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Rotational Blended Learning in Computer System Engineering Courses

机译:计算机系统工程课程中的旋转混合学习

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Contribution: An original application of individual rotation to blended learning, which mixes e-learning, discussion groups (seminars), practical laboratory work, and self-motivated tasks called "mini-projects." Background: In examining the changing practices toward students' transferable skills in higher education, current teaching needs to devote much more attention to using multi-modular teaching methods to foster students' key transferable skills, such as logical, analytical, and creative thinking. Intended Outcomes: Rotational blended learning is intended to maximize students' engagement and improve educational outcomes during the learning process. Application Design: A rotated form of existing teaching methods-e-learning, seminars, and group projects-was proposed. A quasi-experimental design, involving classroom observation, student surveys, and overall results, was used with two cohorts of computer system engineering students, one a controlled cohort taught using traditional techniques and the other an experimental cohort taught using a novel rotational blended system. Findings: The influence of blended learning on the subsequent development of critical transferable skills was demonstrated. Results suggest that rotational blended learning is an ideal way to address these challenges, since it allows computer engineering students to reassess and enhance the core skills and competencies they need to acquire in their learning experiences.
机译:贡献:个人轮换在混合学习中的原始应用,它融合了电子学习,讨论小组(研讨会),实际实验室工作和自我激励的任务,称为“小型项目”。背景:在研究高等教育中学生可转移技能的不断变化的实践时,当前的教学需要更加关注使用多模块教学方法来培养学生的关键可转移技能,例如逻辑,分析和创造性思维。预期成果:旋转混合学习旨在最大程度地提高学生的参与度,并在学习过程中改善教育成果。应用设计:提出了一种轮换形式的现有教学方法-电子学习,研讨会和小组项目。准实验设计涉及课堂观察,学生调查和总体结果,与两个计算机系统工程系学生一起使用,一个使用传统技术教授的受控组,另一个使用新型旋转混合系统教授的实验组。研究结果:证明了混合学习对关键可转移技能的后续发展的影响。结果表明,旋转混合学习是应对这些挑战的理想方法,因为它允许计算机工程专业的学生重新评估并增强他们在学习中需要获得的核心技能和能力。

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