Embodied learning at a distance: From sensory-motor experience to constructing and understanding a sine graph
Publication date
2023
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Abstract
Educational technologies develop quickly. Which functions of face-to-face education can be substituted by technology for distance learning? One of the risks of online education is the lack of embodied interactions. We investigate what embodied interactive technologies might offer for teaching trigonometry when learning at a distance. In a multiple case study, we analyze the potential of embodied action-based design for fostering conceptual understanding of a sine graph. It appears that independent learning with tablet-based activities leads to acquiring new sensory-motor coordinations. Some students include these new embodied experiences into mathematical discourse and trigonometry problem solving themselves, while others still need some support from a teacher. However, distantly acquired embodied experiences can be easily recalled in a few days after learning and serve well as a substrate for further conceptualization and problem-solving. The results speak for a clear contribution that embodied design might provide for grounding conceptual understanding in distance learning. However, we expect embodied design to be particularly helpful in a blended learning format.
Keywords
Embodied design, conceptual understanding, distance learning, mathematics education, perception-action loop, trigonometry, General Mathematics, Education, Developmental and Educational Psychology
Citation
Shvarts, A & van Helden, G 2023, 'Embodied learning at a distance: From sensory-motor experience to constructing and understanding a sine graph', Mathematical Thinking and Learning, vol. 25, no. 4, pp. 409-437. https://doi.org/10.1080/10986065.2021.1983691