Exploring Students’ Geometrical Thinking Through Dynamic Transformations Using 3D Computer-Based Representations

Christos Markopoulos, Patrick Bruck, Koralia Petta
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Abstract

This paper examines Grade 6 students’ thinking about geometrical solids and their properties in the context of a computer-based task. The main focus is to explore how students interact with a number of tasks based on the dynamic transformation of computer-based representations of 3D solids in a geometry classroom with the aid of a Dynamic Geometric Environment. The analysis of two teaching experiments suggests that the dynamic transformations of geometrical solids encourage the students to investigate relationships between the solids and their properties and their 2D representations. Through the tasks, students realize the existence of non-trivial conventions in 2D representations and become aware that angles and edge dimensions may be distorted. The study provides insight into student learning around geometric solids and their properties, and consequently an opportunity to enhance the teaching of 3D geometry.
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用三维计算机表示法通过动态变换探究学生的几何思维
本文考察了六年级学生在计算机任务中对几何实体及其性质的思考。主要重点是探索学生如何在动态几何环境的帮助下,在几何教室中基于计算机的三维实体表示的动态转换的基础上,与许多任务进行交互。对两个教学实验的分析表明,几何实体的动态变换鼓励学生研究实体与其特性及其二维表示之间的关系。通过这些任务,学生们意识到二维表示中存在非平凡的约定,并意识到角度和边缘维度可能会失真。该研究深入了解了学生对几何实体及其特性的学习,从而为加强三维几何教学提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
16 weeks
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