基于项目式学习的学科教学法物理学习模块与替代能源材料默迪卡课程整合的可行性分析

Muhtar Husnadi, Sri Budiawanti, E. Y. Ekawati
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引用次数: 0

摘要

本研究旨在分析基于项目式学习(PjBL)的特定学科教学法物理工具的可行性,该工具与有关替代能源材料的默迪卡课程(Merdeka Curriculum)相结合,适用于十年级高中学生。本研究采用 5D 模型(定义、设计、开发、传播和评估)的研究与开发(RnD)方法,仅限于 devalope 阶段。定义阶段包括需求分析和确定学生必须达到的能力。设计阶段包括以模块和学生工作表的形式设计学习模块。开发阶段包括由教材、学习、语言和有限测试方面的专家对学习模块进行开发和验证。结果显示,基于 PjBL 的物理学科特定教学法设备与默迪卡课程(Merdeka Curriculum)相结合,适用于十年级高中学生的替代能源材料,根据专家审查,在材料、学习和语言方面具有很高的可行性。此外,学生们也对开发的学习模块给予了积极评价。因此,该学习模块适合在高中物理学习过程中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility Analysis of Subject Specific Pedagogy Physics Learning Module Based on Project Based Learning Integrated with Merdeka Curriculum on Alternative Energy Material
This study aims to analyse the feasibility of Subject Specific Pedagogy Physics tools based on Project Based Learning (PjBL) integrated with Merdeka Curriculum on alternative energy material for grade X high school students. This research uses the Research and Development (RnD) method with the 5D model (Define, Design, Develop, Disseminate, and Evaluate) which is limited to the devalope stage. The Define stage includes needs analysis and identification of competencies that must be achieved by students. The Design stage includes designing learning module in the form of modules and student worksheets. The Develop stage includes the development and validation of learning modules by experts in the aspects of material, learning, language and limited testing. The results showed that the PjBL-based Physics Subject Specific Pedagogy device integrated with the Merdeka Curriculum on alternative energy material for grade X high school students had high feasibility based on expert review in terms of material, learning, and language aspects. In addition, students also gave positive responses to the developed learning module. Therefore, the learning module is suitable for use in the Physics learning process in high school.
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