Computer modeling of physical phenomena

B. Ergashbayev, N. Shektibaev, B. Kurbanbekov
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Abstract

This article presents aspects of the use of Information Technology in physics lessons, in particular, the work of students with computer models. This work helps to increase students ' interest in studying the subject and the level of thinking. Topic relevance the use of computer models of various physical processes and phenomena contributes to the effectiveness of teaching physics to students, allowing them to understand the mechanisms of physical phenomena, often invisible to the human eye, and in some cases impractical and impossible in life. In order to identify the advantages of computer modeling, studies were conducted on two groups of 9th grade students (Control and experimental), their general understanding in the use of computer modeling was studied, and the role of computer modeling in understanding the concepts of speed and acceleration in body movement was determined. The two groups were applied the same traditional type of training on this topic, and the peculiarity was that the experimental group used computer simulations as a complement. Based on the results presented in the studies, it is shown that students working with the help of computer modeling scored significantly higher scores in their tasks. After analyzing the results, it is confirmed that computer modeling can be used as an additional teaching tool that helps to increase the level of thinking of students, as well as to develop systemic ideas about phenomena in physics. In the course of research using modeling, on average, 6 out of 10 students achieved good results. The importance of teaching using computer models, organizing the student's interaction with the model to participate in active research activities is revealed. It was also found that computer models can be used both in distance learning and in traditional learning, including with network support. The result of the research is that the training of physics teachers in computer modeling can be used internationally in the training of future physics teachers, enhancing their intellectual abilities, contributing to the performance of mental operations and the development of intelligence in general.
物理现象的计算机模拟
本文介绍了信息技术在物理课上的应用,特别是学生使用计算机模型的工作。这项工作有助于提高学生学习学科的兴趣和思维水平。主题相关性使用各种物理过程和现象的计算机模型有助于有效地向学生教授物理,使他们能够理解物理现象的机制,这些现象通常是肉眼看不见的,在某些情况下是不切实际的,在生活中是不可能的。为了确定计算机建模的优势,本研究以两组九年级学生(Control组和experimental组)为研究对象,研究他们对计算机建模使用的总体理解,并确定计算机建模在理解身体运动中速度和加速度概念中的作用。两组在这个主题上采用了相同的传统训练类型,其特点是实验组使用计算机模拟作为补充。根据研究结果,使用计算机建模的学生在任务中的得分明显更高。通过对结果的分析,证实了计算机建模可以作为一种额外的教学工具,有助于提高学生的思维水平,并对物理现象形成系统的看法。在使用建模进行研究的过程中,平均每10名学生中有6名取得了良好的成绩。揭示了利用计算机模型进行教学,组织学生与模型的互动,积极参与研究活动的重要性。研究还发现,计算机模型既可以用于远程学习,也可以用于传统学习,包括网络支持。研究结果表明,对物理教师的计算机建模培训可以在国际上用于未来物理教师的培训,提高他们的智力能力,有助于心理操作的表现和整体智力的发展。
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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