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Assessment of high-school engineering education outreach program employing project-based learning in astronomy and bio-optics within a college setting

机译:评估大学环境中采用基于项目的天文学和生物光学学习的高中工程教育推广计划

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A college outreach engineering education program designed for high school students was implemented in a community college using the three principles of K-12 engineering education, namely, product design, science knowledge, and mindset development. The means of transforming a science question into a design driven one was illustrated using examples and projects from the fields of astronomy and bio-optics. The relevant scientific principles were presented by introducing various iterated designs in an interactive learning environment. A high school level research component using astronomy and bio-optics-related public data was also implemented to enrich the students' exposure to numerical processing techniques accessible in Microsoft Excel. Examples including solar events driven by magnetic field topology, cosmological images generated by IllustrisTNG Project, muon flux data. Killer T-cell motion, and wound assay cell migration are used in the teaching of iterated designs. A Path Diagram assessment model based on a LISREL computation scheme with learning intent and engineering mindset as latent variables was used to gauge the effectiveness of an implementation, the results of which would be used in the subsequent semester's implementation of the research component. The materials developed in a College Now course, where high school students take a research course at a community college, would be readily adaptable to other four-year college programs. The possible future incorporation of an introductory engineering course for high school student education, using the MIT low-cost $100 muon detector and Fermi Lab QuarkNet muon scintillation detector, is discussed.
机译:社区大学使用K-12工程教育的三个原则,即产品设计,科学知识和思维定势,实施了针对高中生的大学外展工程教育计划。使用来自天文学和生物光学领域的实例和项目,说明了将科学问题转化为设计驱动问题的方法。通过在交互式学习环境中介绍各种迭代设计来介绍相关的科学原理。还实施了一个高中水平的研究部分,该部分使用了与天文学和生物光学相关的公共数据,以丰富学生对Microsoft Excel中可访问的数值处理技术的了解。示例包括磁场拓扑驱动的太阳事件,IllustrisTNG Project生成的宇宙学图像,μ子通量数据。迭代设计的教学中使用了杀伤性T细胞运动和伤口检测细胞迁移。基于LISREL计算方案的路径图评估模型以学习意图和工程思维为潜变量,用于评估实施的有效性,其结果将在下学期实施研究组件时使用。在“现在就读”课程中开发的材料很容易适应其他四年制大学课程,该课程中高中学生可以在社区大学学习研究课程。讨论了使用MIT低成本100美元的μon探测器和Fermi Lab QuarkNetμon闪烁探测器,为高中学生提供入门工程课程的可能性。

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