基于建模的物理在线学习模型

Subhan Hidayatullah, Rudi Haryadi
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引用次数: 0

摘要

随着技术和互联网接入的发展,物理学科的教育也经历了重大变革。基于建模的在线学习模式就是其中一种日益流行的创新方法。本文旨在对基于建模的物理在线学习模式进行全面的文献综述。这种方法强调使用建模作为促进学生深入理解物理概念的主要工具之一。为了了解和评估其影响,本研究采用了一种结构化的方法,结合对这种在线学习模式的深入研究和透彻分析。该学习模式的基础理论涉及物理教学中信息技术与建模方法的整合。通过对该模式在在线物理教育中的实施情况进行批判性研究,获得了支持性数据和证据。此外,本研究还利用学生对物理概念的理解、学生满意度问卷调查和参与式观察等数据来衡量其有效性。研究结果表明,基于建模的在线学习模式能有效提高学生对物理概念的理解。深入分析还显示,这种方法为学生提供了更具互动性和参与性的学习体验,学生的高满意度也反映了这一点。这项研究证实了基于建模的物理在线学习模式在应对现代教育挑战方面的巨大潜力。这些发现的实践和理论意义为在线物理教育的进一步发展铺平了道路,也为该领域的进一步研究提供了基础。通过将建模融入在线物理学习,我们可以在数字时代为学生创造更加动态和有效的学习体验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model pembelajaran online fisika berbasis pemodelan
Education in the discipline of physics has experienced significant changes along with developments in technology and internet access. One of these innovative approaches that is increasingly popular is modeling-based online learning models. This article aims to conduct a comprehensive literature review on modeling-based physics learning models implemented online. This approach emphasizes the use of modeling as one of the main tools to facilitate students' deeper understanding of physics concepts. In order to understand and evaluate its impact, this research adopts a structured approach by combining in-depth research and thorough analysis of this online learning model. The theory underlying this learning model involves the integration of information technology and modeling approaches in physics teaching. Supporting data and evidence were obtained through critical research on the implementation of this model in the context of online physics education. In addition, this research measures its effectiveness using data on students' understanding of physics concepts, student satisfaction questionnaires, and participatory observation. The results of this research indicate that the modeling-based online learning model is effective in increasing students' understanding of physics concepts. In-depth analysis also revealed that this approach provides a more interactive and engaging learning experience for students, which is reflected in high levels of satisfaction. This research confirms the great potential of modeling-based physics online learning models in addressing modern educational challenges. The practical and theoretical implications of these findings pave the way for further developments in online physics education and provide a basis for further research in this area. By integrating modeling in online physics learning, we can create a more dynamic and effective learning experience for students in the digital era.
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