现代stem技术对基层stem教育转型的重要性:不丹的一项实验研究

Sangay Chedup, Bevek Subba, Karma Utha, Tandin Zangmo, Srijana Gajmer, Deo Raj Diswa
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引用次数: 0

摘要

第四次工业革命要求改革与21世纪知识和技能相关的教育。这项工作研究了通过早期接触和使用现代STEM平台加速创造性学习和创新的潜力。早期获取有望增强对科学技术工程和数学平台中知识和技能的重要性的理解。该研究的一部分是了解早期入学对加强基层STEM教育的影响。学生和STEM教师通过动手实验学习参与学习并体验STEM的潜力。通过自动化、物联网和人工智能的基础应用实现,确保学习者获得STEM技术的第一手体验。研究的第一部分表明,尽管年轻人意识到STEM的重要性并成为日常客户,但缺乏平台和学习工具影响了他们对STEM的好奇心的发展。这也对青年人表达创意和创新思想的能力产生了不利影响。另一方面,透过有组织的工作坊,向青少年介绍STEM平台STEMSEL和runc,让他们了解自动化、物联网和人工智能的应用。青年参与者可以用最少的编程代码行实验性地设计、开发和部署(3D)基本应用程序。学生参与者在完成研讨会时对STEM的重要性的理解水平有所提高。此外,利用他们的创造力和3D实验的能力使他们能够更好地理解STEM技术。参与者展示了他们对实践学习工具的重要性的认识,这些工具可以最大限度地提高、加速和激励他们在浸入式项目(即STEM研讨会)后学习STEM。通过这项研究,可以在该地区实现STEM教育的推广和重要性。STEM教育通过以技术为基础的学习,向推动国家创新劳动力的年轻人灌输动手体验式学习。
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IMPORTANCE OF MODERN STEM TECHNOLOGIES FOR TRANSFORMATION OF STEM EDUCATION IN THE GRASSROOTS LEVEL: AN EXPERIMENTAL STUDY IN BHUTAN
The fourth industrial revolution has necessitated the revamping of education relevant for the twenty-first-century knowledge and skills. This work studies the potential of accelerating creative learning and innovation with early exposure and access to modern STEM platforms. Early access is expected to enhance the understanding of the significance of knowledge and skills in science technology engineering, and mathematics platforms. The derivation of understanding of the impact of early access in enhancing STEM education at the grassroots was part of the study. Students and STEM teachers were engaged in learning and experiencing the potential of STEM through hands-on experimental learning. The basic application implementation on automation, the internet of things, and artificial intelligence were used to ensure the learners gets the first-hand experience of STEM technologies. The first part of study indicated the lack of platforms and learning tools has impacted the development of youths’ curiosity about STEM despite being aware of its significance and being a daily customer. It has also adversely affected the ability of youths in expressing their creativity and innovative ideas. On the other hand, youths through organized workshops were introduced to STEM platforms named STEMSEL and runlinc to impart an understanding of automation, IoT, and AI applications. The youth participants could experimentally design, develop and deploy (3D) the basic applications with the minimum number of lines of programming code. The student participants exhibited an increased level of understanding of the significance of STEM in the completion of workshops. Furthermore, the ability to use their creativity and converge into 3D experimentally enabled them to draw a better understanding of STEM technologies. The participants demonstrated their realization of the significance of hands-on learning tools to maximize, accelerate, and motivate themselves into learning STEM after the immersion program i.e. STEM workshops. With this study, promotion and importance of STEM education can be achieved within the region. STEM Education inculcates the hands-on experiential learning of the youths driving towards innovative workforce of the country through technology-based learning.
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