Can I Eat Melted-Frozen-Melted Bread?: Use of Practical Assignments to Harmonize Mathematics and STEM Courses and as a Measure for Future Technology Studies

Tonje Jin, Kirsi Helkala
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Abstract

In the domain of engineering education, the crucial role of mathematics, especially Calculus, cannot be overstated, as it lays the foundational groundwork for numerous sciences, technology, engineering and mathematics (STEM) courses. The integration of mathematics into STEM disciplines is achieved through the practical application of mathematical concepts in real-world scenarios or in conjunction with other STEM subjects, thereby enhancing the coherence of engineering studies and acting as a significant motivational catalyst for students. This paper presents an analytical narrative of a practical mathematics assignment, woven into the Calculus curriculum and other STEM courses from 2013 to 2018. It delves into the potential impacts of these practical assignments on student performance and attitudes by evaluating data sourced from final exam scores and anonymous course surveys, both before and after the intervention period. Through the analysis of an extensive dataset comprising 1526 final exam scores, this study endeavors to make a substantive contribution to Future Technology Studies (FTS), focusing on the strategic harmonization of mathematics and STEM courses to enrich the educational experience and foster a more cohesive and applied learning framework in these disciplines.
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我能吃融化-冷冻-融化的面包吗?利用实践作业协调数学和 STEM 课程,并作为未来技术研究的衡量标准
在工程学教育领域,数学,尤其是微积分的关键作用无论怎样强调都不为过,因为它 为众多科学、技术、工程学和数学(STEM)课程奠定了基础。数学与 STEM 学科的整合是通过数学概念在现实世界场景中的实际应用或与其他 STEM 学科的结合来实现的,从而增强了工程学学习的连贯性,并对学生起到了重要的激励作用。本文分析叙述了 2013 年至 2018 年期间在微积分课程和其他 STEM 课程中融入的实用数学作业。通过评估干预期前后的期末考试成绩和匿名课程调查数据,本文深入探讨了这些实践性作业对学生成绩和态度的潜在影响。通过对包括 1526 份期末考试成绩在内的广泛数据集进行分析,本研究致力于为未来技术研究(FTS)做出实质性贡献,重点关注数学和 STEM 课程的战略性协调,以丰富教育体验,并在这些学科中培养更具凝聚力的应用学习框架。
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