Home > Publications Search > Publication Detail

Mapping Students' Self-Reported Cognitive Load, Situational Engagement, and Attentional-Cognitive States in an Online Multimedia Learning Module

Conference Paper/Proceedings
Mapping Students' Self-Reported Cognitive Load, Situational Engagement, and Attentional-Cognitive States in an Online Multimedia Learning Module
Publication Year:
2024
Publication Source:
2024 Physics Education Research Conference, Perc
Funding Type:
ECR:Core
Author(s):
Rebello, N. Sanjay; Munsell, Jeremy; Chandran, Prasanth; Loschky, Lester C.; Huang, Yifeng; Hoai, Minh; D'Mello, Sidney
Supporting Project(s):

This study investigated relationships between online learners' self-reported attentional and cognitive states, cognitive load, situational engagement, and learning gains from a multimedia instructional module on Newton's second law. Students (N=896) estimated time spent in four states: on-screen/on-task, off-screen/on-task, onscreen/off-task (mind wandering), and off-screen/off-task. Most time was spent on-screen/on-task (62.4%). Mind wandering time negatively correlated with engagement, germane load, and learning gains. On-task time positively correlated with engagement and germane load, but off-screen/on-task time unexpectedly negatively related to germane load. Off-task time correlated negatively with engagement/germane load and positively with extraneous load. However, no attentional state significantly predicted learning gains besides mind wandering's negative impact. Self-reports revealed relationships generally aligning with cognitive load theory, though some findings differed from expectations. The results underscore examining attentional-cognitive states' influence on cognitive load, engagement, and multimedia learning outcomes.