Developing Higher Order Thinking Laboratory (Hot-Lab) to Promote General Scientific Reasoning of Student-Teachers in Physics Practices

F. Alatas, A. Suryadi, Firman Harris Saputra
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引用次数: 0

Abstract

This study aims to develop physics practicum guidelines that can improve students' scientific reasoning. The development of practicum guidelines in this study was based on the principles of the Higher Order Thinking Laboratory (HOT-Lab). Using the ADDIE design, which consists of five stages: analyze, design, develop, implement, and evaluate, general physics practicum guidelines are developed in three parts, namely pre-practicum, lab, and post-practicum. The participants involved consisted of two groups: five experts and 88 students taking general physics courses. The pre-practicum stage is the part that distinguishes this practicum guideline from conventional practicum guidelines, where students are presented with "real-world problems" and opportunities to make hypotheses. The results showed that the practicum guideline products developed were deemed feasible and effective for developing students' scientific reasoning. This study shows that students' scientific reasoning for using practicum guidelines based on HOT-Lab principles is significantly higher than those who use conventional practicum guidelines. In conclusion, the guideline developed was valid, feasible, and effective in improving students’ scientific reasoning. This study recommends considering the features of the HOT-Lab practicum activities to be used for similar practicum activities in other places or relevant courses.
发展高阶思维实验室促进师生在物理实践中的一般科学推理能力
本研究旨在制定能提高学生科学推理能力的物理实习指南。本研究的实习指南是基于高阶思维实验室(HOT-Lab)的原则制定的。采用分析、设计、开发、实施和评估五个阶段的ADDIE设计,将普通物理实习指南分为实习前、实验和实习后三个部分。参与者包括两组:5名专家和88名普通物理课程的学生。结果表明,开发的实习指南产品对培养学生的科学推理能力是可行和有效的。本研究表明,学生使用基于HOT-Lab原则的实习指南的科学推理能力显著高于使用常规实习指南的学生。综上所述,本指南对提高学生的科学推理能力是有效的、可行的和有效的。本研究建议考虑到HOT-Lab实习活动的特点,用于其他地方或相关课程的类似实习活动。
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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