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A Pilot Study of Optics Laboratory Activities' Impact on Students Connections Between Theory and Experiment

机译:光学实验室活动的试验研究理论与实验与实验与实验中学生联系的影响

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Research in Physics Education suggests students have difficulties in learning physics content through experimental lab work~1. In applied areas, such as optics, the formation of a strong understanding that spans both theory and application is often necessary. In this pilot study, the progression of six optics students was tracked over a 15-week semester. We integrated short laboratory activities into a traditional upper-division theoretical optics course with the aim of helping students to make connections between concepts in theoretical optics and their implementation/applications in the laboratory. Three interviews were conducted at the beginning, the middle and the end of the semester to monitor the development of students' skills and knowledge in the relevant optics areas. The interview protocols asked students to make conceptual explanations, perform theoretical calculations and perform experimental tasks to demonstrate their understanding. Initial analysis of the interview responses reveals the gaps in the students' knowledge and skills. We performed a qualitative thematic analysis of the interview data to examine student success in making connections between theory and application. Our results consist of a revised interview protocol for assessing learning in this integrated optics context, revised laboratory activities, and insights for experimental designs that could better assess student learning gains.
机译:物理教育的研究表明,学生通过实验实验室工作学习物理含量〜1。在应用领域,如光学,形成跨境理论和应用的强烈理解是必要的。在这项试点研究中,六名光学学生的进展是在15周学期的15周中追踪。我们将简短的实验室活动纳入了传统的大型理论上的光学课程,目的是帮助学生在理论光学概念和实验室中的实施/应用之间建立联系。在一开始,学期中间和末期进行了三次访谈,以监测相关光学领域的学生技能和知识的发展。面试协议要求学生做出概念解释,执行理论计算并执行实验任务以证明他们的理解。对面试反应的初步分析揭示了学生的知识和技能的差距。我们对面试数据进行了定性专题分析,以检查学生成功在理论与应用之间的关系方面。我们的结果包括评估在这一集成光学背景下的学习的经修订的访谈协议,修订了实验室活动和对实验设计的见解,这些设计可以更好地评估学生学习收益。

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