基于增强现实集成(ARI)的模型物理独立学习(MPIL)对提高21世纪技能的影响(21-CS)

Q1 Social Sciences
F. C. Wibowo
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引用次数: 2

摘要

基于增强现实(AR)的学习为教育工作者提供了真实的体验和展示物理概念的新策略,同时也为学生提供了互动、自发和有趣的互动机会。以往的研究表明,AR在教育方面有很多优势,但只有少数关注于独立学习,比如解决问题的自由,物理学习中的独立学习技能。本研究以海洋物理概念为基础,基于物理自主学习(MPIL)模型开发增强现实集成(ARI)学习应用。这项申请旨在探索ARI对21世纪技能(21-CS)的影响,包括批判性思维、协作、沟通和创造力。采用准实验方法,将88名年龄在20 ~ 22岁的大学生随机分为实验组和对照组。经过3周的干预,发现将ARI技术融入物理学习可以(1)显著提高学生对海洋物理概念的创造性思维和批判性思维;(2)指导学生进一步提高沟通和协作能力,以解决ARI应用中包含的问题;(3)激发学生的学习动机,使学生对物理概念的学习充满热情。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Augmented Reality Integration (ARI) based Model Physics Independent Learning (MPIL) for facilitating 21st-century skills (21-CS)
Augmented Reality (AR) based learning provides real experiences for educators and new strategies for presenting physics concepts but also provides opportunities for students to interact interactively, spontaneously, and interestingly. Previous research has shown that AR has many advantages in education, but only a few focus on Independent Learning, such as freedom in problem solving and independent learning skills in physics learning. This study develops an Augmented Reality Integration (ARI) learning application based on the Physics Independent Learning (MPIL) model on the marine physics concept. This application is to explore the influence of ARI on 21st-Century Skills (21-CS) which consists of Critical Thinking, Collaboration, Communication, and Creativity. A Quasi-Experimental Method was used, and 88 students aged 20-22 were randomly assigned to the experimental and control groups. After an intervention for 3 weeks, it was found that integrating ARI technology into physics learning can (1) significantly increase students' Creativity Thinking and Critical Thinking on Marine physics concepts; (2) guiding students to further improve in Communication, and Collaboration in solving problems contained in the ARI application; and (3) stimulate students' learning motivation to be enthusiastic about learning physics concepts.
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来源期刊
CiteScore
3.10
自引率
0.00%
发文量
45
审稿时长
7 weeks
期刊介绍: JOTSE is an international Journal aiming at publishing interdisciplinary research within the university education framework and it is especially focused on the fields of Technology and Science. JOTSE serves as an international forum of reference for Engineering education. Teaching innovation oriented, the journal will be issued twice per year (every 6 months) and will include original works, research and projects dealing with the new learning methodologies and new learning supporting tools related to the wide range of disciplines the Engineering studies and profession involve. In addition, JOTSE will also issue special numbers on more technological themes from the different areas of general interest in the industrial world, which may be used as practical cases in classroom tuition and practice. Thereby, getting the working world reality closer to the learning at University. Among other areas of interest, our Journal will be focused on: 1. Education 2.General Science (Physics, Chemistry, Maths,…) 3.Telecommunications 4.Electricity and Electronics 5.Industrial Computing (Digital, Analogic, Robotics, Ergonomics) 6.Aerospatial (aircraft design and building, engines, materials) 7. Automotive (automotive materials, automobile emissions).
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