首页> 外文期刊>International Journal of Science and Mathematics Education >USING AN ENHANCED CONFLICT MAP IN THE CLASSROOM (PHOTOELECTRIC EFFECT) BASED ON LAKATOSIAN HEURISTIC PRINCIPLE STRATEGIES
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USING AN ENHANCED CONFLICT MAP IN THE CLASSROOM (PHOTOELECTRIC EFFECT) BASED ON LAKATOSIAN HEURISTIC PRINCIPLE STRATEGIES

机译:基于拉卡托斯式启发式原理在教室(光电效应)中使用增强的冲突映射

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摘要

Researchers have shown that most students resist changes to their core beliefs by offering auxiliary hypotheses at the first sign of the development of conceptual change. Studies have viewed student reaction to discrepant events as an important clue in helping researchers understand not only the structure of alternative concepts (Niaz, Science & Education, 7(2):107 – 127, 1998) but also the nature of scientific concepts. The main objectives of this research were the following: (a) to consider prudently the conflict map of Tsai (International Journal of Science Education, 22(3):285 – 302, 2000); (b) to initiate and develop an enhanced conflict map based on Lakatosian ethodology, which could help science teachers and students resolve conflicts that occur in the explanation of natural phenomena; (c) to examine the effectiveness of the enhanced conflict map; and (d) to discuss these implications in science education. Specifically, this study used two freshman classes from the Department of Electronics and one class of Astronomy majors from C. National University, South Korea, to investigate how scientific concepts change after selecting the modern physics field (Photoelectric effect), which is included in the Physics and Astronomy courses. Modern physics has led to the so-called Lakatosian heuristic principle or methodology, a useful framework that includes scientific philosophy and science history as study strategies. “Enhanced conflict maps” are suggested for use to consistently show all the study processes.
机译:研究人员表明,大多数学生在概念变化发展的最初迹象时会通过提供辅助假设来抵制其核心信念的变化。研究已将学生对差异事件的反应视为帮助研究人员不仅理解替代概念的结构的重要线索(Niaz,科学与教育,7(2):107 – 127,1998),而且还有助于科学概念的本质。这项研究的主要目的如下:(a)审慎考虑蔡的冲突图(国际科学教育杂志,22(3):285 – 302,2000); (b)根据拉卡托斯人的学说,启动并开发一个增强的冲突图,这可以帮助理科教师和学生解决在解释自然现象时发生的冲突; (c)检查增强冲突图的有效性; (d)讨论科学教育中的这些含义。具体来说,这项研究使用了电子系的两个新生班和韩国国立大学的一个天文学专业班,来研究科学概念在选择了现代物理学领域(光电效应)后如何变化。物理和天文学课程。现代物理学导致了所谓的拉卡托斯启发式原理或方法论,这是一个有用的框架,其中包括科学哲学和科学历史作为研究策略。建议使用“增强的冲突图”来始终显示所有学习过程。

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