首页> 外文期刊>Bulletin of the American Physical Society >APS -Joint Fall 2017 Meeting of the Texas Section of the APS, Texas Section of the AAPT, and Zone 13 of the Society of Physics Students- Event - Vertical Course Alignment between Introductory Physics and Sophomore Engineering Courses
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APS -Joint Fall 2017 Meeting of the Texas Section of the APS, Texas Section of the AAPT, and Zone 13 of the Society of Physics Students- Event - Vertical Course Alignment between Introductory Physics and Sophomore Engineering Courses

机译:APS-APS得克萨斯分校,AAPT得克萨斯分校和物理学生学会第13区联合2017年秋季会议-事件-入门物理与二年级工程课程之间的垂直课程对齐

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Introductory physics forms a significant part of the foundation of knowledge for engineering disciplines, and as such it is vital that courses be well aligned within the progression of undergraduate curriculum. This work begins from a perceived misalignment of course content in introductory physics relative to sophomore level engineering courses. Inventories of concepts and mathematical skills used in problem solving are done by the creation of a Q-matrix for three versions of introductory physics and two follow-on engineering courses at Texas A{&}M University (TAMU). Alignment of course content is investigated using direct comparison and principal component analysis. Using grades received in introductory physics, paired with q-matrices, this work endeavors to create a model for student scores in subsequent engineering courses using item response theory, incorporating guess and slip parameters, as an additional evaluative measure.
机译:入门物理学是工程学科知识基础的重要组成部分,因此至关重要的是,课程必须与本科课程的发展保持一致。这项工作从相对于二年级工程课程的入门物理学中课程内容的错位开始。解决问题所用的概念和数学技能的清单是通过为德州A {&} M大学(TAMU)的三个入门物理学版本和两个后续工程课程创建一个Q矩阵来完成的。使用直接比较和主成分分析来研究课程内容的对齐方式。这项工作使用入门级物理学获得的成绩并与q矩阵配对,力图使用项目响应理论(结合猜测和滑移参数)作为额外的评估手段,为随后的工程课程中的学生分数创建模型。

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