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Corsiglia, Giaco; Pollock, Steven; Passante, Gina – Physical Review Physics Education Research, 2023
Broadly speaking, many physicists value intuition in their work, and many instructors hope their students develop intuition (while possibly being wary of their initial, unrefined intuitions). These considerations are especially relevant in quantum mechanics, a subject many see as counterintuitive because it is removed from classical everyday…
Descriptors: Mechanics (Physics), Quantum Mechanics, Student Attitudes, Intuition
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Buteler, Laura Maria; Coleoni, Enrique Andrés – Electronic Journal of Science Education, 2014
Solving many quantitative problems does not necessarily lead to an improved Physics understanding. However, physicists, who have learned physics largely through quantitative problems solving, often have a refined physical intuition. Assuming that the refinement of physical intuitions occurs, to a great extent, during problem solving, the question…
Descriptors: Correlation, Physics, Problem Solving, Intuition
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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
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Sherin, Bruce – Journal of Research in Science Teaching, 2006
Over the last two decades, a significant body of research has documented the nature of intuitive physics knowledge--the knowledge of the world that students bring to the learning of formal physics. However, this research has yet to document the roles played by intuitive physics knowledge in expert physics practice. In this article, I discuss three…
Descriptors: Problem Solving, Intuition, Physics, Higher Education