Development of Microcontroller-Based Free Fall Motion Learning Materials to Increase Students’ Conceptual Understanding

Infianto Boimau, R. N. K. Mellu
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引用次数: 8

Abstract

Students’ shortcoming in understanding various concepts of physics is often due to the lack of teaching media can promote student active participation in the learning process. This study aims to develop a valid and effective microcontroller-based physics learning materials as teaching media in enhancing conceptual understanding of free fall motion lessons. This learning materials is developed using the research and development (R&D) method. Effectiveness test of learning materials using pre-experimental research design one group pretest-posttest involve students of physics education program in STKIP SoE. Data collection techniques were done through validation sheets, observations, test questions, and questionnaire sheets. Validation of learning materials through expert testing shows that learning materials are in a valid category. The results of the study shows that learning materials have a positive effect in improving students' conceptual understanding. The effectiveness of the use of learning materials in improving students' understanding of concepts has been analyzed through the results of N-gain calculations which show a moderate score increase. Moreover, the practicality test of learning materials using a Likert scale shows that learning materials are very practical to utilize as teaching media.
基于微控制器的自由落体运动学习教材的开发,以提高学生的概念理解
学生在理解各种物理概念方面的不足,往往是由于缺乏能够促进学生积极参与学习过程的教学媒介。本研究旨在开发一套有效的、基于微控制器的物理学习教材作为教学媒介,以增进对自由落体运动课程的概念理解。本学习材料采用研发(R&D)方法开发。采用实验前研究设计的学习材料有效性检验方法,对上海外国语学院物理教育专业的学生进行一组前测后测。数据收集技术通过验证表、观察、测试问题和问卷表完成。通过专家测试对学习材料进行验证,表明学习材料属于有效类别。研究结果表明,学习材料对提高学生的概念理解有积极的作用。通过n -增益计算的结果分析了学习材料在提高学生对概念理解方面的有效性,结果显示n -增益计算的分数有适度的提高。此外,使用李克特量表对学习材料进行实用性测试表明,学习材料作为教学媒介具有很强的实用性。
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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