Augmented reality while studying radiochemistry for the upcoming chemistry teachers

L. Midak, I. Kravets, O. V. Kuzyshyn, T. V. Kostiuk, Kh V Buzhdyhan, V. M. Lutsyshyn, Ivanna O. Hladkoskok, A. Kiv, M. Shyshkina
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引用次数: 5

Abstract

The objective of the research is developing a mobile application (on Android) designed to visualize the basic definitions of the discipline “Radiochemistry and radioecology” in 3D. Studying the education material of this discipline (phenomena of radionuclide, radioisotope, the nucleus, the fundamental particle etc and their specifics) requires a more sophisticated explanation from the teacher and dynamic dimensional image from the student. Decent detailed visualization of the study material makes this process easier. So applying the augmented reality is rational for the purpose of visualizing the study material, applying it allows demonstrate 3D-models of the nucleus, the fundamental particles, the nature of radioactive decay, nuclear fission, the specifics of managing the nuclear weapon and the NPS. Involving this instrument of the up-to-date information and communication technologies while studying the new material gives the opportunity to develop and boost the spatial imagination of the students, “to see” the invisible and to understand the received material in a better way, which improves its better memorizing. As far as the augmented reality is one of the most recent new-age education trends, all the teachers are required to have the ability to use it. In this reason the upcoming teachers, the students of the “General Education (Chemistry)” specialty, must be trained with this technology. Within the study process the students have the opportunity to review the positive moments of applying AR from a student’s stand of point and to understand, how to apply similar education tools in the future pedagogic work.
增强现实同时学习放射化学为即将到来的化学教师
这项研究的目标是开发一个移动应用程序(在Android上),旨在以3D形式可视化“放射化学和放射生态学”学科的基本定义。学习这门学科的教学材料(放射性核素、放射性同位素、原子核、基本粒子等现象及其特点)需要教师更复杂的解释和学生的动态维度图像。适当的详细可视化学习材料使这个过程更容易。因此,应用增强现实技术是合理的,目的是使研究材料可视化,应用它可以展示原子核的3d模型,基本粒子,放射性衰变的本质,核裂变,管理核武器和NPS的细节。在学习新材料的同时,使用最新的信息和通信技术,使学生有机会发展和促进空间想象力,“看到”看不见的东西,更好地理解所接收的材料,从而提高记忆能力。至于增强现实是最新的新时代教育趋势之一,所有的教师都被要求有能力使用它。因此,未来的教师,即“通识教育(化学)”专业的学生,必须接受这种技术的培训。在学习过程中,学生有机会从学生的角度回顾应用AR的积极时刻,并了解如何在未来的教学工作中应用类似的教育工具。
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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