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Computational Chemistry in the Undergraduate Classroom - Pedagogical Considerations and Teaching Challenges

机译:计算化学的本科课堂教学注意事项和教学的挑战

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摘要

The interdisciplinary field of computational chemistry links many facets of chemistry and provides unique insights into structure, mechanisms, dynamics, and the interplay between them. Various approaches were proposed for integrating computational chemistry in the undergraduate classroom, all highlight the benefits of including it in the chemistry curriculum. This study focuses on the desirable learning outcomes, and defines a structural framework of computational chemistry literacy. Based on this approach analysis of the pedagogical approach of selected studies that implemented computational chemistry in undergraduate chemistry classrooms is presented. Three models for including computational chemistry in the undergraduate program were uncovered in this analysis: the specialized course model, the augmented course model, and the islands of computations model. These models are discussed along with teaching and learning challenges as well as routes to bypass them.
机译:计算的跨学科领域许多方面的化学和化学链接为结构,提供了一个独特的视角机制、动力学和之间的相互作用他们。积分的计算化学本科课堂,都突出了包括在化学的好处课程。学习成果,定义一个结构框架的计算化学素养。基于这种方法的分析教学方法选择的研究实现计算化学在本科化学课堂。三个模型包括计算化学的本科课程在这个分析发现:专业课程模式,增强课程模式,计算模型的岛屿。讨论了教学和学习挑战以及路线绕过他们。

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