Development of Analogy-Based Material Physics Module to Provide Analogy Ability of Physics Teachers Candidates

IF 0.3 Q4 EDUCATION, SCIENTIFIC DISCIPLINES
F. Yanti, H. Kuswanto, H. Habibi, A. Kinasih
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引用次数: 7

Abstract

It is known that the 'electronic structure of atoms' in material physics is microscopic. This atomic structure has an abstract and complicated concept, therefore good analogy skills are needed to study comprehensively. This research develops a free analogy-based material physics module to supply analogy skills to prospective physics teacher students. Module development uses the 4D model namely Define, Design, Development and Disseminate. The feasibility aspects are required based on the presentation, content, and grammar. Data obtained from expert assessment and trials using questionnaires, interviews, and tests. Increased student analogy skills were analyzed using normalized N-gain. The results obtained are: (1) the characteristics of the module that has learning steps such as teaching with analogy models, namely: introducing the concept of targets, reviewing the concept of analogies, identifying the relevant nature of targets and analogies, mapping analogies with targets, identifying analogies that are not relevant to targets, and make conclusions, (2) module quality on atomic electronic structure material developed is categorized as feasible, (3) modules are proven to increase mastery of the concept of atomic electronic structure (N-gain = 54%) and analytical skills prospective teachers physics (N-gain = 56%). The development of physics modules based on free analogies can be applied to other learning, such as biology, chemistry, and mathematics to explain abstract material.
基于类比的材料物理模块开发培养物理教师候选人的类比能力
众所周知,在物质物理学中,“原子的电子结构”是微观的。这种原子结构具有抽象和复杂的概念,因此需要良好的类比技巧来全面研究。本研究开发了一个免费的基于类比的材料物理模块,为未来的物理教师学生提供类比技能。模块开发使用四维模型,即定义、设计、开发和传播。可行性方面需要基于表示、内容和语法。通过问卷调查、访谈和测试获得的专家评估和试验数据。使用归一化n增益分析学生类比技能的提高。得到的结果是:(1)具有类比模型教学等学习步骤的模块的特征,即:引入目标概念,回顾类比概念,识别目标和类比的相关性质,用目标映射类比,识别与目标不相关的类比,并得出结论,(2)对原子电子结构材料开发的模块质量分类为可行;(3)模块被证明提高了对原子电子结构概念的掌握(n增益= 54%)和未来教师物理的分析技能(n增益= 56%)。基于自由类比的物理模块的开发可以应用于其他学习,如生物、化学和数学,以解释抽象材料。
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
自引率
33.30%
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审稿时长
24 weeks
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