The Future Classroom: Analyzing the Integration and Impact of Digital Technologies in Science Education

Erum Farooq, Erum Zaidi, Muhammad Meeran Ali Shah
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Abstract

The present study is a systematic and bibliometric literature review aimed at evaluating the incorporation of digital technologies in science education and their subsequent impacts. The review exclusively utilizes the Scopus database and covers literature from January 2019 to December 2023. The primary focus is on empirical studies that investigate the use of digital technologies in science education and their effects on educational outcomes such as student engagement, motivation, and academic performance. Notably, the key findings reveal a significant increase in the number of publications during this period, indicating a growing interest in the role of digital technologies in enhancing science education. The review corroborates the transformation of science education through digital technologies such as augmented reality (AR), virtual reality (VR), and blended learning environments, which have made learning more interactive, personalized, and accessible. However, challenges such as the digital divide, resistance from educators, and the need for continuous professional development persist. These challenges emphasize the importance of strategies to enhance digital literacy among educators and promote equitable access to technology. The review recommends the development of comprehensive training programs for educators, ensuring that all students have access to the necessary digital tools, and maintaining robust data protection measures. By addressing these issues, the integration of digital technologies in science education can be optimized, resulting in enhanced educational outcomes and better preparation of students for a technology-driven world.
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未来课堂:分析数字技术在科学教育中的整合与影响
本研究是一项系统性文献综述,旨在评估数字技术在科学教育中的应用及其后续影响。本综述专门使用 Scopus 数据库,涵盖 2019 年 1 月至 2023 年 12 月期间的文献。主要重点是调查数字技术在科学教育中的应用及其对教育成果(如学生参与度、学习动机和学习成绩)的影响的实证研究。值得注意的是,主要研究结果显示,在此期间发表的论文数量大幅增加,表明人们对数字技术在促进科学教育方面的作用越来越感兴趣。综述印证了通过增强现实(AR)、虚拟现实(VR)和混合学习环境等数字技术实现的科学教育变革,这些技术使学习更具互动性、个性化和可及性。然而,数字鸿沟、教育工作者的抵制以及持续专业发展的需求等挑战依然存在。这些挑战凸显了提高教育工作者数字素养和促进公平获取技术的战略的重要性。审查建议为教育工作者制定全面的培训计划,确保所有学生都能获得必要的数字工具,并保持强有力的数据保护措施。通过解决这些问题,可以优化数字技术在科学教育中的整合,从而提高教育成果,更好地培养学生适应技术驱动的世界。
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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