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Implementation of a Case Study in an Engineering Science Course: A Pilot Project for Increasing Experiential Learning

机译:在工程科学课程中实施案例研究:增加经验学习的试点项目

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It is valuable for instructors to provide real-world connections in their curricula so that engineering students can appreciate and practice integration and application of knowledge. This is essential in both engineering science and design. A variety of mechanisms have been used to accomplish this, including guest speakers, field trips and company-sourced design projects. Another useful mechanism to achieve this objective is the case study. For this reason, a case study was developed for a second year mechanical engineering solid mechanics course which involved the redesign of a chassis for model fuel cell cars. Five handson activities were developed around this case study to give students an opportunity for practical problem solving and to integrate concepts learned throughout the course. The goal for using the open-ended case study was to connect engineering science analysis to a realistic engineering design, as well as foster experiential learning. This implementation acted as a pilot project as part of the university's long term goals to shift the mechanical engineering program towards this type of learning. The selection process for the fuel cell car case study is discussed with a focus on using design to improve engineering science courses. The course instructor provided their comments and observations, teaching strategy and learning outcomes. There were difficulties associated with setting up and coordinating all activities since this was a first-time implementation of the case study and the first use of any case study in this course. From this experience, recommendations for improvements are discussed, specifically regarding the hands-on activities, the enhancement of student experience, and creating cross-course connections in future implementations.
机译:教师在课程中提供现实世界联系是有价值的,因此工程学生可以欣赏和实践知识的整合和应用。这对工程科学和设计至关重要。已经使用各种机制来实现这一点,包括演讲嘉宾,实地考察和公司 - 源设计项目。案例研究是实现这一目标的另一种有用机制。因此,为第二年的机械工程固体力学课程开发了一个案例研究,涉及模型燃料电池汽车的底盘重新设计。在本案例研究周围开发了五种手中活动,为学生提供解决实际问题的机会,并在整个课程中融入概念。使用开放式案例研究的目标是将工程科学分析连接到一个现实的工程设计,以及促进体验中的学习。这项实施作为一个试点项目,作为大学长期目标的一部分,将机械工程计划转移到这种类型的学习。讨论了燃料电池车厢案例研究的选择过程,专注于使用设计来改善工程科学课程。课程教练提供了意见和观察,教学战略和学习成果。与建立和协调所有活动有关的困难,因为这是案例研究的首次实施以及在本课程中首次使用任何案例研究。从这种经验来看,讨论了改进的建议,特别是关于实践活动,学生经验的提高,以及在未来的实施中创造交叉课程联系。

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