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Enhancing High-School Students' Computational Thinking with Educational Robotics Learning

机译:通过教育机器人学习增强高中学生的计算思维

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In recent years, engineering education has become one of the challenging issues in Thailand education. By teaching and learning subjects independently, students are limited to subject-oriented problems, which are not in reality. To address these flaws, integrating knowledge across disciplines becomes significantly necessary. In the past years, STEM has been accepted as one of the effective strategies to bridge the difference in nature of each field to construct more practical projects and innovations. Moreover, the educational robot can be employed as a learning tool in that strategy since it not only provides challenging learning missions but also promotes computational thinking for the students. Therefore, this research study proposed STEM learning activities on three-day workshop to lay out the foundation to the high-school science-and-technology students who are becoming the engineering students. The workshop comprises of eight phases to facilitate their learning inquiry process with hands-on experience; moreover, the activities were designed in consideration of promoting computational thinking with challenging learning missions. The findings of this study showed that the proposed workshop activities are beneficial for the students who outperformed on robotics with higher computational thinking; meanwhile, they could provide more relevant responses regarding the proposed learning activities.
机译:近年来,工程教育已成为泰国教育中具有挑战性的问题之一。通过独立地教与学科目,学生被限制在面向主题的问题上,而这并非现实。为了解决这些缺陷,跨学科整合知识变得非常必要。在过去的几年中,STEM被公认为是弥合每个领域性质差异以构建更多实际项目和创新的有效策略之一。此外,教育机器人可以用作该策略中的学习工具,因为它不仅提供了具有挑战性的学习任务,而且还促进了学生的计算思维。因此,本研究在三天的研讨会中提出了STEM学习活动,为正在成为工程系学生的高中科技学生奠定了基础。讲习班分为八个阶段,以动手实践促进他们的学习询问过程;此外,设计活动时要考虑到通过具有挑战性的学习任务来促进计算思维。这项研究的结果表明,拟议的研讨会活动对那些​​具有较高计算思维的机器人技术的学生有利。同时,他们可以针对拟议的学习活动提供更多相关的回应。

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