A review of research on the teaching and learning of quantum mechanics

IF 2.6 2区 教育学 Q1 EDUCATION & EDUCATIONAL RESEARCH
Slade C. McAfee, Field M. Watts and Jon-Marc G. Rodriguez
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引用次数: 0

Abstract

In this work, we review research on the teaching and learning of quantum mechanics in chemistry courses. This systematic review builds on previous reviews in chemistry education research that focused on the other highly quantitative, calculation-heavy topics covered in upper-level physical chemistry courses (kinetics and thermodynamics). We aim to provide a resource for both practitioners and education researchers. Based on the topics of the research conducted in our sample (N = 50), we grouped the articles into six categories: (1) students’ general challenges with quantum mechanics; (2) students’ conceptions of the atom; (3) students’ conceptions of bonding; (4) students’ conceptions of the quantum nature of light; (5) students’ conceptions of commonly used quantum mechanical models; (6) curricular materials and instruction. Relevant trends stemming from this work include that much of the research leans on education research in mathematics and physics to support the claim that students have difficulties with mathematics; however, these claims require further investigation within chemistry education contexts. Moreover, a suprising amount of research on quantum mechanics involved students sampled outside of upper-level chemistry courses (i.e., secondary-level and general chemistry contexts).

量子力学的教与学研究综述
本文对化学课程中量子力学的教与学的研究进行了综述。本系统综述建立在以前的化学教育研究综述的基础上,这些综述侧重于高级物理化学课程(动力学和热力学)中涉及的其他高度定量、计算量大的主题。我们的目标是为从业者和教育研究者提供资源。根据我们样本(N = 50)的研究主题,我们将文章分为六类:(1)学生对量子力学的一般挑战;(2)学生对原子的概念;(3)学生的bond概念;(4)学生对光量子性质的认识;(5)学生对常用量子力学模型的概念;(六)课程教材和教学。从这项工作中产生的相关趋势包括,许多研究倾向于数学和物理方面的教育研究,以支持学生在数学方面有困难的说法;然而,这些说法需要在化学教育背景下进一步调查。此外,关于量子力学的大量研究涉及了高级化学课程(即中学和普通化学课程)之外的学生样本。
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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来源期刊
CiteScore
4.80
自引率
26.70%
发文量
64
审稿时长
6-12 weeks
期刊介绍: The journal for teachers, researchers and other practitioners in chemistry education.
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