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STEAM WORKS: Student coders experiment more and experimenters gain higher grades

机译:蒸汽工作:学生编码员进行更多的实验,实验员获得更高的分数

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摘要

For the last decade, there has been growing interest in the STEAM approach (essentially combining methods and practices in arts, humanities and social sciences into STEM teaching and research) to develop better research and education, and enable us to produce students who can work most effectively in the current and developing market-place. However, despite this interest, there seems to be little quantitative evidence of the true power of STEAM learning, especially describing how it compares and performs with respect to more established approaches. To address this, we present a comparative, quantitative study of two distinct approaches to teaching programming, one based on STEAM (with an open-ended inquiry-based approach), the other based on a more traditional, non-STEAM approach (where constrained problems are set and solved). Our key results evidence how students exhibit different styles of programming in different types of lessons and, crucially, that students who tend to exhibit more of the style of programming observed in our STEAM lessons also tend to achieve higher grades. We present our claims through a range of visualisations and statistical validations which clearly show the significance of the results, despite the small scale of the study. We believe that this work provides clear evidence for the advantages of STEAM over non-STEAM, and provides a strong theoretical and technological framework for future, larger studies.
机译:在过去的十年中,人们对STEAM方法(将艺术,人文和社会科学的方法和实践实质上结合到STEM教学和研究中)的兴趣日益增长,以发展更好的研究和教育,并使我们能够培养出最能干的学生。有效地在当前和发展中的市场中。但是,尽管有这种兴趣,但似乎没有定量的证据可以证明STEAM学习的真正威力,尤其是描述它如何与更成熟的方法进行比较和表现。为了解决这个问题,我们对两种不同的编程教学方法进行了比较,定量的研究,一种基于STEAM(基于开放式查询的方法),另一种基于更传统的非STEAM方法(受约束的)。问题已确定并解决)。我们的主要结果证明了学生如何在不同类型的课程中表现出不同的编程风格,并且至关重要的是,倾向于表现出更多在我们STEAM课程中观察到的编程风格的学生也倾向于获得更高的成绩。尽管研究规模很小,但我们通过一系列可视化和统计验证提出了自己的主张,这些陈述清楚地表明了结果的重要性。我们相信,这项工作为STEAM优于非STEAM的优势提供了明确的证据,并为将来的大型研究提供了强大的理论和技术框架。

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