







































 

 

 

 

 

The Effect of Blended Instruction on Student 

Performance: A Meta-Analysis of 106 

Empirical Studies from China and Abroad

Baomin Li,
1
 Qing Yu,

1
 Fenglei Yang

2
 

 
1. Faculty of Education, East China Normal University, Shanghai 

200062, China 

2. School of Computer Engineering and Science, Shanghai University, 

Shanghai 200444, China

Abstract. Blended instruction integrating off-line and on-line teaching 

has become an important instrument for promoting educational reform 

and innovation. However, the results of current empirical studies 
diverge on the effect of blended instruction on student performance, 

which necessitates further research on the effectiveness of blended 
instruction and related factors. This study, using an evidence-based 

meta-analytical approach, conducts a quantitative analysis of 106 

experimental and quasi- experimental studies published from January 
2000 to September 2021 in China and abroad, and systematically 

examines the effectiveness of blended instruction. The research finds 
that: i) The summary effect size (ES) of the included sample is 0.669 

(n=142), indicating that blended instruction has above-moderate 

positive effects on student performance, especially on student learning 
motivation and academic emotions and attitude; ii) In terms of education 

levels, experimental periods and class sizes, blended instruction has the 

most significant positive effect on junior and senior secondary school 
students, on a teaching period from one to three months, and on a class 

size of 51 to 100 students; iii) Regarding the proportion and interactive 
patterns of online teaching, 50% composition of online teaching and 

synchronous or synchronous + asynchronous interaction exert the most 

significant positive effects on student learning. iv) Teaching methods 
including task-driven learning, role-playing, inquiry-based teaching, 

and case-based teaching have greater positive effects on student 
performance than other methods. Group study yields a greater effect on 

promoting student learning compared to individual study. Based on the 

findings, the present study also makes suggestions for the effective 
practice of blended instruction. 



Li et al. Effect of Blended Instruction on Student Performance. 

BECE, Vol.10, No.2, 2022 1396 

Best Evidence in Chinese Education 2022; 10(1):1395-1403. 

Doi: 10.15354/bece.22.ar018. 

How to Cite: Li, B., Yu, Q., & Yang, F. (2022). The effect of blended instruction on 

student performance: A meta-analysis of 106 empirical studies from China and 

abroad. Best Evidence in Chinese Education, 10(2):1395-1403. 

Keywords: Blended Instruction, Blended Learning, On-Line Learning, Student 

Performance, Meta-Analysis

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 
 

About Authors: Baomin Li, Faculty of Education, East China Normal University, Shanghai 200062, China. E-mail: 

lbmlinda@126.com  

Qing Yu, Faculty of Education, East China Normal University, Shanghai 200062, China. E-mail: 

2429560977@qq.com  

Correspondence to: Fenglei Yang, School of Computer Engineering and Science, Shanghai University, Shanghai 
200444, China. E-mail: flyang@shu.edu.cn  

Conflict of Interests: None. 
 

© 2022 Insights Publisher. All rights reserved. 

Creative Commons Non Commercial CC BY-NC: This article is distributed under the terms of the 

Creative Commons Attribution-NonCommercial 4.0 License 

(http://www.creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of 

the work without further permission provided the original work is attributed by the Insights Publisher. 

mailto:lbmlinda@126.com
mailto:2429560977@qq.com
mailto:flyang@shu.edu.cn


Li et al. Effect of Blended Instruction on Student Performance. 

BECE, Vol.10, No. 2, 2022 1397 

Introduction 

LENDED instruction, a combination of traditional face-to-face and online 

teaching, has prevailed worldwide since 2020. Through effective instructional 

design and technological application, it integrates the two teaching modes (Al-

len & Seaman, 2010; Garrison & Kanuka, 2004; Li & Zhao, 2004) and incorporates the 

advantages of both modes such as flexible learning time and space, easy access to and 

sharing of resources, and augmented interaction (Lock, 2006). It is regarded by some 

researchers as a critical instruction format in overcoming the limitations of traditional 

teaching and pure online learning (Schlager, Fusco, & Schank, 2002; Feng, Wang, & 

Wu, 2018). Feng, Sun, and Cao (2019) believe that blended instruction is an innovation 

in teaching reform; Garrison and Kanuka (2004) suggest that it provides educators with 

opportunities to re-examine and reconstruct teaching practice. 

To evaluate the effectiveness of blended instruction, scholars have undertaken 

substantial research. The conclusions of their research vary and can be classified into 

the following three categories: 1) Blended instruction yields significant positive effects 

on the improvement of student performance; 2) There is no significant difference be-

tween blended instruction and traditional teaching; 3) Blended instruction is not as ef-

fective as traditional teaching. These conflicting results hinder the universalization of 

blended instruction. 

In the context of the ongoing development of “Internet+” education and new 

educational requirements in the post-pandemic era, blended instruction tends to become 

the new normal mode of teaching (Porter et al., 2014). Given that some educational ad-

ministrators and teachers cannot understand the role of blended instruction clearly with 

no idea how to reasonably configurate online learning and face-to-face instruction, and 

contradictory results exist in the current empirical studies of the effects of blended in-

struction, it is imperative to conduct a systematic study on this topic. A meta-analysis is 

a systematic quantitative synthesis of results from a series of independent studies under 

the same research topic (Lipsey & Wilson, 2001), which is effective in alleviating am-

biguities and uncertainties in the findings of social sciences and prompting new scien-

tific discoveries (Li & Qu, 2021). 

Given this, the present study adopts evidence-based meta-analysis to examine 

the effect of blended instruction on student learning and its major moderating factors, 

such as the ratio of online teaching to face-to-face instruction and the sequence of the 

two components in blended instruction. It aims to answer the following questions: 1) 

How effective is blended instruction compared to traditional teaching? What effects 

does it have on the improvement of student performance in various dimensions? 2) How 

do the ratio of online teaching and sequence of online and offline teaching in the com-

bination impact student learning? 3) What influences do teaching periods, education 

levels, and class sizes have on blended instruction? 4) What are the differences among 

various teaching methods and learning styles in blended instruction? 

Research Design  

 

B 



Li et al. Effect of Blended Instruction on Student Performance. 

BECE, Vol.10, No. 2, 2022 1398 

Research Methods and Instruments 

The present study extracts sample sizes, means, and standard deviations from related 

literature and integrates results from studies on the same research topic. The effects of 

blended instruction on student learning performance are measured by standardized 

mean differences (SMD), denoting effect sizes. 

Research Processes 

Literature Search 

In search for relevant studies, the present study uses keywords including blended learn-

ing, blended instruction, hybrid learning, hybrid instruction, mixed mode learning, 

learning outcomes, learning effect, learning achievement, learning gains, learning per-

formance, and academic achievement, and consult English bibliographic databases such 

as Web of Science, Google Scholar, ERIC, EBSCO, Science Direct and ProQuest. For 

literature in Chinese, the search is focused on CNKI’s core-listed journals and CSSCI-

indexed journals and keywords like blended instruction, blended learning, learning ef-

fect, learning outcomes, and experimental intervention. The included studies were pub-

lished from January of 2000 to September of 2021. 

Literature Screening and Inclusion Criteria 

In the present study, the following criteria are applied to decide whether to include a 

study in the analysis: 1) aiming to investigate the relationship between blended instruc-

tion and student learning performance; 2) using experimental design, quasi-

experimental design or any other form of empirical research in the investigation; 3) in-

cluding experimental group and control group, with the former being intervened by 

blended instruction while the latter being spared of any interventions including pre-test 

and posttest; 4) providing complete data such as the sample size, mean, standard devia-

tion, t-value, p-value or relevant coefficients to calculate the effect values.  

Samples in this study are independent. When duplication or overlapping occurs 

among samples, the more detailed or the larger sample is selected. After screening, 

there remain 98 articles in English and 8 ones in Chinese. SMD is adopted in calculat-

ing effect value. As there is more than one effect size in some studies, finally 142 effect 

sizes are drawn. The experimental group consists of 7064 students and the control 

group 6733 students. 

Literature Coding 

Literature coding in this study covers author information, years of publication, sample 

sizes, education levels, disciplines, experimental periods, proportions of online teaching, 

teaching methods, online interactive patterns, and other contents. Education levels range 

from basic to higher education levels and disciplines here include most of the subjects 

in place at all education levels. An experimental period can be less than one week, less 

than one month, less than six months, or more than six months. The proportion of 

online teaching can be less than 30%, 31% - 49%, 50%, 51% - 70%, or 71% - 80%. 



Li et al. Effect of Blended Instruction on Student Performance. 

BECE, Vol.10, No. 2, 2022 1399 

 

Data Analysis 

To comprehensively examine the effect of blended instruction, we follow Cooper’s 

(2009) analytical procedures and conduct data analysis using the software CMA 2.0. 

Through literature review, it is found that the effect of blended instruction on student 

performance is also correlated with miscellaneous factors such as subjects (students) of 

the research and learning content. When the results of the meta-analysis are affected by 

different qualities of literature, the random-effects model can make them more reasona-

ble and scientific. Therefore, this study chooses the random-effects model as statistical 

model and confirms the appropriateness of random-effects model by heterogeneity test. 

Research Results 

The Overall Effect of Blended Instruction on Student 

Learning Performance 

This study uses the standardized mean difference as effect value and the summary effect 

of 142 effect sizes is 0.669. Cohen (1992) prescribes that an effect size less than 0.2 

means a weak effect, an effect size of around 0.5 signifies a moderate effect, and an 

effect size larger than 0.8 indicates a substantial effect. The results of analysis reveal 

that blended instruction yields an above-moderate effect on the improvement of student 

learning outcomes.  

To further analyze the differences in the effects of blended instruction on stu-

dent performance in various dimensions, this study investigates its impact on non-

cognitive elements such as learning satisfaction, emotions and attitude, and learning 

motivation as well as on cognitive elements such as higher order thinking (like critical 

thinking and innovation mentality), academic achievements, and practical skills. A 

more concrete demonstration of the effects of blended instruction on student perfor-

mance can be reflected in the following sequence (from strong to weak): learning moti-

vation (SMD = 0.936) > emotions and attitude (SMD = 0.788) > higher order thinking 

(SMD = 0.764) > academic achievements (SMD = 0.696) > practical skills (SMD = 

0.544) > learning satisfaction (SMD = 0.516). It shows that blended instruction most 

significantly improves student learning motivation and emotions and attitude; the posi-

tive effect of blended instruction on student critical thinking, innovation mentality and 

academic achievements is above moderate level; it also has moderate positive effects on 

student satisfaction and practical skills. The between-group effect value p = 0.240 > 

0.05 is not statistically significant, indicating that there are no significant differences in 

the effect of blended instruction on student performance in different dimensions. 

The Effects of Blended Instruction at Different Educa-

tion Levels  

The effect sizes at all education levels are consistently above 0.5. SMDs at senior sec-

ondary, junior secondary, higher education, primary, and adult education levels are 



Li et al. Effect of Blended Instruction on Student Performance. 

BECE, Vol.10, No. 2, 2022 1400 

0.867, 0.758, 0.647, 0.566 and 0.565 respectively. The effect sizes at senior secondary 

and junior secondary levels are both above 0.75, indicating that blended instruction has 

significant positive effects on student performance at these two levels; the effect sizes at 

higher education, primary, and adult education levels are all above 0.5, showing the 

positive effects of blended instruction at these education levels are above moderate. The 

between-group effect value p = 0.550 > 0.05 shows no statistical significance and indi-

cates that there are no significant differences in the impact of blended instruction on 

student performance at different education levels. Yet, it is worth noting that it has an 

exceptionally great positive effect at the senior secondary level.  

The effects of blended instruction in different class sizes 

Blended instruction can replace partial classroom teaching with online instruction and 

aids in alleviating the problems typical in teaching with large class sizes, such as low 

effectiveness and insufficient learning room. SMDs of class sizes of 51 -  100 students, 

100 + students, 31 -  50 students and 1-  30 students are 0.752, 0.704, 0.663, and 0.562 

respectively. The four effect sizes are all above 0.5, indicating that the positive effects 

of blended instruction in any of the four class sizes are above moderate level. The be-

tween-group effect value p = 0.485 > 0.05 shows no statistical significance and indi-

cates that there are no significant differences in the effects of blended instruction in dif-

ferent class sizes.  

The Effects of Blended Instruction of Different Teach-

ing Periods 

In this study, the experimental periods are classified into three groups, namely experi-

mental periods of less than one month, one to three months, and more than three months. 

The effect sizes of blended instruction of the three periods are all above 0.5, indicating 

moderate positive effects. Among them, the experimental period of one to three months 

yields the most significant effect (SMD = 0.845), followed by the periods of less than 

one month (SMD = 0.705) and more than three months (SMD = 0.530). The between-

group effect value p = 0.017 < 0.05 shows significant difference in the effects of blend-

ed instruction among different experimental periods, which reveals that teaching peri-

ods can moderate the effects of blended instruction.   

The Effects of Blended Instruction under Different 

Teaching Methods 

To investigate the impact of different teaching methods on the effects of blended in-

struction, this study codes and analyzes ten teaching methods, namely case-based teach-

ing, task-driven learning, project-based learning, lecturing, role-playing, inquiry-based 

teaching, learning by discussion, peer instruction, Q & A teaching, and demonstrative 

teaching. Data analysis results show that the effect sizes of blended instruction under 

task-driven learning, role-playing, inquiry-based teaching, and case-based teaching are 

all above 0.8, indicating these four teaching methods have substantial positive effects 

on student learning performance; the positive effects of project-based learning, peer 



Li et al. Effect of Blended Instruction on Student Performance. 

BECE, Vol.10, No. 2, 2022 1401 

instruction, and learning by discussion are above moderate level (SMD > 0.6); lecturing 

and demonstrative teaching have moderate positive effects on student performance; Q 

& A teaching (P > 0.05) shows no significant effect on student performance. The be-

tween-group effect value p = 0.121> 0.05 indicates that there are no significant differ-

ences in the effects of distinct teaching methods on student learning performance in 

blended instruction. 

The Effects of Blended Instruction in Different Learn-

ing Organization Forms 

This study codes and analyzes data of two learning organization forms, that is, group 

learning and independent learning. The effect sizes (SMDs) of them are 0.678 and 

0.584 respectively, indicating that group learning is more effective than independent 

learning in blended instruction. The positive effect of group learning on student perfor-

mance is above moderate level and that of independent learning is moderate. The be-

tween-group effect value p = 0.433 > 0.05 shows that distinct learning organization 

forms engender no significant differences in the effects on student learning performance. 

The Effects of Blended Instruction with Different Pro-

portions of Online Teaching 

This study classifies the proportions of online teaching into five groups, namely lower 

than 30%, 30% -  49%, 50%, 51% - 69%, and 70% - 80%. The effect sizes of all five 

groups are above 0.3, basically indicating blended instruction with whatever proportion 

of online teaching exerts positive effects on student learning performance. SMDs of 

proportions of 50%, 30% - 49%, 51% - 69%, lower than 30%, and 70% - 80% are 0.792, 

0.525, 0.468, 0.346, and 0.313 respectively. Blended instruction with 50% online teach-

ing yields the most significant positive effect on student learning performance. Blended 

instruction with 30% - 49% and 51% - 69% online teaching has moderate positive ef-

fects on student performance. It is worth noticing that both the lowest proportion (lower 

than 30%) and the highest one (70% - 80%) produce the least significant effects. The 

between-group effect value p = 0.000 < 0.05 indicates that blended instruction with dis-

tinct proportions of online teaching has remarkably different effects on student perfor-

mance.   

The Effects of Blended Instruction with Different Se-

quences of Online Teaching and Face-to-Face Teach-

ing  

To investigate the effects of blended instruction with different sequences of online 

teaching and face-to-face teaching on student learning performance, this study summa-

rizes five categories of sequences including “weekly alternation”, “weekly online + 

face-to-face teaching”, “online teaching followed by face-to-face teaching”, “face-to-

face teaching followed by online teaching”, and “face-to-face teaching + online teach-

ing + face-to-face teaching.” “Weekly alternation” is a sequence wherein on-line and 



Li et al. Effect of Blended Instruction on Student Performance. 

BECE, Vol.10, No. 2, 2022 1402 

face-to-face teaching occur alternately by the week. In “weekly online + face-to-face 

teaching”, both online and face-to-face teaching happen in every week.  “Online teach-

ing followed by face-to-face teaching”, “face-to-face teaching followed by online teach-

ing”, and “face-to-face teaching + online teaching + face-to-face teaching” are sequenc-

es of the two components in the whole experimental period. SMDs for “face-to-face 

teaching + online teaching + face-to-face teaching”, “online teaching followed by face-

to-face teaching”, “weekly online + face-to-face teaching”, “face-to-face teaching fol-

lowed by online teaching”, and “weekly alternation” are 0.757, 0.718, 0.668, 0.649, and 

0.363 respectively. With the largest effect size, “face-to-face teaching + online teaching 

+ face-to-face teaching” has the most significant positive effect on student learning per-

formance; the positive effects of “online teaching followed by face-to-face teaching”, 

“weekly online + face-to-face teaching”, and “face-to-face teaching followed by online 

teaching” are above moderate. The between-group effect value p = 0.908 > 0.05 indi-

cates there is no significant difference in the effects of blended instructions with differ-

ent sequences of online and face-to-face teaching. 

The Effects of Blended Instruction with Different 

Teacher-Student Online Interactive Patterns 

To investigate the effects of teacher-student online interactions on student learning per-

formance in blended instruction, this study groups them into four patterns, that is, syn-

chronous interaction, asynchronous interaction, synchronous + asynchronous interaction, 

absence of interaction. SMDs for synchronous + asynchronous interaction, synchronous 

interaction, asynchronous interaction, and absence of interaction are 1.189, 1.134, 0.521, 

and 0.130 respectively, which means that synchronous + asynchronous interaction and 

synchronous interaction have the most significant effects in promoting student learning 

performance while the positive effect of asynchronous interaction is moderate. The be-

tween-group effect value p = 0.000 < 0.05 indicates that there is significant difference 

in the effects of distinct teacher-student online interactive patterns on student learning 

performance. 

 

 

 

 

 

 

 

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The Chinese version of this article has been published in Open Education Research, 2022, 

28(1):75-78. The English version has been authorized for being publication in BECE by the au-

thor(s) and the Chinese journal. 

李宝敏, 余青, 杨风雷. (2022). 混合教学对学生学习成效的影响-基于国内外 106 篇实证研究

的元分析. 开放教育研究，28(1):75-78. 

 

 

Received: 15 February 2022 

Revised: 27 February 2022 

Accepted: 10 March 2022 

 

 

 

 

 

http://kns.cnki.net/kcms/detail/10.1478.g2.20210722.0923.002.html
http://kns.cnki.net/kcms/detail/10.1478.g2.20210722.0923.002.html
https://doi.org/10.1016/j.compedu.2014.02.011
https://doi.org/10.1016/j.compedu.2014.02.011
https://doi.org/10.1017/CBO9780511606373.010
https://doi.org/10.1017/CBO9780511606373.010

	Article-FengleiYang-BECE_Title_Mar2022
	Article-FengleiYang--BECE_MaintextMar2022

