Ihor Chernetckiy, Іryna A. Slipukhina, S. Mieniailov, Natalia Kurilenko
{"title":"DISTANCE EDUCATION METHODS: VIDEO ANALYSIS IN TEACHING PHYSICS","authors":"Ihor Chernetckiy, Іryna A. Slipukhina, S. Mieniailov, Natalia Kurilenko","doi":"10.33407/itlt.v92i6.5086","DOIUrl":null,"url":null,"abstract":"Formation of the skills of conducting an experiment and analyzing its results during laboratory work in natural science has always been an important didactic problem, which has significantly increased in the conditions of distance and mixed learning. The study of approaches to the effective use of software for the analysis of video recordings of observations of real physical processes and phenomena is one of the tasks of instrumental digital didactics. The affordable and regularly updated software Tracker: Video Analysis and Modeling Tool is a popular didactic tool for the analysis of physical quantities based on the processing of static and dynamic images followed by comparison with the corresponding mathematical model. The rules for creating educational videos suitable for analysis in a digital environment are summarized. On the examples of laboratory classes on many topics of physics (mechanics, hydrodynamics, molecular and atomic physics, and optics) and astronomy, the general features of creating video recordings, laboratory works, and problem tasks based on video analysis are shown. The STEM laboratory of the Junior Academy of Sciences of Ukraine has created numerous reference videos about physical experiments and the rules for their use; a collection of video tasks was also created; innovative methods of educational physical experiments were developed. The methods of video analysis were tested during distance and mixed education in the conditions of threats, also in formal and informal education formats, such as the summer science school for students and the All-Ukrainian natural science online tournament \"Open Natural Science Demonstration\". Instrumental digital didactics is a component of training courses for teachers and is regularly discussed at seminars and conferences on science education. The stemua.science source of the \"MANU\" NC is popular among Internet users.","PeriodicalId":45205,"journal":{"name":"Information Technologies and Learning Tools","volume":"27 1","pages":""},"PeriodicalIF":0.5000,"publicationDate":"2022-12-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Information Technologies and Learning Tools","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.33407/itlt.v92i6.5086","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"EDUCATION & EDUCATIONAL RESEARCH","Score":null,"Total":0}
引用次数: 0
Abstract
Formation of the skills of conducting an experiment and analyzing its results during laboratory work in natural science has always been an important didactic problem, which has significantly increased in the conditions of distance and mixed learning. The study of approaches to the effective use of software for the analysis of video recordings of observations of real physical processes and phenomena is one of the tasks of instrumental digital didactics. The affordable and regularly updated software Tracker: Video Analysis and Modeling Tool is a popular didactic tool for the analysis of physical quantities based on the processing of static and dynamic images followed by comparison with the corresponding mathematical model. The rules for creating educational videos suitable for analysis in a digital environment are summarized. On the examples of laboratory classes on many topics of physics (mechanics, hydrodynamics, molecular and atomic physics, and optics) and astronomy, the general features of creating video recordings, laboratory works, and problem tasks based on video analysis are shown. The STEM laboratory of the Junior Academy of Sciences of Ukraine has created numerous reference videos about physical experiments and the rules for their use; a collection of video tasks was also created; innovative methods of educational physical experiments were developed. The methods of video analysis were tested during distance and mixed education in the conditions of threats, also in formal and informal education formats, such as the summer science school for students and the All-Ukrainian natural science online tournament "Open Natural Science Demonstration". Instrumental digital didactics is a component of training courses for teachers and is regularly discussed at seminars and conferences on science education. The stemua.science source of the "MANU" NC is popular among Internet users.
在自然科学实验工作中,实验和分析结果的技能的形成一直是一个重要的教学问题,在远程和混合学习条件下,这一问题明显增加。研究有效使用软件分析真实物理过程和现象的视频记录的方法是工具性数字教学的任务之一。价格合理且定期更新的软件Tracker: Video Analysis and Modeling Tool是一种流行的教学工具,用于分析基于静态和动态图像处理的物理量,然后与相应的数学模型进行比较。总结了在数字环境中制作适合分析的教育视频的规则。以物理(力学、流体力学、分子与原子物理、光学)和天文学的许多主题的实验课为例,展示了基于视频分析创建视频记录、实验室工作和问题任务的一般特征。乌克兰初级科学院的STEM实验室制作了许多关于物理实验及其使用规则的参考视频;还创建了一系列视频任务;创新了教育物理实验方法。视频分析方法在威胁条件下的远程和混合教育中进行了测试,也在正式和非正式的教育形式中进行了测试,例如学生暑期科学学校和全乌克兰自然科学在线比赛“开放自然科学示范”。工具性数字教学是教师培训课程的一个组成部分,并定期在科学教育研讨会和会议上进行讨论。stemua。“MANU”NC的科学来源广受网民欢迎。