通过虚拟模拟和远程实验室进行科学教育的学生网络活动

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引用次数: 0

摘要

本文着眼于培养专业技能的方法,致力于将大学在线教育作为材料科学和固体物理的教学工具。在比较分析中描述的两种策略是基于在南方联邦大学进行的学生测试。对研究实验室基础设施的远程访问允许我们的方法进行基于交互式模拟的学习过程,并提供个人教育计划。这个问题是目前迫切关注的问题,并应用于材料科学,我们已经从不同的角度讨论了它的重要性,即通过现代设备的交互式软件模拟教授x射线光谱学或在远程实验室进行实时研究。在这篇文章中,我们从概念上分析了一些学生的学习过程的定量数据,这些数据形成于互动意义构建和实践学习。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the student Internet-activity via both virtual simulations and remote laboratory for scientific education
Focusing on the approach for developing professional skills, this paper is dedicated to the University on-line education as a pedagogical tool for material science and solid state physics as well. Two strategies described within the comparative analysis are based on the students tests performed at the Southern Federal University. A remote access to the research laboratory infrastructure allows our approach for the interactive simulations-based learning process with the provision of individual educational programs to be launched. This problem is presently of urgent interests, and applied in material science we have discussed its importance from different perspectives, i.e. to teach X-ray spectroscopy via the interactive software simulation of modern equipment or to perform a research at remote laboratories in a real time. Within this note we conceptually analyse some quantitative data of the learning process for a number of students that formed at both interactive sense-making and learning by doing.
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