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Stehle, Stephanie M. – ProQuest LLC, 2022
Students come to their high school physics classroom with experiences and knowledge that can be used to help explain physics concepts, but those experiences may not fully align with the scientifically accepted science concept. When there is a misalignment between a student's prior knowledge and the scientifically accepted concept a misconception…
Descriptors: High School Students, Physics, Metacognition, Problem Solving
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
Gysin, Daniel; Brovelli, Dorothee – International Journal of Science Education, 2021
In this article, we present a qualitative study examining students' thoughts and strategies while transferring concepts about energy in physics. We include theoretical approaches of existing transfer research and findings from think-aloud interviews with 20 students of different ages and school levels to develop a framework for analysing the…
Descriptors: Physics, Learning Processes, Scientific Concepts, Energy
Johnson-Glauch, Nicole; Herman, Geoffrey L. – Journal of Engineering Education, 2019
Background: Engineering students inconsistently apply equilibrium when solving problems in statics, but few studies have explored why. Visual cognition studies suggest that features of the visual representations we use to teach students influence what domain knowledge they use to solve problems. However, few studies have explored how visual…
Descriptors: Engineering Education, Models, Problem Solving, Visual Aids
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
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
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
Ergül, N. Remziye – Universal Journal of Educational Research, 2018
Data and graphic analysis and interpretation are important parts of science process skills and science curriculum. So it refers to visual display of data using relevant graphical representations. One of the tools used in science courses is graphics for explain the relationship among each of the concepts and therefore it is important to know data…
Descriptors: Preservice Teachers, Science Teachers, Student Attitudes, Data Interpretation
Nakakoji, Yoshitaka; Wilson, Rachel – Journal of Intelligence, 2020
Transfer of learning, the application of learning to different contexts over time, is important to all learning for development. As 21st century skills specifically aim to be "generic," there is an assumption that they can be transferred from context to context. We investigate the process of transfer in problem solving, with specific…
Descriptors: Interdisciplinary Approach, STEM Education, College Mathematics, College Science
Di Camillo, Kirra; Dawson, Vaille – Teaching Science, 2020
This article reports on the explicit introduction of metacognitive strategies by an early career science teacher to support the application of mathematics skills. The research investigated the effectiveness of these strategies with three Year 11 physics students using an action research approach. Quantitative and qualitative data were collected…
Descriptors: Metacognition, Learning Strategies, Classroom Techniques, Mathematics Skills
Modir, Bahar; Thompson, John D.; Sayre, Eleanor C. – Physical Review Physics Education Research, 2017
Students' difficulties in quantum mechanics may be the result of unproductive framing and not a fundamental inability to solve the problems or misconceptions about physics content. We observed groups of students solving quantum mechanics problems in an upper-division physics course. Using the lens of epistemological framing, we investigated four…
Descriptors: Epistemology, Problem Solving, Quantum Mechanics, Physics
Gette, Cody R.; Kryjevskaia, Mila; Stetzer, MacKenzie R.; Heron, Paula R. L. – Physical Review Physics Education Research, 2018
A growing body of scholarly work indicates that student performance on physics problems stems from many factors, including relevant conceptual understanding. However, in contexts in which significant conceptual difficulties have been documented via research, it can be difficult to pinpoint and isolate such factors because students' written and…
Descriptors: Case Studies, Science Instruction, Scientific Principles, Physics
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
Phillips, Jeffrey A.; Clemmer, Katharine W.; McCallum, Jeremy E. B.; Zachariah, Thomas M. – Journal of College Science Teaching, 2017
Well-developed, problem-solving skills are essential for any student enrolled in a science, technology, engineering, and mathematics (STEM) course as well as for graduates in the workforce. One of the most essential skills is the ability to monitor one's own progress and understanding while solving a problem. Successful monitoring during the…
Descriptors: Problem Solving, Models, STEM Education, Skill Development
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