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Designing inquiry-based learning environments for quantum physics education in secondary schools

机译:设计探究式学习环境在中学昆腾物理教育

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This paper describes the design process for a digital instructional sequence on introductory quantum physics for upper secondary education. Based on a collaboration between teachers and physics education researchers, this sequence incorporates relevant theoretical foundations from the field of science teaching to promote meaningful and conceptual learning of quantum physics. The sequence is composed of units, which are being developed using the Go-Lab ecosystem (www.golabz.eu), a free online platform for teachers to create digital inquiry-based lessons. So far, the sequence covers the photoelectric effect, wave-particle duality, and tunnelling phenomena. This paper focuses on the sequence's first unit, addressing the photoelectric effect. The unit is used in this paper to exemplify the incorporation of the sequence's theoretical foundations: digital inquiry-based learning with simulations, collaborative learning, and conceptual change. The unit was pilot-tested with 114 students in four Dutch high schools. Answers to multiple-choice and open-ended questions were collected through the Go-Lab platform. Analyses showed the unit's potential to promote correct reasoning about the role of the intensity and frequency variables and revealed students' difficulties in grasping light's particle nature at the end of the lesson. These preliminary results are used to draw conclusions about how to improve this unit and inform the design of new instructional sequences.
机译:本文描述了高中量子物理导论数字教学序列的设计过程。基于教师和物理教育研究人员之间的合作,该序列结合了科学教学领域的相关理论基础,以促进量子物理的有意义和概念学习。该序列由单元组成,这些单元正在使用Go Lab生态系统(www.golabz.eu)开发,Go Lab生态系统是一个免费的在线平台,供教师创建基于数字探究的课程。到目前为止,该序列涵盖了光电效应、波粒二象性和隧道现象。本文主要研究序列的第一个单元,即光电效应。该单元在本文中用于举例说明该序列的理论基础:基于数字探究的模拟学习、协作学习和概念转变。该单元在四所荷兰高中的114名学生中进行了试点测试。多项选择题和开放式问题的答案通过Go Lab平台收集。分析表明,该单元有可能促进对强度和频率变量作用的正确推理,并揭示了学生在课程结束时难以掌握光的粒子性质。这些初步结果用于得出关于如何改进本单元的结论,并为新教学序列的设计提供信息。

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