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Organizing the curriculum: introducing engineering principles through biomedically related experiments: Module Development

机译:组织课程:通过生物学相关实验引入工程原则:模块开发

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The relatively new discipline of biomedical engineering emerged from informal collaborations between engineers, physicians and life scientists, and is the fastest growing engineering discipline at most universities. Chemical, mechanical, and electrical engineers play an important and expanding role in this burgeoning field because the fundamental core principles of each discipline are critical to biomedical mainstays such as the design of artificial organs. This project introduces hands-on, biomedically-related experiments and course materials into the engineering curriculum, with a focus on artificial organs. Several modules are being developed and integrated throughout Rowan's engineering curriculum, into the multidisciplinary freshman engineering course, core engineering courses, and senior electives. The modules will be highly transferrable to other traditional engineering programs such as chemical, mechanical and electrical as well as biomedical engineering programs. Our evaluation plan will examine specific learning outcomes in core engineering areas as well as effect on retention, student attitudes, and career choices.
机译:生物医学工程的相对新的学科从工程师,医师和生活科学家之间的非正式合作中出现,并且是大多数大学的增长最快的工程学科。化学,机械和电气工程师在这一兴奋领域发挥着重要且扩大的作用,因为每个学科的基本核心原则对生物医学的主体是关键的,例如人工器官的设计。该项目将实践,生物学相关的实验和课程材料介绍到工程课程中,重点是人工器官。在罗文工程课程中正在开发并集成了几个模块,进入了多学科新生工程课程,核心工程课程和高级选修课。这些模块将高度可转移到其他传统工程计划,如化学,机械和电气以及生物医学工程方案。我们的评估计划将研究核心工程领域的具体学习结果以及对保留,学生态度和职业选择的影响。

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