
ap-2008	133	18	to	to	ADP
ap-2008	133	19	that	that	PRON
ap-2008	133	20	of	of	ADP
ap-2008	133	21	the	the	DET
ap-2008	133	22	planetary	planetary	ADJ
ap-2008	133	23	atmosphere	atmosphere	NOUN
ap-2008	133	24	,	,	PUNCT
ap-2008	133	25	the	the	DET
ap-2008	133	26	zeroth	zeroth	ADJ
ap-2008	133	27	solution	solution	NOUN
ap-2008	133	28	for	for	ADP
ap-2008	133	29	the	the	DET
ap-2008	133	30	transmission	transmission	NOUN
ap-2008	133	31	of	of	ADP
ap-2008	133	32	specific	specific	ADJ
ap-2008	133	33	intensity	intensity	NOUN
ap-2008	133	34	i(z	i(z	NOUN
ap-2008	133	35	,	,	PUNCT
ap-2008	133	36	ν	ν	X
ap-2008	133	37	)	)	PUNCT
ap-2008	133	38	is	be	AUX
ap-2008	133	39	given	give	VERB
ap-2008	133	40	by	by	ADP
ap-2008	133	41	i(z	i(z	NOUN
ap-2008	133	42	,	,	PUNCT
ap-2008	133	43	ν	ν	NOUN
ap-2008	133	44	)	)	PUNCT
ap-2008	133	45	=	=	SYM
ap-2008	133	46	itoa∗,ν	itoa∗,ν	PROPN
ap-2008	133	47	e−κ(ν)z	e−κ(ν)z	PROPN
ap-2008	133	48	.	.	PUNCT
ap-2008	134	1	(	(	PUNCT
ap-2008	134	2	7	7	X
ap-2008	134	3	)	)	PUNCT
ap-2008	134	4	here	here	ADV
ap-2008	134	5	itoa∗,ν	itoa∗,ν	PROPN
ap-2008	134	6	is	be	AUX
ap-2008	134	7	the	the	DET
ap-2008	134	8	stellar	stellar	ADJ
ap-2008	134	9	specific	specific	ADJ
ap-2008	134	10	intensity	intensity	NOUN
ap-2008	134	11	at	at	ADP
ap-2008	134	12	the	the	DET
ap-2008	134	13	top	top	NOUN
ap-2008	134	14	of	of	ADP
ap-2008	134	15	the	the	DET
ap-2008	134	16	atmosphere	atmosphere	NOUN
ap-2008	134	17	.	.	PUNCT
ap-2008	135	1	to	to	PART
ap-2008	135	2	secure	secure	VERB
ap-2008	135	3	the	the	DET
ap-2008	135	4	energy	energy	NOUN
ap-2008	135	5	flux	flux	NOUN
ap-2008	135	6	transfer	transfer	NOUN
ap-2008	135	7	through	through	ADP
ap-2008	135	8	the	the	DET
ap-2008	135	9	atmosphere	atmosphere	NOUN
ap-2008	135	10	,	,	PUNCT
ap-2008	135	11	we	we	PRON
ap-2008	135	12	therefore	therefore	ADV
ap-2008	135	13	write	write	VERB
ap-2008	135	14	that:∫	that:∫	NOUN
ap-2008	135	15	ν2	ν2	NOUN
ap-2008	135	16	ν1	ν1	NOUN
ap-2008	136	1	itoa∗,ν	itoa∗,ν	PROPN
ap-2008	136	2	e−κ(ν)zdν	e−κ(ν)zdν	PROPN
ap-2008	136	3	=	=	SYM
ap-2008	136	4	e−〈τvis	e−〈τvis	PROPN
ap-2008	136	5	〉	〉	PROPN
ap-2008	136	6	∫	∫	NOUN
ap-2008	136	7	ν2	ν2	NOUN
ap-2008	136	8	ν1	ν1	NOUN
ap-2008	136	9	itoa∗,ν	itoa∗,ν	PROPN
ap-2008	136	10	dν	dν	VERB
ap-2008	136	11	.	.	PUNCT
ap-2008	137	1	(	(	PUNCT
ap-2008	137	2	8)	8)	NUM
ap-2008	137	3	next	next	ADV
ap-2008	137	4	we	we	PRON
ap-2008	137	5	note	note	VERB
ap-2008	137	6	that	that	SCONJ
ap-2008	137	7	the	the	DET
ap-2008	137	8	radiation	radiation	NOUN
ap-2008	137	9	interacts	interact	VERB
ap-2008	137	10	with	with	ADP
ap-2008	137	11	the	the	DET
ap-2008	137	12	atmosphere	atmosphere	NOUN
ap-2008	137	13	,	,	PUNCT
ap-2008	137	14	which	which	PRON
ap-2008	137	15	is	be	AUX
ap-2008	137	16	at	at	ADP
ap-2008	137	17	temperature	temperature	NOUN
ap-2008	137	18	tatm	tatm	ADJ
ap-2008	137	19	,	,	PUNCT
ap-2008	137	20	and	and	CCONJ
ap-2008	137	21	the	the	DET
ap-2008	137	22	stellar	stellar	ADJ
ap-2008	137	23	radiation	radiation	NOUN
ap-2008	137	24	is	be	AUX
ap-2008	137	25	to	to	ADP
ap-2008	137	26	a	a	DET
ap-2008	137	27	good	good	ADJ
ap-2008	137	28	approximation	approximation	NOUN
ap-2008	137	29	that	that	PRON
ap-2008	137	30	of	of	ADP
ap-2008	137	31	a	a	DET
ap-2008	137	32	black	black	ADJ
ap-2008	137	33	body	body	NOUN
ap-2008	137	34	at	at	ADP
ap-2008	137	35	temperature	temperature	NOUN
ap-2008	137	36	t∗	t∗	NOUN
ap-2008	137	37	,	,	PUNCT
ap-2008	137	38	so	so	SCONJ
ap-2008	137	39	we	we	PRON
ap-2008	137	40	have	have	VERB
ap-2008	137	41	:	:	PUNCT
ap-2008	138	1	〈	〈	PROPN
ap-2008	138	2	τvis	τvis	NOUN
ap-2008	138	3	〉	〉	NOUN
ap-2008	138	4	=	=	SYM
ap-2008	138	5	−	−	PROPN
ap-2008	138	6	log	log	NOUN
ap-2008	138	7	(	(	PUNCT
ap-2008	138	8	∫	∫	PROPN
ap-2008	138	9	ν2	ν2	PROPN
ap-2008	138	10	ν1	ν1	PROPN
ap-2008	138	11	b(t∗	b(t∗	NOUN
ap-2008	138	12	,	,	PUNCT
ap-2008	138	13	ν)e−τ(ν	ν)e−τ(ν	ADV
ap-2008	138	14	,	,	PUNCT
ap-2008	138	15	tatm)dν∫	tatm)dν∫	VERB
ap-2008	138	16	ν2	ν2	PROPN
ap-2008	138	17	ν1	ν1	NOUN
ap-2008	138	18	b(t∗	b(t∗	NOUN
ap-2008	138	19	,	,	PUNCT
ap-2008	138	20	ν)dν	ν)dν	PROPN
ap-2008	138	21	)	)	PUNCT
ap-2008	138	22	,	,	PUNCT
ap-2008	138	23	(	(	PUNCT
ap-2008	138	24	9	9	X
ap-2008	138	25	)	)	PUNCT
ap-2008	138	26	where	where	SCONJ
ap-2008	138	27	ν1	ν1	NOUN
ap-2008	138	28	and	and	CCONJ
ap-2008	138	29	ν2	ν2	NOUN
ap-2008	138	30	correspond	correspond	VERB
ap-2008	138	31	to	to	ADP
ap-2008	138	32	the	the	DET
ap-2008	138	33	boundaries	boundary	NOUN
ap-2008	138	34	of	of	ADP
ap-2008	138	35	the	the	DET
ap-2008	138	36	vis	vis	X
ap-2008	138	37	range	range	NOUN
ap-2008	138	38	,	,	PUNCT
ap-2008	138	39	tatm	tatm	PROPN
ap-2008	138	40	is	be	AUX
ap-2008	138	41	the	the	DET
ap-2008	138	42	temperature	temperature	NOUN
ap-2008	138	43	of	of	ADP
ap-2008	138	44	the	the	DET
ap-2008	138	45	atmosphere	atmosphere	NOUN
ap-2008	138	46	and	and	CCONJ
ap-2008	138	47	τvis	τvis	NOUN
ap-2008	138	48	is	be	AUX
ap-2008	138	49	the	the	DET
ap-2008	138	50	total	total	ADJ
ap-2008	138	51	average	average	ADJ
ap-2008	138	52	optical	optical	ADJ
ap-2008	138	53	depth	depth	NOUN
ap-2008	138	54	for	for	ADP
ap-2008	138	55	this	this	DET
ap-2008	138	56	range	range	NOUN
ap-2008	138	57	.	.	PUNCT
ap-2008	139	1	it	it	PRON
ap-2008	139	2	is	be	AUX
ap-2008	139	3	important	important	ADJ
ap-2008	139	4	to	to	PART
ap-2008	139	5	note	note	VERB
ap-2008	139	6	that	that	SCONJ
ap-2008	139	7	the	the	DET
ap-2008	139	8	temperature	temperature	NOUN
ap-2008	139	9	in	in	ADP
ap-2008	139	10	the	the	DET
ap-2008	139	11	weighting	weighting	NOUN
ap-2008	139	12	function	function	NOUN
ap-2008	139	13	is	be	AUX
ap-2008	139	14	not	not	PART
ap-2008	139	15	that	that	PRON
ap-2008	139	16	of	of	ADP
ap-2008	139	17	the	the	DET
ap-2008	139	18	atmosphere	atmosphere	NOUN
ap-2008	139	19	through	through	ADP
ap-2008	139	20	which	which	PRON
ap-2008	139	21	the	the	DET
ap-2008	139	22	radiation	radiation	NOUN
ap-2008	139	23	passes	pass	VERB
ap-2008	139	24	,	,	PUNCT
ap-2008	139	25	but	but	CCONJ
ap-2008	139	26	that	that	PRON
ap-2008	139	27	of	of	ADP
ap-2008	139	28	the	the	DET
ap-2008	139	29	insolating	insolate	VERB
ap-2008	139	30	star	star	NOUN
ap-2008	139	31	–	–	PUNCT
ap-2008	139	32	the	the	DET
ap-2008	139	33	sun	sun	NOUN
ap-2008	139	34	in	in	ADP
ap-2008	139	35	the	the	DET
ap-2008	139	36	particular	particular	ADJ
ap-2008	139	37	case	case	NOUN
ap-2008	139	38	of	of	ADP
ap-2008	139	39	the	the	DET
ap-2008	139	40	earth	earth	NOUN
ap-2008	139	41	or	or	CCONJ
ap-2008	139	42	the	the	DET
ap-2008	139	43	star	star	NOUN
ap-2008	139	44	in	in	ADP
ap-2008	139	45	the	the	DET
ap-2008	139	46	general	general	ADJ
ap-2008	139	47	case	case	NOUN
ap-2008	139	48	.	.	PUNCT
ap-2008	140	1	the	the	DET
ap-2008	140	2	optical	optical	ADJ
ap-2008	140	3	depth	depth	NOUN
ap-2008	140	4	,	,	PUNCT
ap-2008	140	5	∫	∫	PROPN
ap-2008	140	6	z	z	NOUN
ap-2008	140	7	0	0	PUNCT
ap-2008	141	1	κ(λ	κ(λ	VERB
ap-2008	141	2	,	,	PUNCT
ap-2008	141	3	t	t	PROPN
ap-2008	141	4	,	,	PUNCT
ap-2008	141	5	p	p	NOUN
ap-2008	141	6	)	)	PUNCT
ap-2008	141	7	dλ	dλ	NOUN
ap-2008	141	8	,	,	PUNCT
ap-2008	141	9	however	however	ADV
ap-2008	141	10	,	,	PUNCT
ap-2008	141	11	is	be	AUX
ap-2008	141	12	calculated	calculate	VERB
ap-2008	141	13	with	with	ADP
ap-2008	141	14	the	the	DET
ap-2008	141	15	temperature	temperature	NOUN
ap-2008	141	16	of	of	ADP
ap-2008	141	17	the	the	DET
ap-2008	141	18	atmosphere	atmosphere	NOUN
ap-2008	141	19	.	.	PUNCT
ap-2008	142	1	the	the	DET
ap-2008	142	2	expression	expression	NOUN
ap-2008	142	3	so	so	ADV
ap-2008	142	4	obtained	obtain	VERB
ap-2008	142	5	reduces	reduce	NOUN
ap-2008	142	6	to	to	ADP
ap-2008	142	7	the	the	DET
ap-2008	142	8	trivial	trivial	ADJ
ap-2008	142	9	results	result	NOUN
ap-2008	142	10	in	in	ADP
ap-2008	142	11	various	various	ADJ
ap-2008	142	12	limits	limit	NOUN
ap-2008	142	13	.	.	PUNCT
ap-2008	143	1	if	if	SCONJ
ap-2008	143	2	there	there	PRON
ap-2008	143	3	is	be	VERB
ap-2008	143	4	no	no	DET
ap-2008	143	5	absorption	absorption	NOUN
ap-2008	143	6	in	in	ADP
ap-2008	143	7	the	the	DET
ap-2008	143	8	vis	vis	X
ap-2008	143	9	range	range	NOUN
ap-2008	143	10	,	,	PUNCT
ap-2008	143	11	then	then	ADV
ap-2008	143	12	τvis	τvis	ADV
ap-2008	143	13	=	=	PROPN
ap-2008	143	14	0	0	X
ap-2008	143	15	.	.	PUNCT
ap-2008	144	1	when	when	SCONJ
ap-2008	144	2	the	the	DET
ap-2008	144	3	optical	optical	ADJ
ap-2008	144	4	depth	depth	NOUN
ap-2008	144	5	is	be	AUX
ap-2008	144	6	constant	constant	ADJ
ap-2008	144	7	,	,	PUNCT
ap-2008	144	8	then	then	ADV
ap-2008	144	9	τvis	τvis	ADV
ap-2008	144	10	is	be	AUX
ap-2008	144	11	equal	equal	ADJ
ap-2008	144	12	to	to	ADP
ap-2008	144	13	this	this	DET
ap-2008	144	14	constant	constant	ADJ
ap-2008	144	15	as	as	ADV
ap-2008	144	16	well	well	ADV
ap-2008	144	17	.	.	PUNCT
ap-2008	145	1	6.1	6.1	NUM
ap-2008	145	2	.	.	PUNCT
ap-2008	145	3	transition	transition	NOUN
ap-2008	145	4	in	in	ADP
ap-2008	145	5	the	the	DET
ap-2008	145	6	far	far	ADV
ap-2008	145	7	infrared	infrared	ADJ
ap-2008	145	8	domain	domain	NOUN
ap-2008	145	9	consider	consider	VERB
ap-2008	145	10	now	now	ADV
ap-2008	145	11	the	the	DET
ap-2008	145	12	radiative	radiative	ADJ
ap-2008	145	13	transfer	transfer	NOUN
ap-2008	145	14	in	in	ADP
ap-2008	145	15	the	the	DET
ap-2008	145	16	fir	fir	NOUN
ap-2008	145	17	range	range	NOUN
ap-2008	145	18	.	.	PUNCT
ap-2008	146	1	let	let	VERB
ap-2008	146	2	τ	τ	PROPN
ap-2008	146	3	be	be	AUX
ap-2008	146	4	measured	measure	VERB
ap-2008	146	5	from	from	ADP
ap-2008	146	6	the	the	DET
ap-2008	146	7	top	top	NOUN
ap-2008	146	8	of	of	ADP
ap-2008	146	9	the	the	DET
ap-2008	146	10	atmosphere	atmosphere	NOUN
ap-2008	146	11	downwards	downward	NOUN
ap-2008	146	12	.	.	PUNCT
ap-2008	147	1	if	if	SCONJ
ap-2008	147	2	we	we	PRON
ap-2008	147	3	write	write	VERB
ap-2008	147	4	i+(τ	i+(τ	NOUN
ap-2008	147	5	)	)	PUNCT
ap-2008	147	6	as	as	ADP
ap-2008	147	7	the	the	DET
ap-2008	147	8	thermal	thermal	ADJ
ap-2008	147	9	flux	flux	NOUN
ap-2008	147	10	towards	towards	ADP
ap-2008	147	11	larger	large	ADJ
ap-2008	147	12	optical	optical	ADJ
ap-2008	147	13	depths	depth	NOUN
ap-2008	147	14	(	(	PUNCT
ap-2008	147	15	downwards	downwards	NOUN
ap-2008	147	16	)	)	PUNCT
ap-2008	147	17	and	and	CCONJ
ap-2008	147	18	i−(τ	i−(τ	PROPN
ap-2008	147	19	)	)	PUNCT
ap-2008	147	20	as	as	SCONJ
ap-2008	147	21	the	the	DET
ap-2008	147	22	flux	flux	NOUN
ap-2008	147	23	towards	towards	ADP
ap-2008	147	24	smaller	small	ADJ
ap-2008	147	25	optical	optical	ADJ
ap-2008	147	26	depths	depth	NOUN
ap-2008	147	27	,	,	PUNCT
ap-2008	147	28	then	then	ADV
ap-2008	147	29	the	the	DET
ap-2008	147	30	solutions	solution	NOUN
ap-2008	147	31	for	for	ADP
ap-2008	147	32	i±(τ	i±(τ	PROPN
ap-2008	147	33	)	)	PUNCT
ap-2008	147	34	under	under	ADP
ap-2008	147	35	the	the	DET
ap-2008	147	36	above	above	ADJ
ap-2008	147	37	approximations	approximation	NOUN
ap-2008	147	38	are	be	AUX
ap-2008	147	39	:	:	PUNCT
ap-2008	147	40	f	f	X
ap-2008	147	41	(	(	PUNCT
ap-2008	147	42	τ	τ	PROPN
ap-2008	147	43	)	)	PUNCT
ap-2008	147	44	≡	≡	PROPN
ap-2008	147	45	i−(τ)−	i−(τ)−	PROPN
ap-2008	147	46	i+(τ	i+(τ	PROPN
ap-2008	147	47	)	)	PUNCT
ap-2008	147	48	=	=	SYM
ap-2008	148	1	const	const	ADJ
ap-2008	148	2	.	.	PUNCT
ap-2008	149	1	(	(	PUNCT
ap-2008	149	2	10	10	NUM
ap-2008	149	3	)	)	PUNCT
ap-2008	149	4	e(τ	e(τ	NOUN
ap-2008	149	5	)	)	PUNCT
ap-2008	149	6	≡	≡	PROPN
ap-2008	149	7	i−(τ	i−(τ	PROPN
ap-2008	149	8	)	)	PUNCT
ap-2008	150	1	+	+	SYM
ap-2008	150	2	i+(τ	i+(τ	NOUN
ap-2008	150	3	)	)	PUNCT
ap-2008	150	4	(	(	PUNCT
ap-2008	150	5	11	11	NUM
ap-2008	150	6	)	)	PUNCT
ap-2008	150	7	=	=	PUNCT
ap-2008	151	1	[	[	X
ap-2008	151	2	i−(τ)−	i−(τ)−	NOUN
ap-2008	151	3	i+(τ	i+(τ	PROPN
ap-2008	151	4	)	)	PUNCT
ap-2008	151	5	]	]	PUNCT
ap-2008	151	6	τ	τ	PROPN
ap-2008	151	7	+	+	CCONJ
ap-2008	151	8	const	const	ADJ
ap-2008	151	9	.	.	PUNCT
ap-2008	152	1	by	by	ADP
ap-2008	152	2	comparing	compare	VERB
ap-2008	152	3	the	the	DET
ap-2008	152	4	conditions	condition	NOUN
ap-2008	152	5	at	at	ADP
ap-2008	152	6	the	the	DET
ap-2008	152	7	top	top	NOUN
ap-2008	152	8	(	(	PUNCT
ap-2008	152	9	τ	τ	X
ap-2008	152	10	=	=	SYM
ap-2008	152	11	0	0	NUM
ap-2008	152	12	)	)	PUNCT
ap-2008	152	13	to	to	ADP
ap-2008	152	14	the	the	DET
ap-2008	152	15	bottom	bottom	NOUN
ap-2008	152	16	(	(	PUNCT
ap-2008	152	17	τ	τ	PROPN
ap-2008	152	18	=	=	SYM
ap-2008	152	19	τtot	τtot	PROPN
ap-2008	152	20	)	)	PUNCT
ap-2008	152	21	,	,	PUNCT
ap-2008	152	22	we	we	PRON
ap-2008	152	23	obtain	obtain	VERB
ap-2008	152	24	i−(τtot)−	i−(τtot)−	PUNCT
ap-2008	152	25	i+(τtot	i+(τtot	PROPN
ap-2008	152	26	)	)	PUNCT
ap-2008	152	27	=	=	SYM
ap-2008	152	28	i−(0)−	i−(0)−	PROPN
ap-2008	152	29	i+(0	i+(0	NOUN
ap-2008	152	30	)	)	PUNCT
ap-2008	152	31	,	,	PUNCT
ap-2008	152	32	(	(	PUNCT
ap-2008	152	33	12	12	NUM
ap-2008	152	34	)	)	PUNCT
ap-2008	152	35	i−(τtot	i−(τtot	NOUN
ap-2008	152	36	)	)	PUNCT
ap-2008	152	37	+	+	CCONJ
ap-2008	153	1	i+(τtot	i+(τtot	PROPN
ap-2008	153	2	)	)	PUNCT
ap-2008	153	3	=	=	PUNCT
ap-2008	154	1	[	[	X
ap-2008	154	2	i−(0)−	i−(0)−	PROPN
ap-2008	154	3	i+(0	i+(0	NOUN
ap-2008	154	4	)	)	PUNCT
ap-2008	154	5	]	]	PUNCT
ap-2008	155	1	τtot	τtot	X
ap-2008	156	1	+	+	CCONJ
ap-2008	156	2	[	[	X
ap-2008	156	3	i−(0	i−(0	X
ap-2008	156	4	)	)	PUNCT
ap-2008	156	5	+	+	NUM
ap-2008	156	6	i+(0	i+(0	NOUN
ap-2008	156	7	)	)	PUNCT
ap-2008	156	8	]	]	PUNCT
ap-2008	156	9	.	.	PUNCT
ap-2008	157	1	the	the	DET
ap-2008	157	2	boundary	boundary	ADJ
ap-2008	157	3	conditions	condition	NOUN
ap-2008	157	4	we	we	PRON
ap-2008	157	5	have	have	VERB
ap-2008	157	6	are	be	AUX
ap-2008	157	7	:	:	PUNCT
ap-2008	157	8	i+(0	i+(0	X
ap-2008	157	9	)	)	PUNCT
ap-2008	158	1	=	=	PUNCT
ap-2008	158	2	i∗,fir	i∗,fir	PROPN
ap-2008	158	3	and	and	CCONJ
ap-2008	158	4	i−(τtot	i−(τtot	ADJ
ap-2008	158	5	)	)	PUNCT
ap-2008	158	6	=	=	SYM
ap-2008	158	7	ip	ip	ADJ
ap-2008	158	8	,	,	PUNCT
ap-2008	158	9	fir	fir	NOUN
ap-2008	158	10	,	,	PUNCT
ap-2008	158	11	(	(	PUNCT
ap-2008	158	12	13	13	NUM
ap-2008	158	13	)	)	PUNCT
ap-2008	158	14	where	where	SCONJ
ap-2008	158	15	i∗,fir	i∗,fir	PROPN
ap-2008	158	16	is	be	AUX
ap-2008	158	17	the	the	DET
ap-2008	158	18	insolation	insolation	NOUN
ap-2008	158	19	for	for	ADP
ap-2008	158	20	λ	λ	PROPN
ap-2008	158	21	>	>	X
ap-2008	158	22	λrad	λrad	PROPN
ap-2008	158	23	and	and	CCONJ
ap-2008	158	24	ip	ip	NOUN
ap-2008	158	25	,	,	PUNCT
ap-2008	158	26	fir	fir	NOUN
ap-2008	158	27	is	be	AUX
ap-2008	158	28	the	the	DET
ap-2008	158	29	planet	planet	NOUN
ap-2008	158	30	’s	’s	PART
ap-2008	158	31	emission	emission	NOUN
ap-2008	158	32	at	at	ADP
ap-2008	158	33	λ	λ	PROPN
ap-2008	158	34	>	>	X
ap-2008	158	35	λrad	λrad	PROPN
ap-2008	158	36	.	.	PUNCT
ap-2008	159	1	it	it	PRON
ap-2008	159	2	is	be	AUX
ap-2008	159	3	generally	generally	ADV
ap-2008	159	4	assumed	assume	VERB
ap-2008	159	5	that	that	SCONJ
ap-2008	159	6	i∗,fir	i∗,fir	PROPN
ap-2008	159	7	=	=	SYM
ap-2008	159	8	0	0	X
ap-2008	159	9	.	.	PUNCT
ap-2008	160	1	however	however	ADV
ap-2008	160	2	,	,	PUNCT
ap-2008	160	3	if	if	SCONJ
ap-2008	160	4	λrad	λrad	NOUN
ap-2008	160	5	decreases	decrease	VERB
ap-2008	160	6	significantly	significantly	ADV
ap-2008	160	7	,	,	PUNCT
ap-2008	160	8	this	this	DET
ap-2008	160	9	assumption	assumption	NOUN
ap-2008	160	10	may	may	AUX
ap-2008	160	11	no	no	ADV
ap-2008	160	12	longer	long	ADV
ap-2008	160	13	be	be	AUX
ap-2008	160	14	justified	justify	VERB
ap-2008	160	15	.	.	PUNCT
ap-2008	161	1	next	next	ADV
ap-2008	161	2	we	we	PRON
ap-2008	161	3	consider	consider	VERB
ap-2008	161	4	the	the	DET
ap-2008	161	5	thermal	thermal	ADJ
ap-2008	161	6	equilibrium	equilibrium	NOUN
ap-2008	161	7	of	of	ADP
ap-2008	161	8	the	the	DET
ap-2008	161	9	surface	surface	NOUN
ap-2008	161	10	,	,	PUNCT
ap-2008	161	11	i.e.	i.e.	X
ap-2008	161	12	,	,	PUNCT
ap-2008	161	13	total	total	ADJ
ap-2008	161	14	absorption	absorption	NOUN
ap-2008	161	15	equals	equal	VERB
ap-2008	161	16	the	the	DET
ap-2008	161	17	total	total	ADJ
ap-2008	161	18	emission	emission	NOUN
ap-2008	161	19	:	:	PUNCT
ap-2008	161	20	(	(	PUNCT
ap-2008	161	21	1−a(λ))i∗,vis+iatm,↓	1−a(λ))i∗,vis+iatm,↓	X
ap-2008	161	22	=	=	SYM
ap-2008	161	23	(	(	PUNCT
ap-2008	161	24	1−a(λ))ip	1−a(λ))ip	NUM
ap-2008	161	25	,	,	PUNCT
ap-2008	161	26	vis+ip	vis+ip	NOUN
ap-2008	161	27	,	,	PUNCT
ap-2008	161	28	fir	fir	NOUN
ap-2008	161	29	,	,	PUNCT
ap-2008	161	30	(	(	PUNCT
ap-2008	161	31	14	14	NUM
ap-2008	161	32	)	)	PUNCT
ap-2008	161	33	where	where	SCONJ
ap-2008	161	34	i∗,vis	i∗,vis	PROPN
ap-2008	161	35	is	be	AUX
ap-2008	161	36	the	the	DET
ap-2008	161	37	insolation	insolation	NOUN
ap-2008	161	38	for	for	ADP
ap-2008	161	39	λ	λ	PROPN
ap-2008	161	40	<	<	X
ap-2008	161	41	λrad	λrad	PROPN
ap-2008	161	42	,	,	PUNCT
ap-2008	161	43	iatm,↓	iatm,↓	PROPN
ap-2008	161	44	is	be	AUX
ap-2008	161	45	the	the	DET
ap-2008	161	46	emission	emission	NOUN
ap-2008	161	47	of	of	ADP
ap-2008	161	48	the	the	DET
ap-2008	161	49	atmosphere	atmosphere	NOUN
ap-2008	161	50	towards	towards	ADP
ap-2008	161	51	the	the	DET
ap-2008	161	52	surface	surface	NOUN
ap-2008	161	53	835	835	NUM
ap-2008	161	54	smadar	smadar	NOUN
ap-2008	161	55	bressler	bressler	NOUN
ap-2008	161	56	,	,	PUNCT
ap-2008	161	57	giora	giora	PROPN
ap-2008	161	58	shaviv	shaviv	PROPN
ap-2008	161	59	,	,	PUNCT
ap-2008	161	60	nir	nir	PROPN
ap-2008	161	61	j	j	PROPN
ap-2008	161	62	shaviv	shaviv	PROPN
ap-2008	161	63	acta	acta	PROPN
ap-2008	161	64	polytechnica	polytechnica	PROPN
ap-2008	161	65	(	(	PUNCT
ap-2008	161	66	at	at	ADP
ap-2008	161	67	λ	λ	PROPN
ap-2008	161	68	>	>	X
ap-2008	161	69	λrad	λrad	PROPN
ap-2008	161	70	)	)	PUNCT
ap-2008	161	71	,	,	PUNCT
ap-2008	161	72	ip	ip	PROPN
ap-2008	161	73	,	,	PUNCT
ap-2008	161	74	vis	vis	X
ap-2008	161	75	the	the	DET
ap-2008	161	76	planet	planet	NOUN
ap-2008	161	77	’s	’s	PART
ap-2008	161	78	emission	emission	NOUN
ap-2008	161	79	at	at	ADP
ap-2008	161	80	λ	λ	PROPN
ap-2008	161	81	<	<	X
ap-2008	161	82	λrad	λrad	NOUN
ap-2008	161	83	and	and	CCONJ
ap-2008	161	84	a	a	PRON
ap-2008	161	85	is	be	AUX
ap-2008	161	86	the	the	DET
ap-2008	161	87	albedo	albedo	NOUN
ap-2008	161	88	at	at	ADP
ap-2008	161	89	the	the	DET
ap-2008	161	90	short	short	ADJ
ap-2008	161	91	wavelengths	wavelength	NOUN
ap-2008	161	92	.	.	PUNCT
ap-2008	162	1	our	our	PRON
ap-2008	162	2	main	main	ADJ
ap-2008	162	3	point	point	NOUN
ap-2008	162	4	is	be	AUX
ap-2008	162	5	that	that	PRON
ap-2008	162	6	ip	ip	ADJ
ap-2008	162	7	,	,	PUNCT
ap-2008	162	8	vis	vis	X
ap-2008	162	9	must	must	AUX
ap-2008	162	10	be	be	AUX
ap-2008	162	11	included	include	VERB
ap-2008	162	12	at	at	ADP
ap-2008	162	13	relatively	relatively	ADV
ap-2008	162	14	high	high	ADJ
ap-2008	162	15	surface	surface	NOUN
ap-2008	162	16	temperatures	temperature	NOUN
ap-2008	162	17	.	.	PUNCT
ap-2008	163	1	using	use	VERB
ap-2008	163	2	the	the	DET
ap-2008	163	3	two	two	NUM
ap-2008	163	4	sets	set	NOUN
ap-2008	163	5	of	of	ADP
ap-2008	163	6	eqs	eqs	PROPN
ap-2008	163	7	.	.	PROPN
ap-2008	163	8	12	12	NUM
ap-2008	163	9	and	and	CCONJ
ap-2008	163	10	13	13	NUM
ap-2008	163	11	,	,	PUNCT
ap-2008	163	12	the	the	DET
ap-2008	163	13	thermal	thermal	ADJ
ap-2008	163	14	equilibrium	equilibrium	NOUN
ap-2008	163	15	becomes	become	VERB
ap-2008	163	16	:	:	PUNCT
ap-2008	163	17	(	(	PUNCT
ap-2008	163	18	1−	1−	NUM
ap-2008	163	19	a(λ	a(λ	NOUN
ap-2008	163	20	)	)	PUNCT
ap-2008	163	21	)	)	PUNCT
ap-2008	164	1	(	(	PUNCT
ap-2008	164	2	i∗,vis	i∗,vis	ADP
ap-2008	164	3	−	−	PROPN
ap-2008	164	4	ip	ip	NOUN
ap-2008	164	5	,	,	PUNCT
ap-2008	164	6	vis	vis	X
ap-2008	164	7	)	)	PUNCT
ap-2008	164	8	=	=	SYM
ap-2008	164	9	2(ip	2(ip	NUM
ap-2008	164	10	,	,	PUNCT
ap-2008	164	11	fir	fir	NOUN
ap-2008	164	12	−	−	PROPN
ap-2008	164	13	i∗,fir	i∗,fir	PROPN
ap-2008	164	14	)	)	PUNCT
ap-2008	164	15	2	2	NUM
ap-2008	164	16	+	+	CCONJ
ap-2008	164	17	τfir	τfir	NOUN
ap-2008	164	18	,	,	PUNCT
ap-2008	164	19	tot	tot	NOUN
ap-2008	164	20	.	.	PUNCT
ap-2008	165	1	(	(	PUNCT
ap-2008	165	2	15	15	NUM
ap-2008	165	3	)	)	PUNCT
ap-2008	165	4	from	from	ADP
ap-2008	165	5	the	the	DET
ap-2008	165	6	above	above	ADJ
ap-2008	165	7	set	set	NOUN
ap-2008	165	8	of	of	ADP
ap-2008	165	9	equations	equation	NOUN
ap-2008	165	10	,	,	PUNCT
ap-2008	165	11	we	we	PRON
ap-2008	165	12	can	can	AUX
ap-2008	165	13	derive	derive	VERB
ap-2008	165	14	an	an	DET
ap-2008	165	15	expression	expression	NOUN
ap-2008	165	16	for	for	ADP
ap-2008	165	17	the	the	DET
ap-2008	165	18	average	average	ADJ
ap-2008	165	19	net	net	ADJ
ap-2008	165	20	fir	fir	NOUN
ap-2008	165	21	flux	flux	NOUN
ap-2008	165	22	(	(	PUNCT
ap-2008	165	23	per	per	ADP
ap-2008	165	24	unit	unit	NOUN
ap-2008	165	25	frequency	frequency	NOUN
ap-2008	165	26	)	)	PUNCT
ap-2008	165	27	over	over	ADP
ap-2008	165	28	a	a	DET
ap-2008	165	29	finite	finite	ADJ
ap-2008	165	30	band	band	NOUN
ap-2008	165	31	δν	δν	NOUN
ap-2008	165	32	,	,	PUNCT
ap-2008	165	33	and	and	CCONJ
ap-2008	165	34	define	define	VERB
ap-2008	165	35	an	an	DET
ap-2008	165	36	effective	effective	ADJ
ap-2008	165	37	opacity	opacity	NOUN
ap-2008	165	38	through	through	ADP
ap-2008	165	39	the	the	DET
ap-2008	165	40	following	following	NOUN
ap-2008	165	41	:	:	PUNCT
ap-2008	165	42	δifir	δifir	ADJ
ap-2008	165	43	=	=	SYM
ap-2008	165	44	1	1	NUM
ap-2008	165	45	δν	δν	NOUN
ap-2008	165	46	∫	∫	PROPN
ap-2008	165	47	ν2	ν2	PROPN
ap-2008	165	48	ν1	ν1	NOUN
ap-2008	166	1	[	[	X
ap-2008	166	2	ip	ip	ADJ
ap-2008	166	3	,	,	PUNCT
ap-2008	166	4	fir(tp)−	fir(tp)−	PROPN
ap-2008	166	5	i∗,fir	i∗,fir	PROPN
ap-2008	166	6	]	]	X
ap-2008	166	7	1	1	NUM
ap-2008	167	1	+	+	CCONJ
ap-2008	167	2	3τ(ν)/4	3τ(ν)/4	NUM
ap-2008	167	3	dν	dν	ADJ
ap-2008	167	4	(	(	PUNCT
ap-2008	167	5	16	16	NUM
ap-2008	167	6	)	)	PUNCT
ap-2008	168	1	≈	≈	PROPN
ap-2008	168	2	[	[	PUNCT
ap-2008	168	3	ip	ip	NOUN
ap-2008	168	4	,	,	PUNCT
ap-2008	168	5	fir(tp)−	fir(tp)−	PROPN
ap-2008	168	6	i∗,fir	i∗,fir	PROPN
ap-2008	168	7	]	]	PUNCT
ap-2008	168	8	δν	δν	PROPN
ap-2008	168	9	∫	∫	PROPN
ap-2008	168	10	ν2	ν2	NOUN
ap-2008	168	11	ν1	ν1	NOUN
ap-2008	168	12	dν	dν	VERB
ap-2008	168	13	1	1	NUM
ap-2008	168	14	+	+	CCONJ
ap-2008	168	15	3τ(ν)/4	3τ(ν)/4	NUM
ap-2008	168	16	≡	≡	PROPN
ap-2008	168	17	[	[	PUNCT
ap-2008	168	18	ip	ip	NOUN
ap-2008	168	19	,	,	PUNCT
ap-2008	168	20	fir(tp)−	fir(tp)−	PROPN
ap-2008	168	21	i∗,fir	i∗,fir	PROPN
ap-2008	168	22	]	]	PUNCT
ap-2008	169	1	δν	δν	PROPN
ap-2008	169	2	1	1	NUM
ap-2008	169	3	1	1	NUM
ap-2008	169	4	+	+	SYM
ap-2008	169	5	3τfir	3τfir	NUM
ap-2008	169	6	,	,	PUNCT
ap-2008	169	7	tot/4	tot/4	PROPN
ap-2008	169	8	,	,	PUNCT
ap-2008	169	9	that	that	ADV
ap-2008	169	10	is	is	ADV
ap-2008	169	11	,	,	PUNCT
ap-2008	169	12	τfir	τfir	NOUN
ap-2008	169	13	,	,	PUNCT
ap-2008	169	14	tot	tot	NOUN
ap-2008	169	15	=	=	SYM
ap-2008	169	16	4	4	NUM
ap-2008	169	17	3	3	NUM
ap-2008	169	18	∫	∫	NOUN
ap-2008	169	19	ν2	ν2	NOUN
ap-2008	169	20	ν1	ν1	NOUN
ap-2008	169	21	b(tatm	b(tatm	PROPN
ap-2008	169	22	,	,	PUNCT
ap-2008	169	23	ν)dν∫	ν)dν∫	VERB
ap-2008	169	24	ν2	ν2	PROPN
ap-2008	169	25	ν1	ν1	NOUN
ap-2008	169	26	b(tatm	b(tatm	ADJ
ap-2008	169	27	,	,	PUNCT
ap-2008	169	28	ν)dν	ν)dν	PROPN
ap-2008	169	29	1	1	NUM
ap-2008	169	30	+	+	NOUN
ap-2008	169	31	3τtot(ν)/4	3τtot(ν)/4	NUM
ap-2008	169	32	−	−	NUM
ap-2008	169	33	1	1	NUM
ap-2008	169	34			NOUN
ap-2008	169	35	.	.	PUNCT
ap-2008	170	1	(	(	PUNCT
ap-2008	170	2	17	17	NUM
ap-2008	170	3	)	)	PUNCT
ap-2008	170	4	this	this	DET
ap-2008	170	5	expression	expression	NOUN
ap-2008	170	6	for	for	ADP
ap-2008	170	7	the	the	DET
ap-2008	170	8	grey	grey	PROPN
ap-2008	170	9	absorption	absorption	NOUN
ap-2008	170	10	is	be	AUX
ap-2008	170	11	useful	useful	ADJ
ap-2008	170	12	because	because	SCONJ
ap-2008	170	13	it	it	PRON
ap-2008	170	14	encapsulates	encapsulate	VERB
ap-2008	170	15	the	the	DET
ap-2008	170	16	different	different	ADJ
ap-2008	170	17	behaviors	behavior	NOUN
ap-2008	170	18	in	in	ADP
ap-2008	170	19	the	the	DET
ap-2008	170	20	fir	fir	NOUN
ap-2008	170	21	.	.	PUNCT
ap-2008	171	1	in	in	ADP
ap-2008	171	2	particular	particular	ADJ
ap-2008	171	3	,	,	PUNCT
ap-2008	171	4	wavelength	wavelength	NOUN
ap-2008	171	5	regions	region	NOUN
ap-2008	171	6	for	for	ADP
ap-2008	171	7	which	which	PRON
ap-2008	171	8	the	the	DET
ap-2008	171	9	optical	optical	ADJ
ap-2008	171	10	depth	depth	NOUN
ap-2008	171	11	is	be	AUX
ap-2008	171	12	small	small	ADJ
ap-2008	171	13	allow	allow	VERB
ap-2008	171	14	for	for	ADP
ap-2008	171	15	a	a	DET
ap-2008	171	16	larger	large	ADJ
ap-2008	171	17	flux	flux	NOUN
ap-2008	171	18	and	and	CCONJ
ap-2008	171	19	therefore	therefore	ADV
ap-2008	171	20	receive	receive	VERB
ap-2008	171	21	a	a	DET
ap-2008	171	22	larger	large	ADJ
ap-2008	171	23	weight	weight	NOUN
ap-2008	171	24	in	in	ADP
ap-2008	171	25	the	the	DET
ap-2008	171	26	averaging	averaging	NOUN
ap-2008	171	27	.	.	PUNCT
ap-2008	172	1	this	this	PRON
ap-2008	172	2	is	be	AUX
ap-2008	172	3	present	present	ADJ
ap-2008	172	4	in	in	ADP
ap-2008	172	5	the	the	DET
ap-2008	172	6	rosseland	rosseland	NOUN
ap-2008	172	7	mean	mean	VERB
ap-2008	172	8	as	as	ADV
ap-2008	172	9	well	well	ADV
ap-2008	172	10	.	.	PUNCT
ap-2008	173	1	however	however	ADV
ap-2008	173	2	,	,	PUNCT
ap-2008	173	3	unlike	unlike	ADP
ap-2008	173	4	the	the	DET
ap-2008	173	5	rosseland	rosseland	NOUN
ap-2008	173	6	mean	mean	VERB
ap-2008	173	7	,	,	PUNCT
ap-2008	173	8	the	the	DET
ap-2008	173	9	flux	flux	NOUN
ap-2008	173	10	does	do	AUX
ap-2008	173	11	not	not	PART
ap-2008	173	12	diverge	diverge	VERB
ap-2008	173	13	if	if	SCONJ
ap-2008	173	14	the	the	DET
ap-2008	173	15	wavelength	wavelength	NOUN
ap-2008	173	16	region	region	NOUN
ap-2008	173	17	becomes	become	VERB
ap-2008	173	18	optically	optically	ADV
ap-2008	173	19	thin	thin	ADJ
ap-2008	173	20	.	.	PUNCT
ap-2008	174	1	in	in	ADP
ap-2008	174	2	such	such	DET
ap-2008	174	3	a	a	DET
ap-2008	174	4	case	case	NOUN
ap-2008	174	5	,	,	PUNCT
ap-2008	174	6	the	the	DET
ap-2008	174	7	emission	emission	NOUN
ap-2008	174	8	saturates	saturate	VERB
ap-2008	174	9	at	at	ADP
ap-2008	174	10	its	its	PRON
ap-2008	174	11	surface	surface	NOUN
ap-2008	174	12	emission	emission	NOUN
ap-2008	174	13	.	.	PUNCT
ap-2008	175	1	thus	thus	ADV
ap-2008	175	2	,	,	PUNCT
ap-2008	175	3	the	the	DET
ap-2008	175	4	mean	mean	NOUN
ap-2008	175	5	can	can	AUX
ap-2008	175	6	adequately	adequately	ADV
ap-2008	175	7	describe	describe	VERB
ap-2008	175	8	the	the	DET
ap-2008	175	9	effect	effect	NOUN
ap-2008	175	10	of	of	ADP
ap-2008	175	11	spectral	spectral	ADJ
ap-2008	175	12	windows	window	NOUN
ap-2008	175	13	.	.	PUNCT
ap-2008	176	1	7	7	X
ap-2008	176	2	.	.	PUNCT
ap-2008	176	3	actual	actual	ADJ
ap-2008	176	4	calculation	calculation	NOUN
ap-2008	176	5	the	the	DET
ap-2008	176	6	data	datum	NOUN
ap-2008	176	7	of	of	ADP
ap-2008	176	8	molecular	molecular	ADJ
ap-2008	176	9	absorption	absorption	NOUN
ap-2008	176	10	was	be	AUX
ap-2008	176	11	taken	take	VERB
ap-2008	176	12	from	from	ADP
ap-2008	176	13	the	the	DET
ap-2008	176	14	hitran	hitran	NOUN
ap-2008	176	15	compilation	compilation	NOUN
ap-2008	176	16	[	[	X
ap-2008	176	17	6	6	NUM
ap-2008	176	18	]	]	PUNCT
ap-2008	176	19	.	.	PUNCT
ap-2008	177	1	the	the	DET
ap-2008	177	2	procedure	procedure	NOUN
ap-2008	177	3	for	for	ADP
ap-2008	177	4	calculating	calculate	VERB
ap-2008	177	5	the	the	DET
ap-2008	177	6	line	line	NOUN
ap-2008	177	7	absorption	absorption	NOUN
ap-2008	177	8	is	be	AUX
ap-2008	177	9	described	describe	VERB
ap-2008	177	10	in	in	ADP
ap-2008	177	11	the	the	DET
ap-2008	177	12	manual	manual	NOUN
ap-2008	177	13	of	of	ADP
ap-2008	177	14	this	this	DET
ap-2008	177	15	compilation	compilation	NOUN
ap-2008	177	16	.	.	PUNCT
ap-2008	178	1	8	8	X
ap-2008	178	2	.	.	PUNCT
ap-2008	179	1	the	the	DET
ap-2008	179	2	effect	effect	NOUN
ap-2008	179	3	of	of	ADP
ap-2008	179	4	water	water	NOUN
ap-2008	179	5	vapor	vapor	NOUN
ap-2008	179	6	we	we	PRON
ap-2008	179	7	calculated	calculate	VERB
ap-2008	179	8	the	the	DET
ap-2008	179	9	optical	optical	ADJ
ap-2008	179	10	depths	depth	NOUN
ap-2008	179	11	for	for	ADP
ap-2008	179	12	increasing	increase	VERB
ap-2008	179	13	degrees	degree	NOUN
ap-2008	179	14	of	of	ADP
ap-2008	179	15	column	column	NOUN
ap-2008	179	16	densities	density	NOUN
ap-2008	179	17	of	of	ADP
ap-2008	179	18	water	water	NOUN
ap-2008	179	19	molecules	molecule	NOUN
ap-2008	179	20	.	.	PUNCT
ap-2008	180	1	the	the	DET
ap-2008	180	2	results	result	NOUN
ap-2008	180	3	are	be	AUX
ap-2008	180	4	shown	show	VERB
ap-2008	180	5	in	in	ADP
ap-2008	180	6	fig	fig	NOUN
ap-2008	180	7	.	.	PUNCT
ap-2008	181	1	5	5	X
ap-2008	181	2	.	.	X
ap-2008	181	3	the	the	DET
ap-2008	181	4	effect	effect	NOUN
ap-2008	181	5	of	of	ADP
ap-2008	181	6	increasing	increase	VERB
ap-2008	181	7	the	the	DET
ap-2008	181	8	column	column	NOUN
ap-2008	181	9	density	density	NOUN
ap-2008	181	10	of	of	ADP
ap-2008	181	11	water	water	NOUN
ap-2008	181	12	vapor	vapor	NOUN
ap-2008	181	13	is	be	AUX
ap-2008	181	14	shown	show	VERB
ap-2008	181	15	by	by	ADP
ap-2008	181	16	the	the	DET
ap-2008	181	17	green	green	ADJ
ap-2008	181	18	line	line	NOUN
ap-2008	181	19	.	.	PUNCT
ap-2008	182	1	the	the	DET
ap-2008	182	2	interesting	interesting	ADJ
ap-2008	182	3	phenomenon	phenomenon	NOUN
ap-2008	182	4	is	be	AUX
ap-2008	182	5	that	that	SCONJ
ap-2008	182	6	the	the	DET
ap-2008	182	7	curve	curve	NOUN
ap-2008	182	8	starts	start	VERB
ap-2008	182	9	in	in	ADP
ap-2008	182	10	the	the	DET
ap-2008	182	11	region	region	NOUN
ap-2008	182	12	for	for	ADP
ap-2008	182	13	greenhouse	greenhouse	NOUN
ap-2008	182	14	effect	effect	NOUN
ap-2008	182	15	and	and	CCONJ
ap-2008	182	16	continues	continue	VERB
ap-2008	182	17	for	for	ADP
ap-2008	182	18	sufficiently	sufficiently	ADV
ap-2008	182	19	high	high	ADJ
ap-2008	182	20	amounts	amount	NOUN
ap-2008	182	21	of	of	ADP
ap-2008	182	22	water	water	NOUN
ap-2008	182	23	,	,	PUNCT
ap-2008	182	24	towards	towards	ADP
ap-2008	182	25	the	the	DET
ap-2008	182	26	antigreenhouse	antigreenhouse	NOUN
ap-2008	182	27	domain	domain	NOUN
ap-2008	182	28	.	.	PUNCT
ap-2008	183	1	the	the	DET
ap-2008	183	2	water	water	NOUN
ap-2008	183	3	curve	curve	NOUN
ap-2008	183	4	is	be	AUX
ap-2008	183	5	not	not	PART
ap-2008	183	6	vertical	vertical	ADJ
ap-2008	183	7	but	but	CCONJ
ap-2008	183	8	has	have	VERB
ap-2008	183	9	a	a	DET
ap-2008	183	10	slope	slope	NOUN
ap-2008	183	11	.	.	PUNCT
ap-2008	184	1	the	the	DET
ap-2008	184	2	pink	pink	ADJ
ap-2008	184	3	arrow	arrow	NOUN
ap-2008	184	4	denotes	denote	NOUN
ap-2008	184	5	the	the	DET
ap-2008	184	6	result	result	NOUN
ap-2008	184	7	that	that	SCONJ
ap-2008	184	8	a	a	DET
ap-2008	184	9	model	model	NOUN
ap-2008	184	10	which	which	PRON
ap-2008	184	11	does	do	AUX
ap-2008	184	12	not	not	PART
ap-2008	184	13	distinguish	distinguish	VERB
ap-2008	184	14	between	between	ADP
ap-2008	184	15	the	the	DET
ap-2008	184	16	two	two	NUM
ap-2008	184	17	domains	domain	NOUN
ap-2008	184	18	,	,	PUNCT
ap-2008	184	19	the	the	DET
ap-2008	184	20	vis	vis	X
ap-2008	184	21	and	and	CCONJ
ap-2008	184	22	fir	fir	NOUN
ap-2008	184	23	,	,	PUNCT
ap-2008	184	24	would	would	AUX
ap-2008	184	25	yield	yield	VERB
ap-2008	184	26	.	.	PUNCT
ap-2008	185	1	as	as	SCONJ
ap-2008	185	2	we	we	PRON
ap-2008	185	3	can	can	AUX
ap-2008	185	4	see	see	VERB
ap-2008	185	5	,	,	PUNCT
ap-2008	185	6	the	the	DET
ap-2008	185	7	inclusion	inclusion	NOUN
ap-2008	185	8	of	of	ADP
ap-2008	185	9	the	the	DET
ap-2008	185	10	effect	effect	NOUN
ap-2008	185	11	of	of	ADP
ap-2008	185	12	τvis	τvis	X
ap-2008	185	13	lowers	lower	VERB
ap-2008	185	14	the	the	DET
ap-2008	185	15	predicted	predict	VERB
ap-2008	185	16	5	5	NUM
ap-2008	185	17	2.0	2.0	NUM
ap-2008	185	18	1.5	1.5	NUM
ap-2008	185	19	1.0	1.0	NUM
ap-2008	185	20	0.5	0.5	NUM
ap-2008	185	21	0.0	0.0	NUM
ap-2008	185	22	0.5	0.5	NUM
ap-2008	185	23	1.0	1.0	NUM
ap-2008	185	24	0.4	0.4	NUM
ap-2008	185	25	0.2	0.2	NUM
ap-2008	185	26	0.0	0.0	NUM
ap-2008	185	27	0.2	0.2	NUM
ap-2008	185	28	0.4	0.4	NUM
ap-2008	185	29	0.6	0.6	NUM
ap-2008	185	30	0.8	0.8	NUM
ap-2008	185	31	1.0	1.0	NUM
ap-2008	185	32	330	330	NUM
ap-2008	185	33	320	320	NUM
ap-2008	185	34	310	310	NUM
ap-2008	185	35	300	300	NUM
ap-2008	185	36	290	290	NUM
ap-2008	185	37	280	280	NUM
ap-2008	185	38	270	270	NUM
ap-2008	185	39	260	260	NUM
ap-2008	185	40	250	250	NUM
ap-2008	185	41	230	230	NUM
ap-2008	185	42	360	360	NUM
ap-2008	185	43	vis	vis	X
ap-2008	185	44	fir	fir	NOUN
ap-2008	185	45	350	350	NUM
ap-2008	185	46	340	340	NUM
ap-2008	185	47	figure	figure	NOUN
ap-2008	185	48	5	5	NUM
ap-2008	185	49	.	.	PUNCT
ap-2008	186	1	the	the	DET
ap-2008	186	2	effect	effect	NOUN
ap-2008	186	3	of	of	ADP
ap-2008	186	4	gaseous	gaseous	ADJ
ap-2008	186	5	water	water	NOUN
ap-2008	186	6	molecules	molecule	NOUN
ap-2008	186	7	in	in	ADP
ap-2008	186	8	the	the	DET
ap-2008	186	9	(	(	PUNCT
ap-2008	186	10	τfir	τfir	NOUN
ap-2008	186	11	,	,	PUNCT
ap-2008	186	12	τvis	τvis	NOUN
ap-2008	186	13	)	)	PUNCT
ap-2008	186	14	plane	plane	NOUN
ap-2008	186	15	.	.	PUNCT
ap-2008	187	1	the	the	DET
ap-2008	187	2	points	point	NOUN
ap-2008	187	3	are	be	AUX
ap-2008	187	4	increasing	increase	VERB
ap-2008	187	5	column	column	NOUN
ap-2008	187	6	density	density	NOUN
ap-2008	187	7	starting	start	VERB
ap-2008	187	8	from	from	ADP
ap-2008	187	9	zero	zero	NUM
ap-2008	187	10	to	to	ADP
ap-2008	187	11	the	the	DET
ap-2008	187	12	maximum	maximum	ADJ
ap-2008	187	13	amount	amount	NOUN
ap-2008	187	14	of	of	ADP
ap-2008	187	15	water	water	NOUN
ap-2008	187	16	vapor	vapor	NOUN
ap-2008	187	17	(	(	PUNCT
ap-2008	187	18	relative	relative	ADJ
ap-2008	187	19	humidity	humidity	NOUN
ap-2008	187	20	of	of	ADP
ap-2008	187	21	100	100	NUM
ap-2008	187	22	%	%	NOUN
ap-2008	187	23	)	)	PUNCT
ap-2008	187	24	.	.	PUNCT
ap-2008	188	1	the	the	DET
ap-2008	188	2	green	green	ADJ
ap-2008	188	3	line	line	NOUN
ap-2008	188	4	depicts	depict	VERB
ap-2008	188	5	the	the	DET
ap-2008	188	6	increase	increase	NOUN
ap-2008	188	7	in	in	ADP
ap-2008	188	8	tsurf	tsurf	ADJ
ap-2008	188	9	while	while	SCONJ
ap-2008	188	10	the	the	DET
ap-2008	188	11	pink	pink	ADJ
ap-2008	188	12	arrow	arrow	NOUN
ap-2008	188	13	depicts	depict	VERB
ap-2008	188	14	the	the	DET
ap-2008	188	15	result	result	NOUN
ap-2008	188	16	that	that	PRON
ap-2008	188	17	would	would	AUX
ap-2008	188	18	have	have	AUX
ap-2008	188	19	been	be	AUX
ap-2008	188	20	obtained	obtain	VERB
ap-2008	188	21	from	from	ADP
ap-2008	188	22	the	the	DET
ap-2008	188	23	classical	classical	ADJ
ap-2008	188	24	approach	approach	NOUN
ap-2008	188	25	,	,	PUNCT
ap-2008	188	26	which	which	PRON
ap-2008	188	27	neglects	neglect	VERB
ap-2008	188	28	τvis	τvis	NOUN
ap-2008	188	29	.	.	PUNCT
ap-2008	189	1	the	the	DET
ap-2008	189	2	arrow	arrow	NOUN
ap-2008	189	3	marks	mark	VERB
ap-2008	189	4	the	the	DET
ap-2008	189	5	location	location	NOUN
ap-2008	189	6	of	of	ADP
ap-2008	189	7	the	the	DET
ap-2008	189	8	earth	earth	NOUN
ap-2008	189	9	according	accord	VERB
ap-2008	189	10	to	to	ADP
ap-2008	189	11	the	the	DET
ap-2008	189	12	earth	earth	NOUN
ap-2008	189	13	mean	mean	NOUN
ap-2008	189	14	column	column	NOUN
ap-2008	189	15	density	density	NOUN
ap-2008	189	16	of	of	ADP
ap-2008	189	17	water	water	NOUN
ap-2008	189	18	vapor	vapor	NOUN
ap-2008	189	19	as	as	SCONJ
ap-2008	189	20	given	give	VERB
ap-2008	189	21	by	by	ADP
ap-2008	189	22	crisp	crisp	ADJ
ap-2008	190	1	[	[	X
ap-2008	190	2	2	2	NUM
ap-2008	190	3	]	]	PUNCT
ap-2008	190	4	.	.	PUNCT
ap-2008	191	1	surface	surface	NOUN
ap-2008	191	2	temperature	temperature	NOUN
ap-2008	191	3	.	.	PUNCT
ap-2008	192	1	the	the	DET
ap-2008	192	2	arrow	arrow	NOUN
ap-2008	192	3	marks	mark	VERB
ap-2008	192	4	the	the	DET
ap-2008	192	5	location	location	NOUN
ap-2008	192	6	of	of	ADP
ap-2008	192	7	the	the	DET
ap-2008	192	8	earth	earth	NOUN
ap-2008	192	9	for	for	ADP
ap-2008	192	10	a	a	DET
ap-2008	192	11	column	column	NOUN
ap-2008	192	12	density	density	NOUN
ap-2008	192	13	of	of	ADP
ap-2008	192	14	8.12×	8.12×	NUM
ap-2008	192	15	1022#/cm2	1022#/cm2	NOUN
ap-2008	192	16	,	,	PUNCT
ap-2008	192	17	as	as	SCONJ
ap-2008	192	18	given	give	VERB
ap-2008	192	19	by	by	ADP
ap-2008	192	20	crisp	crisp	ADJ
ap-2008	192	21	[	[	X
ap-2008	192	22	2	2	NUM
ap-2008	192	23	]	]	PUNCT
ap-2008	192	24	for	for	ADP
ap-2008	192	25	the	the	DET
ap-2008	192	26	mean	mean	ADJ
ap-2008	192	27	earth	earth	NOUN
ap-2008	192	28	.	.	PUNCT
ap-2008	193	1	8.1	8.1	NUM
ap-2008	193	2	.	.	PUNCT
ap-2008	194	1	line	line	NOUN
ap-2008	194	2	-	-	PUNCT
ap-2008	194	3	by	by	ADP
ap-2008	194	4	-	-	PUNCT
ap-2008	194	5	line	line	NOUN
ap-2008	194	6	models	model	NOUN
ap-2008	194	7	of	of	ADP
ap-2008	194	8	all	all	DET
ap-2008	194	9	the	the	DET
ap-2008	194	10	methods	method	NOUN
ap-2008	194	11	applied	apply	VERB
ap-2008	194	12	to	to	PART
ap-2008	194	13	describe	describe	VERB
ap-2008	194	14	the	the	DET
ap-2008	194	15	greenhouse	greenhouse	NOUN
ap-2008	194	16	effect	effect	NOUN
ap-2008	194	17	of	of	ADP
ap-2008	194	18	any	any	DET
ap-2008	194	19	gas	gas	NOUN
ap-2008	194	20	on	on	ADP
ap-2008	194	21	the	the	DET
ap-2008	194	22	atmospheric	atmospheric	ADJ
ap-2008	194	23	temperature	temperature	NOUN
ap-2008	194	24	[	[	X
ap-2008	194	25	3	3	X
ap-2008	194	26	]	]	PUNCT
ap-2008	194	27	the	the	DET
ap-2008	194	28	line	line	NOUN
ap-2008	194	29	-	-	PUNCT
ap-2008	194	30	by	by	ADP
ap-2008	194	31	-	-	PUNCT
ap-2008	194	32	line	line	NOUN
ap-2008	194	33	(	(	PUNCT
ap-2008	194	34	lbl	lbl	PROPN
ap-2008	194	35	)	)	PUNCT
ap-2008	194	36	models	model	NOUN
ap-2008	194	37	are	be	AUX
ap-2008	194	38	the	the	DET
ap-2008	194	39	most	most	ADV
ap-2008	194	40	elaborate	elaborate	ADJ
ap-2008	194	41	.	.	PUNCT
ap-2008	195	1	these	these	PRON
ap-2008	195	2	are	be	AUX
ap-2008	195	3	not	not	PART
ap-2008	195	4	full	full	ADJ
ap-2008	195	5	radiative	radiative	ADJ
ap-2008	195	6	transfer	transfer	NOUN
ap-2008	195	7	models	model	NOUN
ap-2008	195	8	but	but	CCONJ
ap-2008	195	9	radiation	radiation	NOUN
ap-2008	195	10	transmittance	transmittance	NOUN
ap-2008	195	11	models	model	NOUN
ap-2008	195	12	.	.	PUNCT
ap-2008	196	1	these	these	DET
ap-2008	196	2	models	model	NOUN
ap-2008	196	3	calculate	calculate	VERB
ap-2008	196	4	the	the	DET
ap-2008	196	5	absorbed	absorb	VERB
ap-2008	196	6	energy	energy	NOUN
ap-2008	196	7	by	by	ADP
ap-2008	196	8	each	each	DET
ap-2008	196	9	absorption	absorption	NOUN
ap-2008	196	10	line	line	NOUN
ap-2008	196	11	.	.	PUNCT
ap-2008	197	1	the	the	DET
ap-2008	197	2	lbl	lbl	PROPN
ap-2008	197	3	model	model	NOUN
ap-2008	197	4	treats	treat	VERB
ap-2008	197	5	only	only	ADV
ap-2008	197	6	one	one	NUM
ap-2008	197	7	downward	downward	ADJ
ap-2008	197	8	stream	stream	NOUN
ap-2008	197	9	of	of	ADP
ap-2008	197	10	radiation	radiation	NOUN
ap-2008	197	11	.	.	PUNCT
ap-2008	198	1	in	in	ADP
ap-2008	198	2	the	the	DET
ap-2008	198	3	vis	vis	X
ap-2008	198	4	,	,	PUNCT
ap-2008	198	5	it	it	PRON
ap-2008	198	6	is	be	AUX
ap-2008	198	7	pure	pure	ADJ
ap-2008	198	8	insolation	insolation	NOUN
ap-2008	198	9	,	,	PUNCT
ap-2008	198	10	whereas	whereas	SCONJ
ap-2008	198	11	beyond	beyond	ADP
ap-2008	198	12	λrad	λrad	NOUN
ap-2008	198	13	,	,	PUNCT
ap-2008	198	14	it	it	PRON
ap-2008	198	15	is	be	AUX
ap-2008	198	16	the	the	DET
ap-2008	198	17	downward	downward	ADJ
ap-2008	198	18	self	self	NOUN
ap-2008	198	19	emission	emission	NOUN
ap-2008	198	20	from	from	ADP
ap-2008	198	21	the	the	DET
ap-2008	198	22	top	top	NOUN
ap-2008	198	23	of	of	ADP
ap-2008	198	24	the	the	DET
ap-2008	198	25	atmosphere	atmosphere	NOUN
ap-2008	198	26	(	(	PUNCT
ap-2008	198	27	toa	toa	NOUN
ap-2008	198	28	)	)	PUNCT
ap-2008	198	29	and	and	CCONJ
ap-2008	198	30	subsequent	subsequent	ADJ
ap-2008	198	31	lower	low	ADJ
ap-2008	198	32	layers	layer	NOUN
ap-2008	198	33	,	,	PUNCT
ap-2008	198	34	in	in	ADP
ap-2008	198	35	response	response	NOUN
ap-2008	198	36	to	to	ADP
ap-2008	198	37	the	the	DET
ap-2008	198	38	long	long	ADJ
ap-2008	198	39	wavelength	wavelength	NOUN
ap-2008	198	40	radiation	radiation	NOUN
ap-2008	198	41	emitted	emit	VERB
ap-2008	198	42	from	from	ADP
ap-2008	198	43	the	the	DET
ap-2008	198	44	planetary	planetary	ADJ
ap-2008	198	45	surface	surface	NOUN
ap-2008	198	46	.	.	PUNCT
ap-2008	199	1	the	the	DET
ap-2008	199	2	absorbed	absorb	VERB
ap-2008	199	3	energy	energy	NOUN
ap-2008	199	4	so	so	ADV
ap-2008	199	5	calculated	calculated	ADJ
ap-2008	199	6	(	(	PUNCT
ap-2008	199	7	in	in	ADP
ap-2008	199	8	terms	term	NOUN
ap-2008	199	9	of	of	ADP
ap-2008	199	10	w	w	PROPN
ap-2008	199	11	/	/	SYM
ap-2008	199	12	m2	m2	PROPN
ap-2008	199	13	)	)	PUNCT
ap-2008	199	14	is	be	AUX
ap-2008	199	15	transferred	transfer	VERB
ap-2008	199	16	to	to	ADP
ap-2008	199	17	a	a	DET
ap-2008	199	18	global	global	ADJ
ap-2008	199	19	circulation	circulation	NOUN
ap-2008	199	20	model	model	NOUN
ap-2008	199	21	(	(	PUNCT
ap-2008	199	22	gcm	gcm	PROPN
ap-2008	199	23	)	)	PUNCT
ap-2008	199	24	,	,	PUNCT
ap-2008	199	25	where	where	SCONJ
ap-2008	199	26	the	the	DET
ap-2008	199	27	effect	effect	NOUN
ap-2008	199	28	on	on	ADP
ap-2008	199	29	the	the	DET
ap-2008	199	30	temperature	temperature	NOUN
ap-2008	199	31	is	be	AUX
ap-2008	199	32	calculated	calculate	VERB
ap-2008	199	33	.	.	PUNCT
ap-2008	200	1	since	since	SCONJ
ap-2008	200	2	in	in	ADP
ap-2008	200	3	this	this	DET
ap-2008	200	4	way	way	NOUN
ap-2008	200	5	the	the	DET
ap-2008	200	6	increase	increase	NOUN
ap-2008	200	7	in	in	ADP
ap-2008	200	8	concentration	concentration	NOUN
ap-2008	200	9	of	of	ADP
ap-2008	200	10	any	any	DET
ap-2008	200	11	absorber	absorber	NOUN
ap-2008	200	12	always	always	ADV
ap-2008	200	13	leads	lead	VERB
ap-2008	200	14	to	to	ADP
ap-2008	200	15	increased	increase	VERB
ap-2008	200	16	energy	energy	NOUN
ap-2008	200	17	absorbed	absorb	VERB
ap-2008	200	18	,	,	PUNCT
ap-2008	200	19	the	the	DET
ap-2008	200	20	results	result	NOUN
ap-2008	200	21	are	be	AUX
ap-2008	200	22	always	always	ADV
ap-2008	200	23	positive	positive	ADJ
ap-2008	200	24	,	,	PUNCT
ap-2008	200	25	namely	namely	ADV
ap-2008	200	26	heating	heating	NOUN
ap-2008	200	27	.	.	PUNCT
ap-2008	201	1	less	less	ADJ
ap-2008	201	2	detailed	detailed	ADJ
ap-2008	201	3	methods	method	NOUN
ap-2008	201	4	,	,	PUNCT
ap-2008	201	5	like	like	ADP
ap-2008	201	6	the	the	DET
ap-2008	201	7	correlated	correlate	VERB
ap-2008	201	8	-	-	PUNCT
ap-2008	201	9	k	k	NOUN
ap-2008	201	10	distribution	distribution	NOUN
ap-2008	201	11	are	be	AUX
ap-2008	201	12	even	even	ADV
ap-2008	201	13	less	less	ADV
ap-2008	201	14	accurate	accurate	ADJ
ap-2008	201	15	.	.	PUNCT
ap-2008	202	1	836	836	NUM
ap-2008	202	2	vol	vol	NOUN
ap-2008	202	3	.	.	PUNCT
ap-2008	203	1	53	53	NUM
ap-2008	203	2	supplement/2013	supplement/2013	VERB
ap-2008	203	3	the	the	DET
ap-2008	203	4	sensitivity	sensitivity	NOUN
ap-2008	203	5	of	of	ADP
ap-2008	203	6	the	the	DET
ap-2008	203	7	greenhouse	greenhouse	NOUN
ap-2008	203	8	effect	effect	NOUN
ap-2008	203	9	9	9	NUM
ap-2008	203	10	.	.	X
ap-2008	204	1	a	a	DET
ap-2008	204	2	maximum	maximum	ADJ
ap-2008	204	3	temperature	temperature	NOUN
ap-2008	204	4	for	for	ADP
ap-2008	204	5	a	a	DET
ap-2008	204	6	planet	planet	NOUN
ap-2008	204	7	the	the	DET
ap-2008	204	8	fact	fact	NOUN
ap-2008	204	9	that	that	SCONJ
ap-2008	204	10	the	the	DET
ap-2008	204	11	greenhouse	greenhouse	NOUN
ap-2008	204	12	saturates	saturate	VERB
ap-2008	204	13	implies	imply	VERB
ap-2008	204	14	that	that	SCONJ
ap-2008	204	15	a	a	DET
ap-2008	204	16	planet	planet	NOUN
ap-2008	204	17	at	at	ADP
ap-2008	204	18	a	a	DET
ap-2008	204	19	given	give	VERB
ap-2008	204	20	distance	distance	NOUN
ap-2008	204	21	from	from	ADP
ap-2008	204	22	the	the	DET
ap-2008	204	23	central	central	ADJ
ap-2008	204	24	star	star	NOUN
ap-2008	204	25	has	have	VERB
ap-2008	204	26	a	a	DET
ap-2008	204	27	maximal	maximal	ADJ
ap-2008	204	28	temperature	temperature	NOUN
ap-2008	204	29	,	,	PUNCT
ap-2008	204	30	the	the	DET
ap-2008	204	31	temperature	temperature	NOUN
ap-2008	204	32	of	of	ADP
ap-2008	204	33	saturation	saturation	NOUN
ap-2008	204	34	.	.	PUNCT
ap-2008	205	1	this	this	PRON
ap-2008	205	2	is	be	AUX
ap-2008	205	3	a	a	DET
ap-2008	205	4	strict	strict	ADJ
ap-2008	205	5	limit	limit	NOUN
ap-2008	205	6	which	which	PRON
ap-2008	205	7	does	do	AUX
ap-2008	205	8	not	not	PART
ap-2008	205	9	depend	depend	VERB
ap-2008	205	10	on	on	ADP
ap-2008	205	11	the	the	DET
ap-2008	205	12	parameters	parameter	NOUN
ap-2008	205	13	of	of	ADP
ap-2008	205	14	the	the	DET
ap-2008	205	15	planet	planet	NOUN
ap-2008	205	16	like	like	ADP
ap-2008	205	17	atmospheric	atmospheric	ADJ
ap-2008	205	18	composition	composition	NOUN
ap-2008	205	19	or	or	CCONJ
ap-2008	205	20	the	the	DET
ap-2008	205	21	mass	mass	NOUN
ap-2008	205	22	or	or	CCONJ
ap-2008	205	23	structure	structure	NOUN
ap-2008	205	24	of	of	ADP
ap-2008	205	25	the	the	DET
ap-2008	205	26	atmosphere	atmosphere	NOUN
ap-2008	205	27	(	(	PUNCT
ap-2008	205	28	like	like	ADP
ap-2008	205	29	pressure	pressure	NOUN
ap-2008	205	30	and	and	CCONJ
ap-2008	205	31	density	density	NOUN
ap-2008	205	32	)	)	PUNCT
ap-2008	205	33	.	.	PUNCT
ap-2008	206	1	the	the	DET
ap-2008	206	2	saturation	saturation	NOUN
ap-2008	206	3	temperature	temperature	NOUN
ap-2008	206	4	depends	depend	VERB
ap-2008	206	5	only	only	ADV
ap-2008	206	6	on	on	ADP
ap-2008	206	7	the	the	DET
ap-2008	206	8	distance	distance	NOUN
ap-2008	206	9	of	of	ADP
ap-2008	206	10	the	the	DET
ap-2008	206	11	planet	planet	NOUN
ap-2008	206	12	from	from	ADP
ap-2008	206	13	the	the	DET
ap-2008	206	14	central	central	ADJ
ap-2008	206	15	star	star	NOUN
ap-2008	206	16	and	and	CCONJ
ap-2008	206	17	the	the	DET
ap-2008	206	18	mean	mean	ADJ
ap-2008	206	19	albedo	albedo	NOUN
ap-2008	206	20	.	.	PUNCT
ap-2008	207	1	hence	hence	ADV
ap-2008	207	2	,	,	PUNCT
ap-2008	207	3	this	this	DET
ap-2008	207	4	limit	limit	NOUN
ap-2008	207	5	can	can	AUX
ap-2008	207	6	serve	serve	VERB
ap-2008	207	7	to	to	PART
ap-2008	207	8	distinguish	distinguish	VERB
ap-2008	207	9	between	between	ADP
ap-2008	207	10	brown	brown	ADJ
ap-2008	207	11	dwarfs	dwarf	NOUN
ap-2008	207	12	revolving	revolve	VERB
ap-2008	207	13	around	around	ADP
ap-2008	207	14	a	a	DET
ap-2008	207	15	central	central	ADJ
ap-2008	207	16	star	star	NOUN
ap-2008	207	17	and	and	CCONJ
ap-2008	207	18	a	a	DET
ap-2008	207	19	planet	planet	NOUN
ap-2008	207	20	.	.	PUNCT
ap-2008	208	1	this	this	DET
ap-2008	208	2	model	model	NOUN
ap-2008	208	3	should	should	AUX
ap-2008	208	4	be	be	AUX
ap-2008	208	5	further	far	ADV
ap-2008	208	6	developed	develop	VERB
ap-2008	208	7	for	for	ADP
ap-2008	208	8	jovian	jovian	ADJ
ap-2008	208	9	planets	planet	NOUN
ap-2008	208	10	,	,	PUNCT
ap-2008	208	11	to	to	PART
ap-2008	208	12	distinguish	distinguish	VERB
ap-2008	208	13	them	they	PRON
ap-2008	208	14	from	from	ADP
ap-2008	208	15	brown	brown	ADJ
ap-2008	208	16	dwarfs	dwarf	NOUN
ap-2008	208	17	.	.	PUNCT
ap-2008	209	1	this	this	PRON
ap-2008	209	2	should	should	AUX
ap-2008	209	3	be	be	AUX
ap-2008	209	4	done	do	VERB
ap-2008	209	5	by	by	ADP
ap-2008	209	6	changing	change	VERB
ap-2008	209	7	the	the	DET
ap-2008	209	8	lower	low	ADJ
ap-2008	209	9	boundary	boundary	ADJ
ap-2008	209	10	conditions	condition	NOUN
ap-2008	209	11	.	.	PUNCT
ap-2008	210	1	10	10	NUM
ap-2008	210	2	.	.	X
ap-2008	211	1	summary	summary	VERB
ap-2008	211	2	the	the	DET
ap-2008	211	3	radiative	radiative	ADJ
ap-2008	211	4	transfer	transfer	NOUN
ap-2008	211	5	model	model	NOUN
ap-2008	211	6	for	for	ADP
ap-2008	211	7	planetary	planetary	ADJ
ap-2008	211	8	atmospheres	atmosphere	NOUN
ap-2008	211	9	presented	present	VERB
ap-2008	211	10	here	here	ADV
ap-2008	211	11	enjoys	enjoy	VERB
ap-2008	211	12	simplicity	simplicity	NOUN
ap-2008	211	13	yet	yet	ADV
ap-2008	211	14	it	it	PRON
ap-2008	211	15	does	do	AUX
ap-2008	211	16	not	not	PART
ap-2008	211	17	compromise	compromise	VERB
ap-2008	211	18	the	the	DET
ap-2008	211	19	fundamental	fundamental	ADJ
ap-2008	211	20	physics	physics	NOUN
ap-2008	211	21	of	of	ADP
ap-2008	211	22	the	the	DET
ap-2008	211	23	greenhouse	greenhouse	NOUN
ap-2008	211	24	effect	effect	NOUN
ap-2008	211	25	.	.	PUNCT
ap-2008	212	1	the	the	DET
ap-2008	212	2	prediction	prediction	NOUN
ap-2008	212	3	of	of	ADP
ap-2008	212	4	the	the	DET
ap-2008	212	5	greenhouse	greenhouse	NOUN
ap-2008	212	6	effect	effect	NOUN
ap-2008	212	7	is	be	AUX
ap-2008	212	8	correct	correct	ADJ
ap-2008	212	9	and	and	CCONJ
ap-2008	212	10	reliable	reliable	ADJ
ap-2008	212	11	,	,	PUNCT
ap-2008	212	12	as	as	SCONJ
ap-2008	212	13	we	we	PRON
ap-2008	212	14	saw	see	VERB
ap-2008	212	15	with	with	ADP
ap-2008	212	16	the	the	DET
ap-2008	212	17	prediction	prediction	NOUN
ap-2008	212	18	of	of	ADP
ap-2008	212	19	the	the	DET
ap-2008	212	20	location	location	NOUN
ap-2008	212	21	of	of	ADP
ap-2008	212	22	the	the	DET
ap-2008	212	23	earth	earth	NOUN
ap-2008	212	24	in	in	ADP
ap-2008	212	25	the	the	DET
ap-2008	212	26	(	(	PUNCT
ap-2008	212	27	τvis	τvis	NOUN
ap-2008	212	28	,	,	PUNCT
ap-2008	212	29	τfir	τfir	ADJ
ap-2008	212	30	)	)	PUNCT
ap-2008	212	31	plane	plane	NOUN
ap-2008	212	32	.	.	PUNCT
ap-2008	213	1	in	in	ADP
ap-2008	213	2	general	general	ADJ
ap-2008	213	3	,	,	PUNCT
ap-2008	213	4	having	have	VERB
ap-2008	213	5	the	the	DET
ap-2008	213	6	universal	universal	ADJ
ap-2008	213	7	solution	solution	NOUN
ap-2008	213	8	tsurf(τvis	tsurf(τvis	PROPN
ap-2008	213	9	,	,	PUNCT
ap-2008	213	10	τfir	τfir	NOUN
ap-2008	213	11	)	)	PUNCT
ap-2008	213	12	allows	allow	VERB
ap-2008	213	13	an	an	DET
ap-2008	213	14	easy	easy	ADJ
ap-2008	213	15	determination	determination	NOUN
ap-2008	213	16	of	of	ADP
ap-2008	213	17	the	the	DET
ap-2008	213	18	surface	surface	NOUN
ap-2008	213	19	temperature	temperature	NOUN
ap-2008	213	20	of	of	ADP
ap-2008	213	21	the	the	DET
ap-2008	213	22	atmosphere	atmosphere	NOUN
ap-2008	213	23	,	,	PUNCT
ap-2008	213	24	irrespective	irrespective	ADV
ap-2008	213	25	of	of	ADP
ap-2008	213	26	the	the	DET
ap-2008	213	27	particular	particular	ADJ
ap-2008	213	28	composition	composition	NOUN
ap-2008	213	29	.	.	PUNCT
ap-2008	214	1	we	we	PRON
ap-2008	214	2	demonstrated	demonstrate	VERB
ap-2008	214	3	the	the	DET
ap-2008	214	4	solution	solution	NOUN
ap-2008	214	5	in	in	ADP
ap-2008	214	6	the	the	DET
ap-2008	214	7	case	case	NOUN
ap-2008	214	8	of	of	ADP
ap-2008	214	9	water	water	NOUN
ap-2008	214	10	vapor	vapor	NOUN
ap-2008	214	11	,	,	PUNCT
ap-2008	214	12	and	and	CCONJ
ap-2008	214	13	have	have	AUX
ap-2008	214	14	shown	show	VERB
ap-2008	214	15	that	that	SCONJ
ap-2008	214	16	water	water	NOUN
ap-2008	214	17	vapor	vapor	NOUN
ap-2008	214	18	do	do	AUX
ap-2008	214	19	not	not	PART
ap-2008	214	20	lead	lead	VERB
ap-2008	214	21	to	to	ADP
ap-2008	214	22	a	a	DET
ap-2008	214	23	runway	runway	NOUN
ap-2008	214	24	greenhouse	greenhouse	NOUN
ap-2008	214	25	effect	effect	NOUN
ap-2008	214	26	,	,	PUNCT
ap-2008	214	27	and	and	CCONJ
ap-2008	214	28	even	even	ADV
ap-2008	214	29	does	do	AUX
ap-2008	214	30	not	not	PART
ap-2008	214	31	drive	drive	VERB
ap-2008	214	32	an	an	DET
ap-2008	214	33	earth	earth	NOUN
ap-2008	214	34	-	-	PUNCT
ap-2008	214	35	like	like	ADJ
ap-2008	214	36	atmosphere	atmosphere	NOUN
ap-2008	214	37	into	into	ADP
ap-2008	214	38	the	the	DET
ap-2008	214	39	saturation	saturation	NOUN
ap-2008	214	40	region	region	NOUN
ap-2008	214	41	.	.	PUNCT
ap-2008	215	1	the	the	DET
ap-2008	215	2	model	model	NOUN
ap-2008	215	3	generalizes	generalize	VERB
ap-2008	215	4	the	the	DET
ap-2008	215	5	greenhouse	greenhouse	NOUN
ap-2008	215	6	and	and	CCONJ
ap-2008	215	7	the	the	DET
ap-2008	215	8	antigreenhouse	antigreenhouse	NOUN
ap-2008	215	9	effects	effect	NOUN
ap-2008	215	10	and	and	CCONJ
ap-2008	215	11	generates	generate	VERB
ap-2008	215	12	a	a	DET
ap-2008	215	13	comprehensive	comprehensive	ADJ
ap-2008	215	14	picture	picture	NOUN
ap-2008	215	15	of	of	ADP
ap-2008	215	16	the	the	DET
ap-2008	215	17	phenomenon	phenomenon	NOUN
ap-2008	215	18	.	.	PUNCT
ap-2008	216	1	radiative	radiative	ADJ
ap-2008	216	2	models	model	NOUN
ap-2008	216	3	which	which	PRON
ap-2008	216	4	are	be	AUX
ap-2008	216	5	essentially	essentially	ADV
ap-2008	216	6	transmittance	transmittance	NOUN
ap-2008	216	7	models	model	NOUN
ap-2008	216	8	like	like	ADP
ap-2008	216	9	the	the	DET
ap-2008	216	10	lbl	lbl	PROPN
ap-2008	216	11	,	,	PUNCT
ap-2008	216	12	can	can	AUX
ap-2008	216	13	not	not	PART
ap-2008	216	14	predict	predict	VERB
ap-2008	216	15	the	the	DET
ap-2008	216	16	resulting	result	VERB
ap-2008	216	17	temperature	temperature	NOUN
ap-2008	216	18	changes	change	NOUN
ap-2008	216	19	,	,	PUNCT
ap-2008	216	20	as	as	SCONJ
ap-2008	216	21	they	they	PRON
ap-2008	216	22	do	do	AUX
ap-2008	216	23	not	not	PART
ap-2008	216	24	impose	impose	VERB
ap-2008	216	25	an	an	DET
ap-2008	216	26	energy	energy	NOUN
ap-2008	216	27	balance	balance	NOUN
ap-2008	216	28	equation	equation	NOUN
ap-2008	216	29	.	.	PUNCT
ap-2008	217	1	such	such	ADJ
ap-2008	217	2	models	model	NOUN
ap-2008	217	3	can	can	AUX
ap-2008	217	4	predict	predict	VERB
ap-2008	217	5	how	how	SCONJ
ap-2008	217	6	much	much	ADJ
ap-2008	217	7	energy	energy	NOUN
ap-2008	217	8	is	be	AUX
ap-2008	217	9	absorbed	absorb	VERB
ap-2008	217	10	by	by	ADP
ap-2008	217	11	a	a	DET
ap-2008	217	12	given	give	VERB
ap-2008	217	13	atmospheric	atmospheric	ADJ
ap-2008	217	14	structure	structure	NOUN
ap-2008	217	15	but	but	CCONJ
ap-2008	217	16	they	they	PRON
ap-2008	217	17	do	do	AUX
ap-2008	217	18	not	not	PART
ap-2008	217	19	have	have	VERB
ap-2008	217	20	the	the	DET
ap-2008	217	21	feedback	feedback	NOUN
ap-2008	217	22	to	to	PART
ap-2008	217	23	evaluate	evaluate	VERB
ap-2008	217	24	the	the	DET
ap-2008	217	25	resulting	result	VERB
ap-2008	217	26	temperature	temperature	NOUN
ap-2008	217	27	changes	change	NOUN
ap-2008	217	28	.	.	PUNCT
ap-2008	218	1	for	for	ADP
ap-2008	218	2	this	this	DET
ap-2008	218	3	purpose	purpose	NOUN
ap-2008	218	4	,	,	PUNCT
ap-2008	218	5	one	one	PRON
ap-2008	218	6	has	have	VERB
ap-2008	218	7	to	to	PART
ap-2008	218	8	resort	resort	VERB
ap-2008	218	9	to	to	ADP
ap-2008	218	10	a	a	DET
ap-2008	218	11	general	general	ADJ
ap-2008	218	12	circulation	circulation	NOUN
ap-2008	218	13	model	model	NOUN
ap-2008	218	14	,	,	PUNCT
ap-2008	218	15	which	which	PRON
ap-2008	218	16	is	be	AUX
ap-2008	218	17	a	a	DET
ap-2008	218	18	dynamic	dynamic	ADJ
ap-2008	218	19	model	model	NOUN
ap-2008	218	20	and	and	CCONJ
ap-2008	218	21	not	not	PART
ap-2008	218	22	static	static	ADJ
ap-2008	218	23	.	.	PUNCT
ap-2008	219	1	the	the	DET
ap-2008	219	2	saturation	saturation	NOUN
ap-2008	219	3	of	of	ADP
ap-2008	219	4	the	the	DET
ap-2008	219	5	greenhouse	greenhouse	NOUN
ap-2008	219	6	effect	effect	NOUN
ap-2008	219	7	leads	lead	VERB
ap-2008	219	8	to	to	ADP
ap-2008	219	9	the	the	DET
ap-2008	219	10	existence	existence	NOUN
ap-2008	219	11	of	of	ADP
ap-2008	219	12	a	a	DET
ap-2008	219	13	strict	strict	ADJ
ap-2008	219	14	limit	limit	NOUN
ap-2008	219	15	to	to	ADP
ap-2008	219	16	the	the	DET
ap-2008	219	17	temperature	temperature	NOUN
ap-2008	219	18	of	of	ADP
ap-2008	219	19	a	a	DET
ap-2008	219	20	planet	planet	NOUN
ap-2008	219	21	.	.	PUNCT
ap-2008	220	1	this	this	DET
ap-2008	220	2	limit	limit	NOUN
ap-2008	220	3	can	can	AUX
ap-2008	220	4	help	help	VERB
ap-2008	220	5	to	to	PART
ap-2008	220	6	distinguish	distinguish	VERB
ap-2008	220	7	between	between	ADP
ap-2008	220	8	planets	planet	NOUN
ap-2008	220	9	and	and	CCONJ
ap-2008	220	10	brown	brown	ADJ
ap-2008	220	11	dwarfs	dwarf	NOUN
ap-2008	220	12	.	.	PUNCT
ap-2008	221	1	acknowledgements	acknowledgement	NOUN
ap-2008	221	2	special	special	ADJ
ap-2008	221	3	thanks	thank	NOUN
ap-2008	221	4	to	to	ADP
ap-2008	221	5	dr	dr	PROPN
ap-2008	221	6	.	.	PROPN
ap-2008	221	7	eyal	eyal	PROPN
ap-2008	221	8	bressler	bressler	PROPN
ap-2008	221	9	and	and	CCONJ
ap-2008	221	10	to	to	ADP
ap-2008	221	11	jenia	jenia	NOUN
ap-2008	221	12	and	and	CCONJ
ap-2008	221	13	ram	ram	VERB
ap-2008	221	14	oren	oren	NOUN
ap-2008	221	15	.	.	PUNCT
ap-2008	222	1	references	reference	NOUN
ap-2008	222	2	[	[	X
ap-2008	222	3	1	1	NUM
ap-2008	222	4	]	]	PUNCT
ap-2008	222	5	bressler	bressler	NOUN
ap-2008	222	6	,	,	PUNCT
ap-2008	222	7	s.	s.	PROPN
ap-2008	222	8	,	,	PUNCT
ap-2008	222	9	shaviv	shaviv	NOUN
ap-2008	222	10	,	,	PUNCT
ap-2008	222	11	g.	g.	PROPN
ap-2008	222	12	,	,	PUNCT
ap-2008	222	13	shaviv	shaviv	PROPN
ap-2008	222	14	,	,	PUNCT
ap-2008	222	15	n.j	n.j	PROPN
ap-2008	222	16	.	.	PROPN
ap-2008	222	17	2012	2012	NUM
ap-2008	222	18	,	,	PUNCT
ap-2008	222	19	in	in	ADP
ap-2008	222	20	preparation	preparation	NOUN
ap-2008	222	21	[	[	X
ap-2008	222	22	2	2	NUM
ap-2008	222	23	]	]	X
ap-2008	222	24	crisp	crisp	ADJ
ap-2008	222	25	,	,	PUNCT
ap-2008	222	26	d.	d.	PROPN
ap-2008	222	27	chap	chap	PROPN
ap-2008	222	28	.	.	PUNCT
ap-2008	223	1	11	11	NUM
ap-2008	223	2	in	in	ADP
ap-2008	223	3	allen	allen	ADJ
ap-2008	223	4	astrophysical	astrophysical	ADJ
ap-2008	223	5	quantities	quantity	NOUN
ap-2008	223	6	,	,	PUNCT
ap-2008	223	7	2000	2000	NUM
ap-2008	224	1	[	[	X
ap-2008	224	2	3	3	X
ap-2008	224	3	]	]	PUNCT
ap-2008	224	4	ipcc	ipcc	NOUN
ap-2008	224	5	climate	climate	NOUN
ap-2008	224	6	change	change	NOUN
ap-2008	224	7	2007	2007	NUM
ap-2008	224	8	:	:	PUNCT
ap-2008	224	9	synthesis	synthesis	NOUN
ap-2008	224	10	report	report	NOUN
ap-2008	224	11	[	[	X
ap-2008	224	12	4	4	NUM
ap-2008	224	13	]	]	SYM
ap-2008	224	14	kasting	kasting	NOUN
ap-2008	224	15	,	,	PUNCT
ap-2008	224	16	j.f	j.f	PROPN
ap-2008	224	17	.	.	PROPN
ap-2008	224	18	,	,	PUNCT
ap-2008	224	19	1988	1988	NUM
ap-2008	224	20	runaway	runaway	ADJ
ap-2008	224	21	and	and	CCONJ
ap-2008	224	22	moist	moist	ADJ
ap-2008	224	23	greenhouse	greenhouse	NOUN
ap-2008	224	24	atmospheres	atmosphere	NOUN
ap-2008	224	25	and	and	CCONJ
ap-2008	224	26	the	the	DET
ap-2008	224	27	evolution	evolution	NOUN
ap-2008	224	28	of	of	ADP
ap-2008	224	29	earth	earth	NOUN
ap-2008	224	30	and	and	CCONJ
ap-2008	224	31	venus	venus	PROPN
ap-2008	224	32	icarus	icarus	PROPN
ap-2008	224	33	74	74	NUM
ap-2008	224	34	,	,	PUNCT
ap-2008	224	35	472	472	NUM
ap-2008	224	36	[	[	X
ap-2008	224	37	5	5	NUM
ap-2008	224	38	]	]	PUNCT
ap-2008	224	39	mihalas	mihala	NOUN
ap-2008	224	40	,	,	PUNCT
ap-2008	224	41	d.	d.	PROPN
ap-2008	224	42	1970	1970	NUM
ap-2008	224	43	stellar	stellar	ADJ
ap-2008	224	44	atmospheres	atmosphere	NOUN
ap-2008	224	45	,	,	PUNCT
ap-2008	224	46	w.h	w.h	PROPN
ap-2008	224	47	.	.	PROPN
ap-2008	224	48	freeman	freeman	PROPN
ap-2008	224	49	and	and	CCONJ
ap-2008	224	50	company	company	NOUN
ap-2008	224	51	,	,	PUNCT
ap-2008	224	52	san	san	PROPN
ap-2008	224	53	francisco	francisco	PROPN
ap-2008	224	54	[	[	X
ap-2008	224	55	6	6	NUM
ap-2008	224	56	]	]	PUNCT
ap-2008	224	57	rothman	rothman	PROPN
ap-2008	224	58	,	,	PUNCT
ap-2008	224	59	l.	l.	PROPN
ap-2008	224	60	s.	s.	PROPN
ap-2008	224	61	et	et	PROPN
ap-2008	224	62	al	al	PROPN
ap-2008	224	63	.	.	PUNCT
ap-2008	225	1	the	the	DET
ap-2008	225	2	hitran	hitran	NOUN
ap-2008	225	3	2008	2008	NUM
ap-2008	225	4	molecular	molecular	ADJ
ap-2008	225	5	spectroscopic	spectroscopic	NOUN
ap-2008	225	6	database	database	NOUN
ap-2008	225	7	,	,	PUNCT
ap-2008	225	8	2009	2009	NUM
ap-2008	225	9	jqsrt	jqsrt	NOUN
ap-2008	225	10	110	110	NUM
ap-2008	225	11	,	,	PUNCT
ap-2008	225	12	533	533	NUM
ap-2008	225	13	[	[	X
ap-2008	225	14	7	7	NUM
ap-2008	225	15	]	]	X
ap-2008	225	16	seager	seager	NOUN
ap-2008	225	17	,	,	PUNCT
ap-2008	225	18	s.	s.	PROPN
ap-2008	225	19	2010	2010	NUM
ap-2008	225	20	exoplanet	exoplanet	PROPN
ap-2008	225	21	atmospheres	atmosphere	NOUN
ap-2008	225	22	,	,	PUNCT
ap-2008	225	23	princeton	princeton	PROPN
ap-2008	225	24	university	university	PROPN
ap-2008	225	25	press	press	NOUN
ap-2008	225	26	,	,	PUNCT
ap-2008	225	27	new	new	PROPN
ap-2008	225	28	jersey	jersey	PROPN
ap-2008	225	29	[	[	X
ap-2008	225	30	8	8	NUM
ap-2008	225	31	]	]	PUNCT
ap-2008	225	32	shaviv	shaviv	NOUN
ap-2008	225	33	,	,	PUNCT
ap-2008	225	34	g.	g.	PROPN
ap-2008	225	35	&	&	CCONJ
ap-2008	225	36	wehrse	wehrse	PROPN
ap-2008	225	37	,	,	PUNCT
ap-2008	225	38	r.	r.	PROPN
ap-2008	225	39	,	,	PUNCT
ap-2008	225	40	1991	1991	NUM
ap-2008	225	41	,	,	PUNCT
ap-2008	225	42	continuous	continuous	ADJ
ap-2008	225	43	energy	energy	NOUN
ap-2008	225	44	distributions	distribution	NOUN
ap-2008	225	45	of	of	ADP
ap-2008	225	46	accretion	accretion	NOUN
ap-2008	225	47	discs	disc	NOUN
ap-2008	225	48	,	,	PUNCT
ap-2008	225	49	a&a	a&a	PROPN
ap-2008	225	50	,	,	PUNCT
ap-2008	225	51	251	251	NUM
ap-2008	225	52	,	,	PUNCT
ap-2008	225	53	117	117	NUM
ap-2008	225	54	[	[	SYM
ap-2008	225	55	9	9	NUM
ap-2008	225	56	]	]	PUNCT
ap-2008	225	57	shaviv	shaviv	NOUN
ap-2008	225	58	,	,	PUNCT
ap-2008	225	59	n.j	n.j	PROPN
ap-2008	225	60	.	.	PROPN
ap-2008	225	61	,	,	PUNCT
ap-2008	225	62	shaviv	shaviv	PROPN
ap-2008	225	63	,	,	PUNCT
ap-2008	225	64	g.	g.	PROPN
ap-2008	225	65	&	&	CCONJ
ap-2008	225	66	wehrse	wehrse	PROPN
ap-2008	225	67	,	,	PUNCT
ap-2008	225	68	r.	r.	PROPN
ap-2008	225	69	,	,	PUNCT
ap-2008	225	70	2011	2011	NUM
ap-2008	225	71	,	,	PUNCT
ap-2008	225	72	the	the	DET
ap-2008	225	73	maximal	maximal	ADJ
ap-2008	225	74	runaway	runaway	ADJ
ap-2008	225	75	temperature	temperature	NOUN
ap-2008	225	76	of	of	ADP
ap-2008	225	77	earth	earth	NOUN
ap-2008	225	78	-	-	PUNCT
ap-2008	225	79	like	like	ADJ
ap-2008	225	80	planets	planet	NOUN
ap-2008	225	81	,	,	PUNCT
ap-2008	225	82	icarus	icarus	PROPN
ap-2008	225	83	,	,	PUNCT
ap-2008	225	84	216	216	NUM
ap-2008	225	85	,	,	PUNCT
ap-2008	225	86	403	403	NUM
ap-2008	225	87	[	[	SYM
ap-2008	225	88	10	10	NUM
ap-2008	225	89	]	]	X
ap-2008	225	90	simpson	simpson	PROPN
ap-2008	225	91	,	,	PUNCT
ap-2008	225	92	g.c	g.c	PROPN
ap-2008	225	93	.	.	PROPN
ap-2008	225	94	,	,	PUNCT
ap-2008	225	95	1927	1927	NUM
ap-2008	225	96	.	.	PUNCT
ap-2008	226	1	some	some	DET
ap-2008	226	2	studies	study	NOUN
ap-2008	226	3	in	in	ADP
ap-2008	226	4	terrestrial	terrestrial	ADJ
ap-2008	226	5	radiation	radiation	NOUN
ap-2008	226	6	.	.	PUNCT
ap-2008	227	1	mem	mem	PROPN
ap-2008	227	2	.	.	PUNCT
ap-2008	227	3	r.	r.	PROPN
ap-2008	227	4	meteorol	meteorol	PROPN
ap-2008	227	5	.	.	PUNCT
ap-2008	228	1	soc	soc	PROPN
ap-2008	228	2	.	.	PUNCT
ap-2008	229	1	ii	ii	PROPN
ap-2008	229	2	1015	1015	NUM
ap-2008	229	3	(	(	PUNCT
ap-2008	229	4	16	16	NUM
ap-2008	229	5	)	)	PUNCT
ap-2008	229	6	,	,	PUNCT
ap-2008	229	7	69–95	69–95	NUM
ap-2008	229	8	.	.	PUNCT
ap-2008	230	1	1016	1016	NUM
ap-2008	231	1	[	[	X
ap-2008	231	2	11	11	NUM
ap-2008	231	3	]	]	SYM
ap-2008	231	4	simpson	simpson	PROPN
ap-2008	231	5	,	,	PUNCT
ap-2008	231	6	g.c	g.c	PROPN
ap-2008	231	7	.	.	PROPN
ap-2008	231	8	,	,	PUNCT
ap-2008	231	9	1928	1928	NUM
ap-2008	231	10	.	.	PUNCT
ap-2008	232	1	further	further	ADJ
ap-2008	232	2	studies	study	NOUN
ap-2008	232	3	in	in	ADP
ap-2008	232	4	terrestrial	terrestrial	ADJ
ap-2008	232	5	radiation	radiation	NOUN
ap-2008	232	6	.	.	PUNCT
ap-2008	233	1	mem	mem	PROPN
ap-2008	233	2	.	.	PUNCT
ap-2008	233	3	r.	r.	PROPN
ap-2008	233	4	meteorol	meteorol	PROPN
ap-2008	233	5	.	.	PUNCT
ap-2008	234	1	soc	soc	PROPN
ap-2008	234	2	.	.	PUNCT
ap-2008	235	1	1017	1017	NUM
ap-2008	235	2	iii	iii	X
ap-2008	235	3	(	(	PUNCT
ap-2008	235	4	21	21	NUM
ap-2008	235	5	)	)	PUNCT
ap-2008	235	6	,	,	PUNCT
ap-2008	235	7	1–26	1–26	PROPN
ap-2008	236	1	[	[	X
ap-2008	236	2	12	12	NUM
ap-2008	236	3	]	]	X
ap-2008	236	4	thomas	thomas	PROPN
ap-2008	236	5	,	,	PUNCT
ap-2008	236	6	g.e	g.e	PROPN
ap-2008	236	7	.	.	PROPN
ap-2008	236	8	and	and	CCONJ
ap-2008	236	9	stamnes	stamne	NOUN
ap-2008	236	10	,	,	PUNCT
ap-2008	236	11	k.	k.	PROPN
ap-2008	236	12	(	(	PUNCT
ap-2008	236	13	1999	1999	NUM
ap-2008	236	14	)	)	PUNCT
ap-2008	236	15	radiative	radiative	ADJ
ap-2008	236	16	transfer	transfer	NOUN
ap-2008	236	17	in	in	ADP
ap-2008	236	18	the	the	DET
ap-2008	236	19	atmosphere	atmosphere	NOUN
ap-2008	236	20	and	and	CCONJ
ap-2008	236	21	ocean	ocean	NOUN
ap-2008	236	22	,	,	PUNCT
ap-2008	236	23	section	section	NOUN
ap-2008	236	24	12.3	12.3	NUM
ap-2008	236	25	,	,	PUNCT
ap-2008	236	26	cambridge	cambridge	PROPN
ap-2008	236	27	university	university	PROPN
ap-2008	236	28	discussion	discussion	NOUN
ap-2008	236	29	jim	jim	PROPN
ap-2008	236	30	beall	beall	PROPN
ap-2008	236	31	—	—	PUNCT
ap-2008	236	32	there	there	PRON
ap-2008	236	33	is	be	VERB
ap-2008	236	34	a	a	DET
ap-2008	236	35	correlation	correlation	NOUN
ap-2008	236	36	between	between	ADP
ap-2008	236	37	temperature	temperature	NOUN
ap-2008	236	38	and	and	CCONJ
ap-2008	236	39	co2	co2	NOUN
ap-2008	236	40	in	in	ADP
ap-2008	236	41	the	the	DET
ap-2008	236	42	industrial	industrial	ADJ
ap-2008	236	43	period	period	NOUN
ap-2008	236	44	between	between	ADP
ap-2008	236	45	1880–2004	1880–2004	NUM
ap-2008	236	46	.	.	PUNCT
ap-2008	237	1	the	the	DET
ap-2008	237	2	co2	co2	NOUN
ap-2008	237	3	goes	go	VERB
ap-2008	237	4	from	from	ADP
ap-2008	237	5	280	280	NUM
ap-2008	237	6	ppm	ppm	NOUN
ap-2008	237	7	to	to	ADP
ap-2008	237	8	380	380	NUM
ap-2008	237	9	ppm	ppm	NOUN
ap-2008	237	10	.	.	PUNCT
ap-2008	238	1	but	but	CCONJ
ap-2008	238	2	the	the	DET
ap-2008	238	3	temperature	temperature	NOUN
ap-2008	238	4	only	only	ADV
ap-2008	238	5	increased	increase	VERB
ap-2008	238	6	by	by	ADP
ap-2008	238	7	3/4	3/4	NUM
ap-2008	238	8	°	°	ADP
ap-2008	238	9	c	c	NOUN
ap-2008	238	10	during	during	ADP
ap-2008	238	11	the	the	DET
ap-2008	238	12	interval	interval	NOUN
ap-2008	238	13	from	from	ADP
ap-2008	238	14	1880–2004	1880–2004	NUM
ap-2008	238	15	.	.	PUNCT
ap-2008	239	1	smadar	smadar	NOUN
ap-2008	239	2	—	—	PUNCT
ap-2008	239	3	different	different	ADJ
ap-2008	239	4	analyses	analysis	NOUN
ap-2008	239	5	give	give	VERB
ap-2008	239	6	a	a	DET
ap-2008	239	7	wide	wide	ADJ
ap-2008	239	8	range	range	NOUN
ap-2008	239	9	for	for	ADP
ap-2008	239	10	the	the	DET
ap-2008	239	11	anthropogenic	anthropogenic	ADJ
ap-2008	239	12	contribution	contribution	NOUN
ap-2008	239	13	to	to	ADP
ap-2008	239	14	the	the	DET
ap-2008	239	15	temperature	temperature	NOUN
ap-2008	239	16	rise	rise	NOUN
ap-2008	239	17	,	,	PUNCT
ap-2008	239	18	and	and	CCONJ
ap-2008	239	19	even	even	ADV
ap-2008	239	20	the	the	DET
ap-2008	239	21	measured	measured	ADJ
ap-2008	239	22	temperature	temperature	NOUN
ap-2008	239	23	rise	rise	NOUN
ap-2008	239	24	itself	itself	PRON
ap-2008	239	25	has	have	VERB
ap-2008	239	26	a	a	DET
ap-2008	239	27	large	large	ADJ
ap-2008	239	28	uncertainty	uncertainty	NOUN
ap-2008	239	29	,	,	PUNCT
ap-2008	239	30	such	such	ADJ
ap-2008	239	31	that	that	SCONJ
ap-2008	239	32	our	our	PRON
ap-2008	239	33	results	result	NOUN
ap-2008	239	34	all	all	DET
ap-2008	239	35	fall	fall	VERB
ap-2008	239	36	within	within	ADP
ap-2008	239	37	these	these	DET
ap-2008	239	38	limits	limit	NOUN
ap-2008	239	39	.	.	PUNCT
ap-2008	240	1	it	it	PRON
ap-2008	240	2	is	be	AUX
ap-2008	240	3	only	only	ADV
ap-2008	240	4	with	with	ADP
ap-2008	240	5	better	well	ADJ
ap-2008	240	6	and	and	CCONJ
ap-2008	240	7	more	more	ADV
ap-2008	240	8	detailed	detailed	ADJ
ap-2008	240	9	models	model	NOUN
ap-2008	240	10	that	that	PRON
ap-2008	240	11	we	we	PRON
ap-2008	240	12	will	will	AUX
ap-2008	240	13	be	be	AUX
ap-2008	240	14	able	able	ADJ
ap-2008	240	15	to	to	PART
ap-2008	240	16	rule	rule	VERB
ap-2008	240	17	out	out	ADP
ap-2008	240	18	(	(	PUNCT
ap-2008	240	19	through	through	ADP
ap-2008	240	20	this	this	DET
ap-2008	240	21	methodology	methodology	NOUN
ap-2008	240	22	)	)	PUNCT
ap-2008	240	23	possible	possible	ADJ
ap-2008	240	24	misconceptions	misconception	NOUN
ap-2008	240	25	about	about	ADP
ap-2008	240	26	the	the	DET
ap-2008	240	27	extent	extent	NOUN
ap-2008	240	28	that	that	SCONJ
ap-2008	240	29	anthropogenic	anthropogenic	ADJ
ap-2008	240	30	co2	co2	NOUN
ap-2008	240	31	is	be	AUX
ap-2008	240	32	the	the	DET
ap-2008	240	33	sole	sole	ADJ
ap-2008	240	34	cause	cause	NOUN
ap-2008	240	35	for	for	ADP
ap-2008	240	36	heating	heating	NOUN
ap-2008	240	37	of	of	ADP
ap-2008	240	38	the	the	DET
ap-2008	240	39	atmosphere	atmosphere	NOUN
ap-2008	240	40	.	.	PUNCT
ap-2008	241	1	maurice	maurice	PROPN
ap-2008	241	2	van	van	PROPN
ap-2008	241	3	putten	putten	ADV
ap-2008	241	4	—	—	PUNCT
ap-2008	241	5	is	be	AUX
ap-2008	241	6	it	it	PRON
ap-2008	241	7	known	know	VERB
ap-2008	241	8	how	how	SCONJ
ap-2008	241	9	much	much	ADJ
ap-2008	241	10	ch4	ch4	NOUN
ap-2008	241	11	is	be	AUX
ap-2008	241	12	released	release	VERB
ap-2008	241	13	when	when	SCONJ
ap-2008	241	14	there	there	PRON
ap-2008	241	15	is	be	VERB
ap-2008	241	16	a	a	DET
ap-2008	241	17	1	1	NUM
ap-2008	241	18	°	°	NOUN
ap-2008	241	19	c	c	NOUN
ap-2008	241	20	increase	increase	NOUN
ap-2008	241	21	?	?	PUNCT
ap-2008	242	1	the	the	DET
ap-2008	242	2	result	result	NOUN
ap-2008	242	3	,	,	PUNCT
ap-2008	242	4	i	i	PRON
ap-2008	242	5	expect	expect	VERB
ap-2008	242	6	,	,	PUNCT
ap-2008	242	7	can	can	AUX
ap-2008	242	8	be	be	AUX
ap-2008	242	9	readily	readily	ADV
ap-2008	242	10	included	include	VERB
ap-2008	242	11	in	in	ADP
ap-2008	242	12	your	your	PRON
ap-2008	242	13	model	model	NOUN
ap-2008	242	14	.	.	PUNCT
ap-2008	243	1	smadar	smadar	NOUN
ap-2008	243	2	—	—	PUNCT
ap-2008	243	3	you	you	PRON
ap-2008	243	4	are	be	AUX
ap-2008	243	5	correct	correct	ADJ
ap-2008	243	6	that	that	SCONJ
ap-2008	243	7	ch4	ch4	PROPN
ap-2008	243	8	is	be	AUX
ap-2008	243	9	the	the	DET
ap-2008	243	10	next	next	ADJ
ap-2008	243	11	runner	runner	NOUN
ap-2008	243	12	up	up	ADP
ap-2008	243	13	in	in	ADP
ap-2008	243	14	our	our	PRON
ap-2008	243	15	model	model	NOUN
ap-2008	243	16	after	after	ADP
ap-2008	243	17	co2	co2	NOUN
ap-2008	243	18	,	,	PUNCT
ap-2008	243	19	being	be	AUX
ap-2008	243	20	the	the	DET
ap-2008	243	21	third	third	ADJ
ap-2008	243	22	important	important	ADJ
ap-2008	243	23	greenhouse	greenhouse	NOUN
ap-2008	243	24	gas	gas	NOUN
ap-2008	243	25	in	in	ADP
ap-2008	243	26	earth	earth	NOUN
ap-2008	243	27	’s	’s	PART
ap-2008	243	28	atmosphere	atmosphere	NOUN
ap-2008	243	29	.	.	PUNCT
ap-2008	244	1	the	the	DET
ap-2008	244	2	answer	answer	NOUN
ap-2008	244	3	to	to	ADP
ap-2008	244	4	your	your	PRON
ap-2008	244	5	question	question	NOUN
ap-2008	244	6	can	can	AUX
ap-2008	244	7	be	be	AUX
ap-2008	244	8	obtained	obtain	VERB
ap-2008	244	9	using	use	VERB
ap-2008	244	10	our	our	PRON
ap-2008	244	11	model	model	NOUN
ap-2008	244	12	in	in	ADP
ap-2008	244	13	a	a	DET
ap-2008	244	14	similar	similar	ADJ
ap-2008	244	15	manner	manner	NOUN
ap-2008	244	16	to	to	ADP
ap-2008	244	17	that	that	PRON
ap-2008	244	18	of	of	ADP
ap-2008	244	19	co2	co2	NOUN
ap-2008	244	20	and	and	CCONJ
ap-2008	244	21	water	water	NOUN
ap-2008	244	22	.	.	PUNCT
ap-2008	245	1	on	on	ADP
ap-2008	245	2	the	the	DET
ap-2008	245	3	one	one	NUM
ap-2008	245	4	hand	hand	NOUN
ap-2008	245	5	,	,	PUNCT
ap-2008	245	6	we	we	PRON
ap-2008	245	7	expect	expect	VERB
ap-2008	245	8	a	a	DET
ap-2008	245	9	smaller	small	ADJ
ap-2008	245	10	effect	effect	NOUN
ap-2008	245	11	due	due	ADP
ap-2008	245	12	to	to	ADP
ap-2008	245	13	the	the	DET
ap-2008	245	14	still	still	ADV
ap-2008	245	15	relatively	relatively	ADV
ap-2008	245	16	low	low	ADJ
ap-2008	245	17	column	column	NOUN
ap-2008	245	18	density	density	NOUN
ap-2008	245	19	of	of	ADP
ap-2008	245	20	ch4	ch4	PROPN
ap-2008	245	21	(	(	PUNCT
ap-2008	245	22	about	about	ADV
ap-2008	245	23	200	200	NUM
ap-2008	245	24	times	time	NOUN
ap-2008	245	25	less	less	ADJ
ap-2008	245	26	than	than	ADP
ap-2008	245	27	co2	co2	NOUN
ap-2008	245	28	)	)	PUNCT
ap-2008	245	29	.	.	PUNCT
ap-2008	246	1	its	its	PRON
ap-2008	246	2	strong	strong	ADJ
ap-2008	246	3	absorption	absorption	NOUN
ap-2008	246	4	,	,	PUNCT
ap-2008	246	5	on	on	ADP
ap-2008	246	6	the	the	DET
ap-2008	246	7	other	other	ADJ
ap-2008	246	8	hand	hand	NOUN
ap-2008	246	9	,	,	PUNCT
ap-2008	246	10	might	might	AUX
ap-2008	246	11	compensate	compensate	VERB
ap-2008	246	12	for	for	ADP
ap-2008	246	13	this	this	PRON
ap-2008	246	14	,	,	PUNCT
ap-2008	246	15	and	and	CCONJ
ap-2008	246	16	it	it	PRON
ap-2008	246	17	is	be	AUX
ap-2008	246	18	hard	hard	ADJ
ap-2008	246	19	to	to	PART
ap-2008	246	20	predict	predict	VERB
ap-2008	246	21	what	what	PRON
ap-2008	246	22	will	will	AUX
ap-2008	246	23	be	be	AUX
ap-2008	246	24	its	its	PRON
ap-2008	246	25	final	final	ADJ
ap-2008	246	26	effect	effect	NOUN
ap-2008	246	27	without	without	ADP
ap-2008	246	28	calculating	calculate	VERB
ap-2008	246	29	it	it	PRON
ap-2008	246	30	.	.	PUNCT
ap-2008	247	1	we	we	PRON
ap-2008	247	2	have	have	AUX
ap-2008	247	3	developed	develop	VERB
ap-2008	247	4	a	a	DET
ap-2008	247	5	greenhouse	greenhouse	NOUN
ap-2008	247	6	indicator	indicator	NOUN
ap-2008	247	7	aimed	aim	VERB
ap-2008	247	8	exactly	exactly	ADV
ap-2008	247	9	at	at	ADP
ap-2008	247	10	comparing	compare	VERB
ap-2008	247	11	different	different	ADJ
ap-2008	247	12	greenhouse	greenhouse	NOUN
ap-2008	247	13	gases	gas	NOUN
ap-2008	247	14	by	by	ADP
ap-2008	247	15	their	their	PRON
ap-2008	247	16	slope	slope	NOUN
ap-2008	247	17	over	over	ADP
ap-2008	247	18	the	the	DET
ap-2008	247	19	τfir	τfir	NOUN
ap-2008	247	20	and	and	CCONJ
ap-2008	247	21	τvis	τvi	VERB
ap-2008	247	22	plane	plane	NOUN
ap-2008	247	23	,	,	PUNCT
ap-2008	247	24	due	due	ADP
ap-2008	247	25	to	to	ADP
ap-2008	247	26	changes	change	NOUN
ap-2008	247	27	in	in	ADP
ap-2008	247	28	concentration	concentration	NOUN
ap-2008	247	29	.	.	PUNCT
ap-2008	248	1	for	for	ADP
ap-2008	248	2	example	example	NOUN
ap-2008	248	3	,	,	PUNCT
ap-2008	248	4	from	from	ADP
ap-2008	248	5	the	the	DET
ap-2008	248	6	presented	present	VERB
ap-2008	248	7	data	datum	NOUN
ap-2008	248	8	,	,	PUNCT
ap-2008	248	9	it	it	PRON
ap-2008	248	10	seems	seem	VERB
ap-2008	248	11	that	that	SCONJ
ap-2008	248	12	co2	co2	NOUN
ap-2008	248	13	has	have	VERB
ap-2008	248	14	a	a	DET
ap-2008	248	15	stronger	strong	ADJ
ap-2008	248	16	greenhouse	greenhouse	NOUN
ap-2008	248	17	effect	effect	NOUN
ap-2008	248	18	than	than	ADP
ap-2008	248	19	837	837	NUM
ap-2008	248	20	smadar	smadar	NOUN
ap-2008	248	21	bressler	bressler	NOUN
ap-2008	248	22	,	,	PUNCT
ap-2008	248	23	giora	giora	PROPN
ap-2008	248	24	shaviv	shaviv	PROPN
ap-2008	248	25	,	,	PUNCT
ap-2008	248	26	nir	nir	PROPN
ap-2008	248	27	j	j	PROPN
ap-2008	248	28	shaviv	shaviv	PROPN
ap-2008	248	29	acta	acta	PROPN
ap-2008	248	30	polytechnica	polytechnica	PROPN
ap-2008	248	31	water	water	NOUN
ap-2008	248	32	,	,	PUNCT
ap-2008	248	33	at	at	ADP
ap-2008	248	34	least	least	ADJ
ap-2008	248	35	for	for	ADP
ap-2008	248	36	some	some	DET
ap-2008	248	37	humidity	humidity	NOUN
ap-2008	248	38	regions	region	NOUN
ap-2008	248	39	.	.	PUNCT
ap-2008	249	1	so	so	ADV
ap-2008	249	2	we	we	PRON
ap-2008	249	3	should	should	AUX
ap-2008	249	4	wait	wait	VERB
ap-2008	249	5	and	and	CCONJ
ap-2008	249	6	see	see	VERB
ap-2008	249	7	.	.	PUNCT
ap-2008	250	1	bozena	bozena	PROPN
ap-2008	250	2	czerny	czerny	PROPN
ap-2008	250	3	—	—	PUNCT
ap-2008	250	4	1	1	X
ap-2008	250	5	.	.	X
ap-2008	251	1	what	what	PRON
ap-2008	251	2	about	about	ADP
ap-2008	251	3	cloud	cloud	NOUN
ap-2008	251	4	coverage	coverage	NOUN
ap-2008	251	5	?	?	PUNCT
ap-2008	252	1	this	this	PRON
ap-2008	252	2	varies	vary	VERB
ap-2008	252	3	across	across	ADP
ap-2008	252	4	the	the	DET
ap-2008	252	5	surface	surface	NOUN
ap-2008	252	6	and	and	CCONJ
ap-2008	252	7	it	it	PRON
ap-2008	252	8	is	be	AUX
ap-2008	252	9	also	also	ADV
ap-2008	252	10	coupled	couple	VERB
ap-2008	252	11	vertically	vertically	ADV
ap-2008	252	12	with	with	ADP
ap-2008	252	13	high	high	ADJ
ap-2008	252	14	cloud	cloud	NOUN
ap-2008	252	15	reflectivity	reflectivity	NOUN
ap-2008	252	16	.	.	PUNCT
ap-2008	253	1	2	2	X
ap-2008	253	2	.	.	X
ap-2008	253	3	what	what	PRON
ap-2008	253	4	about	about	ADP
ap-2008	253	5	mechanic	mechanic	ADJ
ap-2008	253	6	effects	effect	NOUN
ap-2008	253	7	like	like	ADP
ap-2008	253	8	convection	convection	NOUN
ap-2008	253	9	or	or	CCONJ
ap-2008	253	10	winds	wind	NOUN
ap-2008	253	11	?	?	PUNCT
ap-2008	254	1	this	this	PRON
ap-2008	254	2	likely	likely	ADV
ap-2008	254	3	predominantly	predominantly	ADV
ap-2008	254	4	cools	cool	VERB
ap-2008	254	5	the	the	DET
ap-2008	254	6	surface	surface	NOUN
ap-2008	254	7	.	.	PUNCT
ap-2008	255	1	smadar	smadar	NOUN
ap-2008	255	2	—	—	PUNCT
ap-2008	255	3	1	1	X
ap-2008	255	4	.	.	X
ap-2008	255	5	cloud	cloud	NOUN
ap-2008	255	6	coverage	coverage	NOUN
ap-2008	255	7	has	have	AUX
ap-2008	255	8	not	not	PART
ap-2008	255	9	yet	yet	ADV
ap-2008	255	10	been	be	AUX
ap-2008	255	11	considered	consider	VERB
ap-2008	255	12	,	,	PUNCT
ap-2008	255	13	as	as	SCONJ
ap-2008	255	14	it	it	PRON
ap-2008	255	15	is	be	AUX
ap-2008	255	16	a	a	DET
ap-2008	255	17	complicated	complicated	ADJ
ap-2008	255	18	matter	matter	NOUN
ap-2008	255	19	:	:	PUNCT
ap-2008	255	20	clouds	cloud	NOUN
ap-2008	255	21	at	at	ADP
ap-2008	255	22	different	different	ADJ
ap-2008	255	23	heights	height	NOUN
ap-2008	255	24	have	have	VERB
ap-2008	255	25	different	different	ADJ
ap-2008	255	26	albedos	albedo	NOUN
ap-2008	255	27	,	,	PUNCT
ap-2008	255	28	and	and	CCONJ
ap-2008	255	29	also	also	ADV
ap-2008	255	30	the	the	DET
ap-2008	255	31	complication	complication	NOUN
ap-2008	255	32	of	of	ADP
ap-2008	255	33	combining	combine	VERB
ap-2008	255	34	the	the	DET
ap-2008	255	35	surface	surface	NOUN
ap-2008	255	36	albedo	albedo	NOUN
ap-2008	255	37	with	with	ADP
ap-2008	255	38	partial	partial	ADJ
ap-2008	255	39	cloud	cloud	NOUN
ap-2008	255	40	coverage	coverage	NOUN
ap-2008	255	41	,	,	PUNCT
ap-2008	255	42	changing	change	VERB
ap-2008	255	43	the	the	DET
ap-2008	255	44	effective	effective	ADJ
ap-2008	255	45	albedo	albedo	NOUN
ap-2008	255	46	.	.	PUNCT
ap-2008	256	1	initial	initial	ADJ
ap-2008	256	2	experiments	experiment	NOUN
ap-2008	256	3	with	with	ADP
ap-2008	256	4	changing	change	VERB
ap-2008	256	5	surface	surface	NOUN
ap-2008	256	6	albedo	albedo	NOUN
ap-2008	256	7	,	,	PUNCT
ap-2008	256	8	though	though	ADV
ap-2008	256	9	,	,	PUNCT
ap-2008	256	10	show	show	VERB
ap-2008	256	11	very	very	ADV
ap-2008	256	12	low	low	ADJ
ap-2008	256	13	sensitivity	sensitivity	NOUN
ap-2008	256	14	of	of	ADP
ap-2008	256	15	the	the	DET
ap-2008	256	16	model	model	NOUN
ap-2008	256	17	to	to	ADP
ap-2008	256	18	even	even	ADV
ap-2008	256	19	30	30	NUM
ap-2008	256	20	%	%	NOUN
ap-2008	256	21	changes	change	NOUN
ap-2008	256	22	,	,	PUNCT
ap-2008	256	23	but	but	CCONJ
ap-2008	256	24	this	this	PRON
ap-2008	256	25	is	be	AUX
ap-2008	256	26	yet	yet	ADV
ap-2008	256	27	to	to	PART
ap-2008	256	28	be	be	AUX
ap-2008	256	29	determined	determine	VERB
ap-2008	256	30	carefully	carefully	ADV
ap-2008	256	31	in	in	ADP
ap-2008	256	32	further	further	ADJ
ap-2008	256	33	calculations	calculation	NOUN
ap-2008	256	34	.	.	PUNCT
ap-2008	257	1	2	2	X
ap-2008	257	2	.	.	X
ap-2008	257	3	convection	convection	NOUN
ap-2008	257	4	was	be	AUX
ap-2008	257	5	still	still	ADV
ap-2008	257	6	not	not	PART
ap-2008	257	7	considered	consider	VERB
ap-2008	257	8	in	in	ADP
ap-2008	257	9	this	this	DET
ap-2008	257	10	preliminary	preliminary	ADJ
ap-2008	257	11	model	model	NOUN
ap-2008	257	12	,	,	PUNCT
ap-2008	257	13	only	only	ADV
ap-2008	257	14	pure	pure	ADJ
ap-2008	257	15	radiative	radiative	ADJ
ap-2008	257	16	transfer	transfer	NOUN
ap-2008	257	17	.	.	PUNCT
ap-2008	258	1	as	as	SCONJ
ap-2008	258	2	convection	convection	NOUN
ap-2008	258	3	will	will	AUX
ap-2008	258	4	onset	onset	VERB
ap-2008	258	5	only	only	ADV
ap-2008	258	6	at	at	ADP
ap-2008	258	7	the	the	DET
ap-2008	258	8	steepest	steep	ADJ
ap-2008	258	9	temperature	temperature	NOUN
ap-2008	258	10	gradient	gradient	NOUN
ap-2008	258	11	,	,	PUNCT
ap-2008	258	12	which	which	PRON
ap-2008	258	13	is	be	AUX
ap-2008	258	14	the	the	DET
ap-2008	258	15	adiabatic	adiabatic	ADJ
ap-2008	258	16	limit	limit	NOUN
ap-2008	258	17	,	,	PUNCT
ap-2008	258	18	our	our	PRON
ap-2008	258	19	calculation	calculation	NOUN
ap-2008	258	20	yields	yield	VERB
ap-2008	258	21	the	the	DET
ap-2008	258	22	upper	upper	ADJ
ap-2008	258	23	limit	limit	NOUN
ap-2008	258	24	of	of	ADP
ap-2008	258	25	the	the	DET
ap-2008	258	26	temperature	temperature	NOUN
ap-2008	258	27	.	.	PUNCT
ap-2008	259	1	we	we	PRON
ap-2008	259	2	can	can	AUX
ap-2008	259	3	parameterize	parameterize	VERB
ap-2008	259	4	convection	convection	NOUN
ap-2008	259	5	from	from	ADP
ap-2008	259	6	our	our	PRON
ap-2008	259	7	model	model	NOUN
ap-2008	259	8	by	by	ADP
ap-2008	259	9	translating	translate	VERB
ap-2008	259	10	the	the	DET
ap-2008	259	11	dt	dt	PROPN
ap-2008	259	12	/	/	SYM
ap-2008	259	13	dτfir	dτfir	NOUN
ap-2008	259	14	into	into	ADP
ap-2008	259	15	dt	dt	PROPN
ap-2008	259	16	/	/	SYM
ap-2008	259	17	dz	dz	PROPN
ap-2008	259	18	through	through	ADP
ap-2008	259	19	a	a	DET
ap-2008	259	20	linear	linear	ADJ
ap-2008	259	21	scale	scale	NOUN
ap-2008	259	22	factor	factor	NOUN
ap-2008	259	23	l	l	NOUN
ap-2008	259	24	=	=	PUNCT
ap-2008	260	1	(	(	PUNCT
ap-2008	260	2	d	d	X
ap-2008	260	3	ln	ln	X
ap-2008	260	4	τ	τ	PROPN
ap-2008	260	5	dz	dz	PROPN
ap-2008	260	6	)	)	PUNCT
ap-2008	260	7	−1	−1	NOUN
ap-2008	260	8	.	.	PUNCT
ap-2008	261	1	(	(	PUNCT
ap-2008	261	2	18	18	NUM
ap-2008	261	3	)	)	PUNCT
ap-2008	261	4	this	this	PRON
ap-2008	261	5	will	will	AUX
ap-2008	261	6	be	be	AUX
ap-2008	261	7	carried	carry	VERB
ap-2008	261	8	out	out	ADP
ap-2008	261	9	in	in	ADP
ap-2008	261	10	further	further	ADJ
ap-2008	261	11	studies	study	NOUN
ap-2008	261	12	.	.	PUNCT
ap-2008	262	1	as	as	ADP
ap-2008	262	2	to	to	ADP
ap-2008	262	3	winds	wind	NOUN
ap-2008	262	4	,	,	PUNCT
ap-2008	262	5	our	our	PRON
ap-2008	262	6	model	model	NOUN
ap-2008	262	7	is	be	AUX
ap-2008	262	8	not	not	PART
ap-2008	262	9	suitable	suitable	ADJ
ap-2008	262	10	for	for	ADP
ap-2008	262	11	calculating	calculate	VERB
ap-2008	262	12	the	the	DET
ap-2008	262	13	effect	effect	NOUN
ap-2008	262	14	of	of	ADP
ap-2008	262	15	global	global	ADJ
ap-2008	262	16	winds	wind	NOUN
ap-2008	262	17	and	and	CCONJ
ap-2008	262	18	wind	wind	NOUN
ap-2008	262	19	jets	jet	NOUN
ap-2008	262	20	(	(	PUNCT
ap-2008	262	21	in	in	ADP
ap-2008	262	22	gravitationally	gravitationally	ADV
ap-2008	262	23	locked	lock	VERB
ap-2008	262	24	planets	planet	NOUN
ap-2008	262	25	especially	especially	ADV
ap-2008	262	26	)	)	PUNCT
ap-2008	262	27	,	,	PUNCT
ap-2008	262	28	and	and	CCONJ
ap-2008	262	29	it	it	PRON
ap-2008	262	30	requires	require	VERB
ap-2008	262	31	coupling	couple	VERB
ap-2008	262	32	with	with	ADP
ap-2008	262	33	climate	climate	NOUN
ap-2008	262	34	global	global	ADJ
ap-2008	262	35	circulation	circulation	NOUN
ap-2008	262	36	models	model	NOUN
ap-2008	262	37	(	(	PUNCT
ap-2008	262	38	gcm	gcm	PROPN
ap-2008	262	39	)	)	PUNCT
ap-2008	262	40	,	,	PUNCT
ap-2008	262	41	which	which	PRON
ap-2008	262	42	are	be	AUX
ap-2008	262	43	used	use	VERB
ap-2008	262	44	today	today	NOUN
ap-2008	262	45	to	to	PART
ap-2008	262	46	calculate	calculate	VERB
ap-2008	262	47	the	the	DET
ap-2008	262	48	greenhouse	greenhouse	NOUN
ap-2008	262	49	temperatures	temperature	NOUN
ap-2008	262	50	from	from	ADP
ap-2008	262	51	lbl	lbl	NOUN
ap-2008	262	52	-	-	PUNCT
ap-2008	262	53	models	model	NOUN
ap-2008	262	54	,	,	PUNCT
ap-2008	262	55	which	which	PRON
ap-2008	262	56	yield	yield	VERB
ap-2008	262	57	radiation	radiation	NOUN
ap-2008	262	58	fluxes	flux	NOUN
ap-2008	262	59	in	in	ADP
ap-2008	262	60	w	w	PROPN
ap-2008	262	61	/	/	SYM
ap-2008	262	62	m2	m2	PROPN
ap-2008	262	63	.	.	PUNCT
ap-2008	263	1	we	we	PRON
ap-2008	263	2	hope	hope	VERB
ap-2008	263	3	to	to	PART
ap-2008	263	4	match	match	VERB
ap-2008	263	5	our	our	PRON
ap-2008	263	6	radiative	radiative	ADJ
ap-2008	263	7	transfer	transfer	NOUN
ap-2008	263	8	software	software	NOUN
ap-2008	263	9	in	in	ADP
ap-2008	263	10	the	the	DET
ap-2008	263	11	future	future	NOUN
ap-2008	263	12	with	with	ADP
ap-2008	263	13	a	a	DET
ap-2008	263	14	good	good	ADJ
ap-2008	263	15	gcm	gcm	NOUN
ap-2008	263	16	,	,	PUNCT
ap-2008	263	17	in	in	ADP
ap-2008	263	18	order	order	NOUN
ap-2008	263	19	to	to	PART
ap-2008	263	20	feed	feed	VERB
ap-2008	263	21	our	our	PRON
ap-2008	263	22	results	result	NOUN
ap-2008	263	23	to	to	ADP
ap-2008	263	24	climatic	climatic	ADJ
ap-2008	263	25	models	model	NOUN
ap-2008	263	26	.	.	PUNCT
ap-2008	264	1	as	as	SCONJ
ap-2008	264	2	you	you	PRON
ap-2008	264	3	see	see	VERB
ap-2008	264	4	,	,	PUNCT
ap-2008	264	5	there	there	PRON
ap-2008	264	6	is	be	VERB
ap-2008	264	7	still	still	ADV
ap-2008	264	8	much	much	ADJ
ap-2008	264	9	work	work	NOUN
ap-2008	264	10	to	to	PART
ap-2008	264	11	be	be	AUX
ap-2008	264	12	done	do	VERB
ap-2008	264	13	!	!	PUNCT
ap-2008	265	1	we	we	PRON
ap-2008	265	2	are	be	AUX
ap-2008	265	3	only	only	ADV
ap-2008	265	4	at	at	ADP
ap-2008	265	5	the	the	DET
ap-2008	265	6	beginning	beginning	NOUN
ap-2008	265	7	.	.	PUNCT
ap-2008	265	8	.	.	PUNCT
ap-2008	265	9	.	.	PUNCT
ap-2008	266	1	838	838	NUM
ap-2008	266	2	acta	acta	PROPN
ap-2008	266	3	polytechnica	polytechnica	PROPN
ap-2008	266	4	53(supplement):832–838	53(supplement):832–838	NUM
ap-2008	266	5	,	,	PUNCT
ap-2008	266	6	2013	2013	NUM
ap-2008	266	7	1	1	NUM
ap-2008	266	8	introduction	introduction	NOUN
ap-2008	266	9	2	2	NUM
ap-2008	266	10	basic	basic	ADJ
ap-2008	266	11	assumptions	assumption	NOUN
ap-2008	266	12	3	3	NUM
ap-2008	266	13	greenhouse	greenhouse	NOUN
ap-2008	266	14	and	and	CCONJ
ap-2008	266	15	anti	anti	ADJ
ap-2008	266	16	-	-	ADJ
ap-2008	266	17	greenhouse	greenhouse	ADJ
ap-2008	266	18	models	model	NOUN
ap-2008	266	19	4	4	NUM
ap-2008	266	20	the	the	DET
ap-2008	266	21	resolution	resolution	NOUN
ap-2008	266	22	of	of	ADP
ap-2008	266	23	the	the	DET
ap-2008	266	24	simpson	simpson	PROPN
ap-2008	266	25	paradox	paradox	PROPN
ap-2008	266	26	5	5	NUM
ap-2008	266	27	the	the	DET
ap-2008	266	28	(	(	PUNCT
ap-2008	266	29	tau_vis	tau_vis	ADJ
ap-2008	266	30	,	,	PUNCT
ap-2008	266	31	tau_fir	tau_fir	NOUN
ap-2008	266	32	)	)	PUNCT
ap-2008	266	33	plane	plane	NOUN
ap-2008	266	34	6	6	NUM
ap-2008	266	35	the	the	DET
ap-2008	266	36	algorithm	algorithm	NOUN
ap-2008	266	37	for	for	ADP
ap-2008	266	38	the	the	DET
ap-2008	266	39	optical	optical	ADJ
ap-2008	266	40	depth	depth	NOUN
ap-2008	266	41	6.1	6.1	NUM
ap-2008	266	42	transition	transition	NOUN
ap-2008	266	43	in	in	ADP
ap-2008	266	44	the	the	DET
ap-2008	266	45	far	far	ADV
ap-2008	266	46	infrared	infrared	ADJ
ap-2008	266	47	domain	domain	NOUN
ap-2008	266	48	7	7	NUM
ap-2008	266	49	actual	actual	ADJ
ap-2008	266	50	calculation	calculation	NOUN
ap-2008	266	51	8	8	NUM
ap-2008	266	52	the	the	DET
ap-2008	266	53	effect	effect	NOUN
ap-2008	266	54	of	of	ADP
ap-2008	266	55	water	water	NOUN
ap-2008	266	56	vapor	vapor	NOUN
ap-2008	266	57	8.1	8.1	NUM
ap-2008	266	58	line	line	NOUN
ap-2008	266	59	-	-	PUNCT
ap-2008	266	60	by	by	ADP
ap-2008	266	61	-	-	PUNCT
ap-2008	266	62	line	line	NOUN
ap-2008	266	63	models	model	NOUN
ap-2008	266	64	9	9	NUM
ap-2008	266	65	a	a	DET
ap-2008	266	66	maximum	maximum	ADJ
ap-2008	266	67	temperature	temperature	NOUN
ap-2008	266	68	for	for	ADP
ap-2008	266	69	a	a	DET
ap-2008	266	70	planet	planet	NOUN
ap-2008	266	71	10	10	NUM
ap-2008	266	72	summary	summary	NOUN
ap-2008	266	73	acknowledgements	acknowledgement	NOUN
ap-2008	266	74	references	reference	NOUN
