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Showing 1 to 15 of 21 results Save | Export
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Van den Eynde, Sofie; Deprez, Johan; Goedhart, Martin; De Cock, Mieke – International Journal of Mathematical Education in Science and Technology, 2022
Combining mathematical and physical understanding in reasoning is difficult, and a growing body of research shows that students experience problems with the combination of physics and mathematics in reasoning beyond the introductory level. We investigated students' reasoning about boundary conditions (BCs) for the diffusion equation by conducting…
Descriptors: Undergraduate Students, Mathematics Education, Physics, Science Education
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Fisher, Rick – Journal of the Scholarship of Teaching and Learning, 2023
Efforts to promote disciplinary literacy can help students integrate knowledge with ways of doing and being within disciplinary settings. Yet, effectively facilitating disciplinary literacy, even within an upper-level undergraduate physics course like the one studied here, is surprisingly hard. This article qualitatively analyzes an instructor's…
Descriptors: Undergraduate Students, Literacy, Physics, Science Laboratories
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Sirnoorkar, Amogh; Bergeron, Paul D. O.; Laverty, James T. – Physical Review Physics Education Research, 2023
Researchers in physics education have advocated both for including modeling in science classrooms as well as promoting student engagement with sensemaking. These two processes facilitate the generation of new knowledge by connecting to one's existing ideas. Despite being two distinct processes, modeling is often described as sensemaking of the…
Descriptors: Physics, Science Instruction, Learner Engagement, Student Attitudes
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Moritz Waitzmann; Ruediger Scholz; Susanne Wessnigk – Physical Review Physics Education Research, 2024
Clear and rigorous quantum reasoning is needed to explain quantum physical phenomena. As pillars of true quantum physical explanations, we suggest specific quantum reasoning derived from quantum physical key ideas. An experiment is suggested to support such a quantum reasoning, in which a quantized radiation field interacts with an optical beam…
Descriptors: Physics, Science Instruction, Teaching Methods, Quantum Mechanics
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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
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Ríos, Laura; Pollard, Benjamin; Dounas-Frazer, Dimitri R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2019
Models of physical systems are used to explain and predict experimental results and observations. The Modeling Framework for Experimental Physics describes the process by which physicists revise their models to account for the newly acquired observations, or change their apparatus to better represent their models when they encounter discrepancies…
Descriptors: Protocol Analysis, Interviews, Logical Thinking, Electronics
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Kontro, Inkeri; Buschhüter, David – Physical Review Physics Education Research, 2020
The Colorado Learning Attitudes about Science Survey (CLASS) is an instrument which is widely used in physics education to characterize students' attitudes toward physics and learning physics and compare them with those of experts. While CLASS has been extensively validated for use in the context of higher education institutions in the United…
Descriptors: Student Attitudes, Science Education, Foreign Countries, Attitude Measures
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Reinhard, Aaron; Felleson, Alex; Turner, Paula C.; Green, Maxwell – Physical Review Physics Education Research, 2022
We studied the impact of metacognitive reflections on recently-completed work as a way to improve the retention of newly learned problem-solving techniques. Students video recorded themselves talking through problems immediately after finishing them, completed ongoing problem-solving strategy maps or problem-sorting exercises, and filled out…
Descriptors: Metacognition, Problem Solving, Retention (Psychology), Video Technology
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Burkholder, E. W.; Miles, J. K.; Layden, T. J.; Wang, K. D.; Fritz, A. V.; Wieman, C. E. – Physical Review Physics Education Research, 2020
We introduce a template to (i) scaffold the problem solving process for students in the physics 1 course, and (ii) serve as a generic rubric for measuring how expertlike students are in their problem solving. This template is based on empirical studies of the problem solving practices of expert scientists and engineers, unlike most existing…
Descriptors: Physics, Science Instruction, Teaching Methods, Introductory Courses
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Ryan, Qing X.; Wilcox, Bethany R.; Pollock, Steven J. – Physical Review Physics Education Research, 2018
Identifying and understanding student difficulties with physics content in a wide variety of topical areas is an active research area within the physics education research community. Of particular value are investigations of physics topics that appear multiple times in different contexts across the undergraduate physics curriculum. As these common…
Descriptors: Physics, Science Instruction, Energy, Difficulty Level
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Shar, Kelli; Russ, Rosemary S.; Laverty, James T. – Physical Review Physics Education Research, 2020
Assessments are usually thought of as ways for instructors to get information from students. In this work, we flip this perspective and explore how assessments communicate information to students. Specifically, we consider how assessments may provide information about what faculty and/or researchers think it means to know and do physics, i.e.,…
Descriptors: Epistemology, Science Instruction, Physics, Science Tests
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Van De Bogart, Kevin L.; Dounas-Frazer, Dimitri R.; Lewandowski, H. J.; Stetzer, MacKenzie R. – Physical Review Physics Education Research, 2017
Developing students' ability to troubleshoot is an important learning outcome for many undergraduate physics lab courses, especially electronics courses. In other work, metacognition has been identified as an important feature of troubleshooting. However, that work has focused primarily on "individual" students' metacognitive processes…
Descriptors: Metacognition, Troubleshooting, Physics, Science Instruction
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Randles, Christopher; Overton, Tina; Galloway, Ross; Wallace, Marsali – International Journal of Science Education, 2018
This paper describes the results of a comparative study into the approaches used by science undergraduates when solving open-ended problems. This study adopted a pseudo-grounded theory framework to analyse six case studies, one from each of the science disciplines studied. The study involved 70 participants from 5 institutions solving open-ended…
Descriptors: Undergraduate Students, College Science, Problem Solving, Science Process Skills
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Russ, Rosemary S.; Odden, Tor Ole B. – Physical Review Physics Education Research, 2017
Our field has long valued the goal of teaching students not just the facts of physics, but also the thinking and reasoning skills of professional physicists. The complexity inherent in scientific reasoning demands that we think carefully about how we conceptualize for ourselves, enact in our classes, and encourage in our students the relationship…
Descriptors: Physics, Evidence, Undergraduate Students, Scientific Concepts
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Dounas-Frazer, Dimitri R.; Van De Bogart, Kevin L.; Stetzer, MacKenzie R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2016
We explore the overlap of two nationally recognized learning outcomes for physics lab courses, namely, the ability to model experimental systems and the ability to troubleshoot a malfunctioning apparatus. Modeling and troubleshooting are both nonlinear, recursive processes that involve using models to inform revisions to an apparatus. To probe the…
Descriptors: Role, Science Instruction, Physics, Outcomes of Education
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