Haptic Experiences Shape Student-Generated Gestures While Learning with Computational Environments

Xiaoyu Tang, Robb Lindgren, Matthew E. Lira · Proceedings. · 2024

In science education, gestures have emerged as a valuable tool for both students to represent their reasoning and educators to assess learners' developing knowledge.One reason is that gestures afford representing dynamic causal reasoning, a fundamental aspect of understanding various natural phenomena.However, gestures inherently lack feedback mechanisms and are possibly epiphenomenal to learning.We address these limitations by pairing haptic physical models with a computational NetLogo simulation designed to support students in comprehending dynamic interactions within complex systems.In this study, we investigated the impact of haptic learning experiences and computational environments on student-generated gestures.Our findings revealed that haptic learning experiences augment the computational environments by providing students with sensory feedback.This, in turn, leads to a shift in students' gestures, as they transition from representing aggregate patterns, such as quantity and motion, to individual interactions between physical entities and forces.

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