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Enhancing curiosity using interactive simulations combined with real-time formative assessment facilitated by open-format questions on Tablet computers

机译:通过平板电脑上开放格式问题的互动模拟与实时形成性评估相结合来增强好奇心

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Students' curiosity often seems nearly nonexistent in a lecture setting; we discuss a variety of possible reasons for this, but it is the instructor who typically poses questions while only a few students, usually the better ones, respond. As we have developed and implemented the use of InkSurvey to collect real-time formative assessment, we have discovered that it can serve in an unanticipated role: to promote curiosity in engineering physics undergraduates. Curiosity often motivates creative, innovative people. To encourage such curiosity, we solicit questions submitted real-time via InkSurvey and pen-enabled mobile devices (Tablet PCs) in response to interactive simulations (applets) run either before or in class. This provides students with practice in asking questions, increases metacognition, and serves as a rich springboard from which to introduce content and/or address misconceptions. We describe the procedure for measuring curiosity and results from applying this method in a junior level electromagnetics engineering physics course. We conclude that students are indeed more curious than they appear in class, and students participate even without extrinsic motivation. This method of enhancing curiosity using interactive simulations coupled with real-time formative assessment in response to open-format questions could be implemented in a wide variety of engineering courses as well as elsewhere.
机译:在课堂上,学生的好奇心似乎几乎不存在。我们讨论了各种可能的原因,但通常只有少数几个学生(通常是比较好的学生)会回答问题,而通常是由讲师提出问题。在开发和实施InkSurvey来收集实时形成性评估的过程中,我们发现它可以发挥意想不到的作用:促进工程物理本科生的好奇心。好奇心经常激励有创造力的人。为鼓励这种好奇心,我们响应在课前或课堂上运行的交互式模拟(小程序),通过InkSurvey和支持笔的移动设备(平板电脑)实时提交问题。这为学生提供了提出问题的练习,增加了元认知,并成为介绍内容和/或解决误解的丰富跳板。我们描述了测量好奇心的过程以及在初级电磁工程物理课程中应用此方法得出的结果。我们得出的结论是,学生确实比上课时更好奇,并且即使没有外部动机,学生也可以参加。这种使用互动模拟结合实时形成性评估以响应开放格式问题来增强好奇心的方法,可以在各种工程课程以及其他各种工程中实施。

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