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Analyzing the structure of basic quantum knowledge for instruction

机译:分析教学基本量子知识的结构

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In order to support students in the development of expertise in quantum mechanics, we asked which concepts and structures can act as organizing principles of non-relativistic theory. The research question has been addressed in a multi-step process based on the analysis of categorization studies, on a content analysis of a sample of undergraduate textbooks, and on the results of existing research on learning difficulties. The answer consists of seven concept maps, intended as models of the organizing principles of quantum knowledge needed to account for the results of measurement and time evolution. By means of these instruments, it is possible to visualize and explore the different facets of the interplay between the vector structure of the quantum states and the operator structure of the observables, and to highlight the educational significance of the relations between observables. The maps can be used by instructors as a support for helping students build a well-organized knowledge structure and by researchers as a basis for the design of investigations into student understanding. While this framework may be adapted to different approaches and interpretive stances, it provides indications in favor of a spin-first approach over a waves-first one.
机译:为了支持学生在Quantum Mechalics中的专业知识的发展中,我们询问哪些概念和结构可以作为非相对论理论的组织原则。基于对分类研究的分析,关于本科教科书样本的内容分析,以及关于学习困难研究的结果,在多步过程中解决了研究问题。答案由七个概念图组成,旨在作为量子知识的组织原则的模型,以考虑测量和时间进化结果所需的量子。通过这些仪器,可以可视化和探索量子状态的矢量结构与可观察者的操作员结构之间的相互作用的不同方面,并突出可观察到之间关系的教育意义。教师可以使用地图作为帮助学生通过研究人员建立良好的知识结构和研究人员作为学生理解设计的基础。虽然该框架可以适用于不同的方法和解释性阶段,但是它提供了支持在波第一个上的旋转第一方法的指示。

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