A computational materials science paradigm for a Course-based Undergraduate Research Experience (CURE)

David A. Strubbe
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引用次数: 0

Abstract

Course-based Undergraduate Research Experiences (CUREs) bring the excitement of research into the classroom to improve learning and the sense of belonging in the field. They can reach more students, earlier in their studies, than typical undergraduate research. Key aspects are: students learn and use research methods, give input into the project, generate new research data, and analyze it to draw conclusions that are not known beforehand. CUREs are common in other fields but have been rare in materials science and engineering. I propose a paradigm for computational material science CUREs, enabled by web-based simulation tools from nanoHUB.org that require minimal computational skills. After preparatory exercises, students each calculate part of a set of closely related materials, following a defined protocol to contribute to a novel class dataset which they analyze, and also calculate an additional property of their choice. This approach has been used successfully in several class projects.
基于课程的本科生研究体验(CURE)的计算材料科学范例
以课程为基础的本科生研究经历(CURE)将研究的激情带入课堂,以提高学习效果和对该领域的归属感。与一般的本科生研究相比,它们可以让更多的学生在更早的学习阶段接触到研究。其主要内容包括:学生学习和使用研究方法,为项目献计献策,生成新的研究数据,并对其进行分析以得出事先不知道的结论。CURE 在其他领域很常见,但在材料科学与工程领域却很少见。我提出了一种计算材料科学 CURE 的范例,它由 nanoHUB.org 提供的基于网络的模拟工具实现,只需最低限度的计算技能。在准备练习之后,学生们每人计算一组密切相关材料的一部分,按照规定的协议为他们分析的一个高级类数据集作出贡献,同时计算他们选择的一个附加属性。这种方法已在多个班级项目中成功应用。
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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