开发自由落体运动教学辅助与接近传感器

E. Istiqomah, Umi Pratiwi, A. Ashari
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引用次数: 0

摘要

使用手工教具会导致结果不准确。本研究旨在实现一种有效的基于接近感测器的物理学习自由落体教学辅助装置。本研究在Muhammadiyah Purworejo大学物理教育学院实验室进行,研究对象为5名物理教育专业的学生。本研究是一项使用ADDIE开发模型的开发研究,分为分析、设计、开发、实现和评估四个阶段。本研究的数据收集技术采用验证问卷和学生回答。结果表明,所研制的教具在h= 0.90 m时的重力加速度误差为9.59±0.42 m/s2, h= 1.00 m时的重力加速度误差为9.61±0.43 m/s2, h= 1.10 m时的重力加速度误差为9.74±0.40 m/s2,而媒体专家和材料专家的验证结果分别为93%和98%。同时,学生对教辅的反馈结果占93.33%。基于接近传感器的自由落体运动教具对物理学习是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development Free Fall Motion Teaching Aid With Proximity Sensor
The use of manual teaching aid causes inaccurate results. This study aims to realize a valid and effective free fall motion teaching aid based on proximity sensors for physics learning. This research was conducted at the Laboratory of Physics Education Faculty, University of Muhammadiyah Purworejo with the research subjects of five physics education students. This research is a development research using the ADDIE development model with the Analysis, Design, Development, implementation, and Evaluation stages. Data collection techniques in this study were using validation questionnaires and student responses. The results showed that the developed teaching aid resulted in an error in the acceleration of gravity of 9.59 ± 0.42 m/s2 when the value of h= 0.90 m, 9.61 ± 0.43 m/s2 when the value of h= 1.00 m, and 9.74 ± 0.40 m/s2 when the value of h= 1.10 m, while the results of the validation carried out by media experts obtained a percentage of 93% and material experts 98%. Meanwhile, the results of student responses to teaching aid obtained a percentage of 93.33%. Proximity sensor based free fall motion teaching aid are valid and effective for physics learning.
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