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A Course Improvement Strategy That Works: The Improvement of Student Satisfaction Scores in a Lecture and Laboratory Course Using a Structured Course Modification Methodology

机译:有效的课程改进策略:使用结构化课程修改方法改善讲座和实验室课程中的学生满意度评分

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Courses that have been stable for a long time may, after analysis, be found to struggle to meet current assessment and certification requirements. Over time these courses become not only misaligned, but also need to be refreshed with innovations in industry and teaching techniques. As the course struggles, students may become complacent and disenfranchised as well. This paper examines the potential for this effect in an engineering technology program. This specific course is focused on the accessory systems for aircraft engines such as: carburetors, fuel injection systems, magnetos, and propellers. The course consists of lecture and laboratory sections where the lab section of the course uses actual aircraft components as lab equipment for student use. For clarification, these are functional aircraft components manufactured by aircraft equipment suppliers. However, they are non-airworthy and are not for future installation on airworthy aircraft. This study evaluates the perceptions of students' experiences in the course using course evaluation surveys before and after three primary changes made to the course: 1) improving the underlying structure and alignment in the course sections through the focus on Federal curriculum requirements for powerplant certification, and ABET-ETAC outcomes, 2) increasing productive and clear applicability to course outcomes in student time on equipment in the laboratory, and 3) increase student feedback opportunities. Implementation of the changes to the course have been made by following a structured methodology. There has been an improvement in the students' perceptions of the course. After incorporation of the course modifications that have been identified by following the methodology, student satisfaction evaluation scores doubled.
机译:在分析后,长期稳定的课程可能会发现努力达到当前的评估和认证要求。随着时间的推移,这些课程不仅变得错位,而且还需要在工业和教学技艺中的创新中焕然一新。随着课程的努力,学生也可能变得自满和脱落。本文探讨了工程技术计划中这种效果的潜力。该具体课程专注于飞机发动机的配件系统,例如:化油器,燃油喷射系统,磁石和螺旋桨。该课程包括讲座和实验室部分,该课程的实验室部分使用实际的飞机组件作为学生使用的实验室设备。为了澄清,这些是由飞机设备供应商制造的功能飞机部件。然而,它们是不适合的,不是在适航飞机上的未来安装。本研究评估了学生在课程评估调查的课程中对学生的经验的看法,这是在课程的三个主要变化之前和之后:1)通过重点关注供电证书的联邦课程要求,改善课程中的底层结构和对准,和ABET-ETAC成果,2)提高实验室设备上的学生时间课程结果的生产率和清晰适用性,3)增加学生反馈机会。通过遵循结构化方法来实施对课程的变化。学生对课程的看法有所改善。纳入通过遵循方法鉴定的课程修改后,学生满意度评估得分加倍。

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