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Matthew Dew; Emily M. Stump; N.?G. Holmes – Physical Review Physics Education Research, 2025
Previous research has found gender inequitable equipment usage across various lab course contexts. Few studies, however, have tested possible remediation strategies. In this work, we use hierarchical linear modeling to compare men and women's lab equipment usage in two group work structures across three course contexts. In one in-person course,…
Descriptors: Science Laboratories, Equal Education, Laboratory Equipment, Gender Bias
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Kristen A. Miller; Shelli N. Carter; Joseph Marra – Online Learning, 2025
Fully online courses and degree programs are popular with students. These courses should provide the rigor and value of traditional learning in a face-to-face classroom to ensure mastery of concepts and learning objectives. This research expands previous work to investigate the effectiveness of online laboratory exercises in enhancing student…
Descriptors: STEM Education, Undergraduate Students, General Education, Adult Students
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Ravishankar Chatta Subramaniam; Jason W. Morphew; Carina M. Rebello; N. Sanjay Rebello – Physical Review Physics Education Research, 2025
Investigating students' thinking in classroom tasks, particularly in science and engineering, is essential for improving educational practices and advancing student learning. In this context, the notion of "Ways of Thinking" (WoT) has gained traction in STEM education, offering a framework to explore how students approach and solve…
Descriptors: STEM Education, Engineering, Physics, Design
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Mukarramah Mustari; Hartono; Sunyoto Eko Nugroho; Sugianto – Journal of Educators Online, 2025
This paper explores the development and evaluation of a MOOCs-based virtual physics measurement laboratory module designed to overcome common barriers in physics education, such as limited physical lab access, high costs, and safety concerns. Utilizing the Borg and Gall Research and Development model, this module integrates structured layouts,…
Descriptors: Physics, MOOCs, Science Education, Computer Simulation
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Rebeckah K. Fussell; Megan Flynn; Anil Damle; Michael F. J. Fox; N. G. Holmes – Physical Review Physics Education Research, 2025
Recent advancements in large language models (LLMs) hold significant promise for improving physics education research that uses machine learning. In this study, we compare the application of various models for conducting a large-scale analysis of written text grounded in a physics education research classification problem: identifying skills in…
Descriptors: Physics, Computational Linguistics, Classification, Laboratory Experiments
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Wei-Zhao Shi; Chunying Zuo; Jingying Wang – Physical Review Physics Education Research, 2025
Previous research has shown that in prehigher education stages, inquiry-based teaching is not sufficient for forming a mature understanding of the nature of science (NOS). However, there is relatively little research conducted on colleges. Inquiry-based teaching should not overlook cognitive frameworks, as students' limited scientific reasoning…
Descriptors: Teaching Methods, Inquiry, Active Learning, College Science
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Hamideh Talafian; Morten Lundsgaard; Maggie S. Mahmood; Eric Kuo; Timothy J. Stelzer – Physical Review Physics Education Research, 2025
Although most teachers recognize the importance of taking investigative, open-ended approaches to students' learning experiences, implementing them in high school classes can be challenging for teachers. In this work, we analyzed data from multiple sources from a teaching Community of Practice (CoP) to investigate (a) barriers to taking an…
Descriptors: Physics, Science Teachers, Science Instruction, Laboratory Procedures
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Ravishankar Chatta Subramaniam; Nikhil Borse; Amir Bralin; Jason W. Morphew; Carina M. Rebello; N. Sanjay Rebello – Physical Review Physics Education Research, 2025
Reform documents advocate for innovative pedagogical strategies to enhance student learning. A key innovation is the integration of science and engineering practices through engineering design (ED)-based physics laboratory tasks, where students tackle engineering design problems by applying physics principles. While this approach has its benefits,…
Descriptors: Physics, Laboratory Experiments, Teaching Methods, Science Instruction
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Alexandr Nikitin; Petr Kácovský; Marie Snetinová; Martin Chvál; Jitka Houfková; Zdenka Koupilová – Physical Review Physics Education Research, 2025
In this quantitative study, we explored learners' intrinsic motivation towards three different experimental physics educational activities offered by our department to upper-grade high school students. The inspected activities were lecture demonstrations, a science show, and hands-on practical work. The respondents were Czech high school students…
Descriptors: Student Motivation, Physics, High School Students, Demonstrations (Educational)
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Chuang Chen; Siti Nazleen Abdul Rabu; Nurullizam Jamiat – Journal of Baltic Science Education, 2025
Integrating virtual laboratories (VLs) with science education promotes inquiry-based learning by providing an interactive, dynamic environment in which students actively engage with scientific concepts. While previous research highlights the effectiveness of VLs as tools in the IBL process, few studies have embedded the entire inquiry process…
Descriptors: Physics, Science Education, Science Achievement, Flipped Classroom
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Michal Sigron; Dorothy Langley; Stanislaw Dylak; Edit Yerushalmi – Physical Review Physics Education Research, 2025
Response to the continuing call to integrate scientific inquiry activities into high school education has taken different forms varying in student ownership, physical setting, time span, and mentoring resources. Important issues are how students perceive central dimensions of their experience, and the extent to which the inquiry framework design…
Descriptors: Longitudinal Studies, High School Students, Physics, Secondary School Science
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Smadar Levy; Adi Noga; Edit Yerushalmi – Physical Review Physics Education Research, 2025
Teachers' goals and orientations underlie their instructional decision making and can make the difference between "talking the talk" and "walking the walk" when trying to change lab instruction. Schoenfeld's "Resources, Orientations, and Goals" (ROG) framework was employed to shed light on the challenges involved in a…
Descriptors: Physics, Science Instruction, Educational Objectives, High School Teachers
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Victoria Borish; H. J. Lewandowski – Physical Review Physics Education Research, 2025
As quantum technologies transition from the research laboratory into commercial development, the opportunities for students to begin their careers in this new quantum industry are increasing. With these new career pathways, more and more people are considering the best ways to educate students about quantum concepts and relevant skills. In…
Descriptors: Physics, Science Instruction, Quantum Mechanics, Computer Software