Development of e-Module in Physics Lessons Based on Problem Based Learning

N. Ngadimin, Pratiwi Jasmine Suwardi, F. Herliana, S. Rizal, Musdar Musdar
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引用次数: 6

Abstract

The goal of this study is to develop problem-based learning e-modules that can be used in the teaching and learning process. Research is development research, or RnD (Research and Development), using a 4-D model as a development model (define, design, develop, and dessimate). Students in class X MIPA 2 at SMAN 1 Tangse, a total of 30 participants, were the subjects of this study. These research steps begin with learners receiving a posttest, followed by learners receiving a response questionnaire and posttest questions to determine their level of understanding. After receiving electronics modules, learners are given a response questionnaire and posttest questions to determine their level of understanding. Material and media specialists' validation results fall into the decent and very decent categories, respectively, with percentages of 84.85 and 78.4. The average reaction of learners and teachers is similarly high, indicating that the electronics module is appropriate for use in education. With an average N-Gain value of 0.6, there are 13 people in the high N-Gain category, 15 people in the medium N-Gain category, and 2 people in the low N-Gain category. The N-Gain understanding of learners experiencing an increase in material understanding of momentum and impulses by employing electronics module. Electronics module can be observed in the results.
基于问题学习的物理课电子模块开发
本研究的目标是开发基于问题的学习电子模块,可用于教学和学习过程。研究是开发研究,或RnD(研究和开发),使用4-D模型作为开发模型(定义,设计,开发和绝望)。本研究的对象为上海外国语大学外国语学院MIPA 2班30名学生。这些研究步骤从学习者接受后测开始,然后学习者接受回答问卷和后测问题,以确定他们的理解水平。在接受电子模块后,学习者会收到一份回答问卷和后测问题,以确定他们的理解水平。材料和媒体专家的验证结果分别属于体面和非常体面的类别,百分比为84.85和78.4。学生和教师的平均反应同样高,表明电子模块适合在教育中使用。平均N-Gain值为0.6,高N-Gain有13人,中等N-Gain有15人,低N-Gain有2人。通过使用电子模块,提高学习者对动量和脉冲的理解。在结果中可以观察到电子模块。
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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