Engineering education amid a global pandemic

IF 3.9 Q2 ENGINEERING, INDUSTRIAL Advances in Industrial and Manufacturing Engineering Pub Date : 2021-11-01 DOI:10.1016/j.aime.2021.100058
Joshua Grodotzki, Siddharth Upadhya, A. Erman Tekkaya
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引用次数: 28

Abstract

To investigate the impact of the sudden shift to online education triggered by the COVID-19 pandemic, a survey was conducted among international mechanical engineering students, specializing in manufacturing technology, at the TU Dortmund University. The surveyed students, were exposed to differently structured online courses from different institutes, as well as dynamic developments in each online course, over the semester and thus were able to effectively assess the pros and cons of the different teaching styles. To get the viewpoints of both the involved parties on how a successful online education course needs to be structured, a similar survey was also conducted among manufacturing engineering professors involved in Germany. The survey, a combination of Likert-scale and free-text questions, tackled the aspects of motivation to teach and learn, ensuring effective teaching and learning, and proper assessment of the learning outcomes in an online education system. The results show that both parties initially struggled with the transition, but later adapted quickly to the new style of online teaching that was inspired by the conventional flipped classroom concept. Certain structures and approaches to online teaching, such as pre-recorded lectures; interactive Q&A sessions; quizzes for self-assessment, are preferred by students and teachers alike. Aspects where the viewpoints differed could be explained by the difference in age and the experience in using digital equipment. A challenge specific to online engineering education is on offering laboratory experiences to students. Possible solutions such as virtual labs, remote labs and digital-live labs that aid in overcoming this challenge are presented. Finally, based on the survey results and the author experiences on digital laboratories, best practice guidelines are presented that will help the readers in the design and deployment of online engineering courses.

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全球流行病中的工程教育
为了调查新冠肺炎大流行引发的在线教育的突然转变所带来的影响,对多特蒙德大学机械工程专业的国际学生进行了一项调查。被调查的学生在一个学期中接触到不同学院不同结构的在线课程,以及每门在线课程的动态发展,从而能够有效地评估不同教学风格的优缺点。为了了解双方对如何构建成功的在线教育课程的看法,我们还在德国的制造工程教授中进行了类似的调查。这项调查结合了李克特量表和自由文本问题,探讨了教与学的动机、确保有效的教与学以及在线教育系统中学习成果的适当评估等方面。结果表明,双方最初都在努力过渡,但后来很快适应了受传统翻转课堂概念启发的新型在线教学。在线教学的某些结构和方法,如预先录制的讲座;互动问答环节;学生和老师都喜欢自考。观点不同的方面可以用年龄和使用数字设备经验的差异来解释。在线工程教育面临的一个挑战是如何为学生提供实验室体验。提出了虚拟实验室、远程实验室和数字实时实验室等可能的解决方案,以帮助克服这一挑战。最后,根据调查结果和作者在数字实验室的经验,提出了最佳实践指南,以帮助读者设计和部署在线工程课程。
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来源期刊
Advances in Industrial and Manufacturing Engineering
Advances in Industrial and Manufacturing Engineering Engineering-Engineering (miscellaneous)
CiteScore
6.60
自引率
0.00%
发文量
31
审稿时长
18 days
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