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Gette, Cody R.; Kryjevskaia, Mila – Physical Review Physics Education Research, 2019
After targeted instruction designed to improve student conceptual understanding of physics, a significant fraction of students are not able to answer many questions in a consistent manner. Prior research suggests that even those students who demonstrate that they acquired the relevant knowledge and skills (i.e., possess the requisite…
Descriptors: Physics, Reflection, Intuition, Cognitive Processes
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Balta, Nuri; Japashov, Nursultan; Abdulbakioglu, Mustafa; Oliveira, Alandeom W. – Physics Education, 2020
Student cognition in response to intuitive and counterintuitive stimuli in the school science curriculum is not well understood. To address this issue, this study examines high school students' cognitive responses to three counterintuitive physics problems. Our analysis reveals that student success in arriving at counter-intuitive physical…
Descriptors: High School Students, Science Instruction, Secondary School Science, Physics
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Syed, M. Qasim – Journal of College Teaching & Learning, 2015
Students in first-year physics courses generally focus on hunting for suitable equations and formulas when tackling a variety of physical situations and physics problems. There is a need for a framework that can guide them to disciplinary ways of thinking and help them begin to think like physicists. To serve this end, in this study, a framework…
Descriptors: Physics, Science Instruction, Engineering Education, Energy
Kuo, Eric – ProQuest LLC, 2013
Although a large part the Physics Education Research (PER) literature investigates students' conceptual understanding in physics, these investigations focus on qualitative, conceptual reasoning. Even in modeling expert problem solving, attention to conceptual understanding means a focus on initial qualitative analysis of the problem; the equations…
Descriptors: Equations (Mathematics), Physics, Science Education, Undergraduate Students
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Cheng, Meng-Fei; Brown, David E. – International Journal of Science Education, 2010
This study explores the spontaneous explanatory models children construct, critique, and revise in the context of tasks in which children need to predict, observe, and explain phenomena involving magnetism. It further investigates what conceptual resources students use, and in what ways they use them, to construct explanatory models, and the…
Descriptors: Models, Intuition, Metacognition, Cognitive Processes
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Taber, Keith S.; Garcia-Franco, Alejandra – Journal of the Learning Sciences, 2010
This article explores 11- to 16-year-old students' explanations for phenomena commonly studied in school chemistry from an inclusive cognitive resources or knowledge-in-pieces perspective that considers that student utterances may reflect the activation of knowledge elements at a range of levels of explicitness. We report 5 themes in student…
Descriptors: Physics, Chemistry, Learning Processes, Intuition
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Freeman, Norman H.; Hood, Bruce M.; Meehan, Caroline – Developmental Science, 2004
When preschoolers overcome persistent error, subsequent patterns of correct choices may identify how the error had been overcome. Children who no longer misrepresented a ball rolling down a bent tube as though it could only fall vertically, were asked sometimes to approach and sometimes to avoid where the ball landed. All children showed requisite…
Descriptors: Inhibition, Children, Physics, Error Correction
Georgiou, Andreas – Online Submission, 2005
This study is part of a larger research agenda, which includes future doctoral study, aiming to investigate the psychological processes of thought experiments. How do thought-experimenters establish relations between their imaginary worlds and the physical one? How does a technique devoid of new sensory input result to new empirical knowledge? In…
Descriptors: Problem Solving, Intuition, Physics, Simulation