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Using visualization tools to improve undergraduates understanding of crystal structure

机译:使用可视化工具提高大学生对晶体结构的了解

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In order to understand many of the important ideas in materials science, students need to have some understanding of crystal structure and symmetry. But many undergraduate students find crystal symmetry a difficult and highly abstract subject. One of the reasons for this is the use of difficult 2D representations of complicated 3D structures. Although many teachers use physical models to help give their students a sense of the structure, physical models are limited in the information they can provide. Using computers to visualize the crystal structure provides flexibility and the ability to link related concepts like symmetry or close packing. The paper reports on CrystalVis, a new visualization tool for crystal structures that is under development at UC Berkeley. The CrystalVis program displays crystals in a variety of ways allowing the student to rotate and zoom in on the crystal so as to get a better sense of the 3D structure. The program has just begun to be used in classes at UCB both as a lecture aid and for students to get hands on experience with crystal structures. The paper reports on the results from these classes and the plans for use the program in the future.
机译:为了理解材料科学中的许多重要思想,学生需要对晶体结构和对称性有一定的了解。但是许多本科生发现晶体对称是一个困难且高度抽象的主题。原因之一是使用复杂的3D结构的困难2D表示。尽管许多老师使用物理模型来帮助学生了解结构,但是物理模型在提供的信息方面受到限制。使用计算机可视化晶体结构可提供灵活性以及链接相关概念(如对称性或紧密堆积)的能力。该论文报道了CrystalVis,这是UC Berkeley正在开发的一种新的晶体结构可视化工具。 CrystalVis程序以多种方式显示晶体,使学生可以旋转和放大晶体,从而更好地了解3D结构。该程序刚刚开始在UCB的课堂上用作教学辅助工具,并让学生获得有关晶体结构的实践经验。本文报告了这些类的结果以及将来使用该程序的计划。

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