基于项目学习结合局部智慧的刚体旋转动力学与平衡开发物理模块

Fitratul Hayana Habibah, H. Hidayati, R. Afrizon, A. Putra, P. Sundari
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引用次数: 0

摘要

教具是学习的一个组成部分。教具是教师和学生共同的资源。然而,在现实中,继续采用直接学习范式的教师获得的教育资源有限,学生的学习效果也很差,例如,在教授旋转动力学和刚体平衡时。这种研究被称为设计研究。研究方法为自评量表、专家验证表。产品验证数据分析方法采用艾肯的V指数。研究结果表明,基于刚体项目的旋转动力学和平衡学习模块在非常好的平均模块验证等级为0.83,令人震惊。因此,基于项目的刚体材料学习与物理局部知识模块相结合的旋转动力学和平衡可以推断为适合教师和学生在整个学习过程中使用
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Development Physics Module Based on Project Based Learning Integrated with Local Wisdom on Rotational Dynamics and Equilibrium of a Rigid Body
Teaching aids are a component of learning. Teaching aids are resources for both teachers and students. However, in reality, teachers who continue to employ the direct learning paradigm have limited access to educational resources and achieve poor student learning outcomes, for example, while teaching rotational dynamics and rigid body equilibrium. This study intends to assess the viability of a project-based physics module for senior high school class XI's rotational dynamics and equilibrium of a rigid body. This kind of research is known as design research. The research techniques used were self-evaluation assessment sheets, expert validation sheets. The product validation data analysis approach employs Aiken's V index. Research findings indicate that the rigid body project-based learning module on rotational dynamics and equilibrium has an astounding average module validation grade of 0.83 in the very good. The rotational dynamics and equilibrium of a rigid body material project-based learning combined with local knowledge module for physics may therefore be inferred to be appropriate for usage by instructors and students throughout the learning process
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Application of Physics E-Learning Material Integrated Social-Scientific Issue Context to Improve Students’ Scientific Literacy Skills Effect Size Analysis of the Use of Guided Inquiry-Based Teaching Materials on Students’ Competence Development Physics Module Based on Project Based Learning Integrated with Local Wisdom on Rotational Dynamics and Equilibrium of a Rigid Body Meta-Analysis of the Effect of Character Education Integration in Physics Learning Material on Student’s Learning Outcomes Effect Size Analysis of the Problem based Learning Model on Students’ HOTS Ability and Conceptual Understanding
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