The effect of color-coding on students' perception of learning in introductory mechanics

Fuente: arXiv
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Hauptverfasser: Thomas, Brianna S. Dillon, Carr, Scott, Guo, Siming
Format: Preprint
Veröffentlicht: 2024
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author Thomas, Brianna S. Dillon
Carr, Scott
Guo, Siming
author_facet Thomas, Brianna S. Dillon
Carr, Scott
Guo, Siming
contents We designed three color-coding schemes to identify related information across representations and to differentiate distinct information within a representation in slide-based instruction for calculus-based introductory mechanics. We found that students had generally favorable opinions on the use of color and that the few negative criticisms are easily addressed through minor modifications to implementation. Without having the color-coding schemes pointed out to them, a modest but consistent minority of students who found color helpful also described the color-coding schemes implemented, and about a quarter described the use of color in physics contexts as helpful even if they did not describe color-coding. We found that students particularly favored using color in mathematics and color-coding used to identify related variables, verbal definitions, and diagram elements. We additionally found that on average 40% of students found color to be helpful in matching and connecting related information or in separating and distinguishing distinct information, which were the motivating reasons for employing the color-coding schemes.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14605
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The effect of color-coding on students' perception of learning in introductory mechanics
Thomas, Brianna S. Dillon
Carr, Scott
Guo, Siming
Physics Education
We designed three color-coding schemes to identify related information across representations and to differentiate distinct information within a representation in slide-based instruction for calculus-based introductory mechanics. We found that students had generally favorable opinions on the use of color and that the few negative criticisms are easily addressed through minor modifications to implementation. Without having the color-coding schemes pointed out to them, a modest but consistent minority of students who found color helpful also described the color-coding schemes implemented, and about a quarter described the use of color in physics contexts as helpful even if they did not describe color-coding. We found that students particularly favored using color in mathematics and color-coding used to identify related variables, verbal definitions, and diagram elements. We additionally found that on average 40% of students found color to be helpful in matching and connecting related information or in separating and distinguishing distinct information, which were the motivating reasons for employing the color-coding schemes.
title The effect of color-coding on students' perception of learning in introductory mechanics
topic Physics Education
url https://arxiv.org/abs/2411.14605