Trends and strategies for conducting effective STEM research and applications: a mobile and ubiquitous learning perspective

Gwo-jen Hwang, K. Li, Chiu-Lin Lai
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引用次数: 15

Abstract

Science, Technology, Engineering, Mathematics (STEM) has been recognised by educators as an important educational objective in the 21st century. It provides a new vision of education by encouraging school teachers to engage students in problem-solving, critical-thinking and creative-thinking tasks using the knowledge and skills learned from multiple disciplines. While the effectiveness of STEM has been recognised by educators, the challenges of applying it to school settings have also been indicated, such as the difficulties in designing cross-disciplinary tasks and measuring students' learning performances. Mobile and ubiquitous technologies have been regarded as a potential facilitator which enables learners to learn across contexts with access to learning resources in anywhere and at any time. The use of these new technologies could provide new perspectives and opportunities for developing STEM activities and studies. This paper highlights the challenges as well as the strategies for implementing STEM activities in school settings and designing STEM research. It proposes several models for guiding researchers and schoolteachers to develop STEM learning design are proposed. In addition, it provides several strategies and measuring tools for developing in-depth experimental STEM studies.
开展有效的STEM研究和应用的趋势和策略:移动和无处不在的学习视角
科学、技术、工程、数学(STEM)已被教育工作者视为21世纪重要的教育目标。它通过鼓励学校教师利用从多个学科中学到的知识和技能,让学生参与解决问题、批判性思维和创造性思维的任务,提供了一种新的教育愿景。虽然教育工作者已经认识到STEM的有效性,但也指出了将其应用于学校环境的挑战,例如在设计跨学科任务和衡量学生学习表现方面的困难。移动和无处不在的技术被认为是一种潜在的促进者,它使学习者能够在任何地方和任何时间获得学习资源,从而实现跨环境的学习。这些新技术的使用可以为开展STEM活动和研究提供新的视角和机会。本文强调了在学校环境中实施STEM活动和设计STEM研究的挑战以及策略。提出了指导研究人员和学校教师开展STEM学习设计的几种模式。此外,它还为开展深入的STEM实验研究提供了一些策略和测量工具。
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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