The results of implementation methods of using cloud technologies as tools of formation high school students’ research competencies in profile physics learning

O. Merzlykin
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Abstract

The purpose of this study is experimental verification of the methods of using cloud technologies as tools of high school students’ research competencies forming in profile physics learning. The main task is organization and implementation appropriate pedagogical experiment and processing of it’s results. The object of study is high school students’ research competencies forming in profile physics learning. The subject of study is using cloud technologies as tools of high school students’ research competencies forming in profile physics learning. Main research methods are pedagogical experiment and statistical methods. Profile physics learning is the base of innovation activity both in science and in engineering. That’s why forming of high school students’ research competencies in profile physics learning will further socio-economic development of society. Realization of the purpose and tasks of profile physics learning is impossible without taking into account the principle of flexibility. This principle implies, in particular, satisfaction of students’ individual needs by individual plans and programs in distant learning which is mainly realized by mediated interactions of distant participants of learning process in specialized environment which is functioning on the basis of modern psychological, pedagogical, information and communication technologies (ICT), such as cloud ICT of learning. In our opinion pedagogically reasonable implementation of cloud technologies in profile physics learning promotes the growth of high school students’ research competencies.
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利用云技术工具培养高中生剖面物理学习研究能力的实施方法研究结果
本研究的目的是实验验证在剖面物理学习中使用云技术作为工具来形成高中生研究能力的方法。主要任务是组织实施适当的教学实验,并对实验结果进行处理。研究对象是高中生在剖面物理学习过程中科研能力的形成。本研究的主题是利用云技术作为高中生在剖面物理学习中形成研究能力的工具。主要研究方法有教学实验法和统计学方法。剖面物理学习是理工科创新活动的基础。因此,高中生在剖面物理学习中研究能力的形成将促进社会经济的发展。轮廓物理学习的目的和任务的实现离不开灵活性原则。这一原则特别意味着,通过远程学习中的个人计划和方案来满足学生的个人需求,这主要是通过远程学习过程参与者在专门环境中的中介互动来实现的,该环境基于现代心理、教学、信息和通信技术(ICT),如学习的云ICT。我们认为,在剖面物理学习中合理地实施云技术可以促进高中生研究能力的增长。
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