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Development and implementation of engineering modules into a 9th grade biochemistry class based on the NAE Grand Challenges

机译:在NAE挑战赛的基础上,将工程模块开发和实施为9年级生物化学课程

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This study reports the progress and impact of STEM education through innovative learning by having students answer curriculum based questions and participate in inquiry-based activities. This practice is based on the Drexel University National Science Foundation STEM K-12 program titled "Catalyzing STEM Education via the National Academy of Engineering (NAE) Grand Challenges." In this program, collaboration between an engineering graduate fellow and a 9th grade high school biochemistry teacher results in engineering modules that include brief lessons, and hands-on activities to teach students about the NAE Grand Challenges. Students are asked open-ended questions in reference to proposing solutions to Grand Challenges, while also being encouraged to sketch quickly-made schematics to further illustrate their ideas. At the end of each module, students are tasked to complete brief surveys, for which the data are used to assess the effect of the modules on student perspectives of engineering, the Grand Challenges, and the fellow. This study reports on three dimensions of this initiative: the collaborative process between the high school teacher and the fellow when generating lessons; the descriptive details of several lesson modules and relation to the Next Generation Science Standards (NGSS); and an analysis of data collected through student survey.
机译:这项研究通过让学生回答基于课程的问题并参加基于探究的活动,报告了通过创新性学习进行STEM教育的进展和影响。此做法基于德雷克塞尔大学国家科学基金会STEM K-12计划,该计划名为“通过美国国家工程院(NAE)大挑战来催化STEM教育”。在该计划中,工程研究生和9年级高中生化老师的合作产生了工程模块,其中包括简短的课程以及动手实践活动,以向学生介绍NAE挑战赛。向学生询问开放性问题,以提出应对“大挑战”的方案,同时也鼓励学生草绘快速制作的示意图以进一步说明他们的想法。在每个模块的末尾,学生都被要求完成简短的调查,并使用这些数据来评估模块对学生对工程学,大挑战和同伴的观点的影响。这项研究报告了该计划的三个方面:中学老师和同伴在上课时的协作过程;几个课程模块的描述性细节,以及与下一代科学标准(NGSS)的关系;以及对通过学生调查收集的数据的分析。

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