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Michael E. Robbins; Nathan D. Davis; Eric W. Burkholder – Physical Review Physics Education Research, 2025
There is currently little physics education literature examining thinking and learning in graduate education and even less literature characterizing problem solving among physics graduate students despite this being an essential professional skill for physicists. Given reports of discrepancies between physics problem solving in the undergraduate…
Descriptors: Decision Making, Graduate Students, Physics, Science Instruction
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Barron J. Montgomery; Argenta M. Price; Carl E. Wieman – Physical Review Physics Education Research, 2024
A major goal of physics education is to develop strong problem-solving skills for students. To become expert problem solvers, students must have opportunities to deliberately practice those skills. In this work, we adopt a previously described definition of problem solving that consists of a set of 29 decisions made by expert scientists. We…
Descriptors: Undergraduate Students, Physics, Decision Making, Science Education
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Murillo-Gonzalez, Gabriel; Burkholder, Eric W. – Physical Review Physics Education Research, 2022
Back-of-the-envelope (BOTE) calculations require the use of estimations and approximations. They are used by expert physicists to simplify complex problems to obtain quick and approximate solutions. Though BOTE calculations are routine for experts in physics, they are not well defined in academic literature. In this study we interviewed 9…
Descriptors: Decision Making, Specialists, Physics, Science Instruction
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Apaydin, Sezen; Karaman, Ayhan; Baysal, Hüsnü – International Journal of Progressive Education, 2022
The aim of the present study was to explore how physicists start their research studies, how they identify their research questions and what factors influence their involvement in studying a specific research problem. The grounded theory methodology was adopted in the study by considering the qualitative nature of the research questions. The study…
Descriptors: Scientific Research, Scientists, Physics, Foreign Countries
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Soojeong Jeong; Justin Rague; Kaylee Litson; David F. Feldon; M. Jeannette Lawler; Kenneth Plummer – Education and Information Technologies, 2025
DBL is a novel pedagogical approach intended to improve students' conditional knowledge and problem-solving skills by exposing them to a sequence of branching learning decisions. The DBL software provided students with ample opportunities to engage in the expert decision-making processes involved in complex problem-solving and to receive…
Descriptors: Decision Making, Learning Processes, Introductory Courses, Science Education
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Verostek, Mike; Griston, Molly; Botello, Jesús; Zwickl, Benjamin – Physical Review Physics Education Research, 2022
Understanding how physicists solve problems can guide the development of methods that help students learn and improve at solving complex problems. Leveraging the framework of cognitive task analysis, we conducted semistructured interviews with theoretical physicists (N=11) to gain insight into the cognitive processes and skills that they use in…
Descriptors: Physics, Science Instruction, Teaching Methods, Troubleshooting
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Lusardi, Laura; Haroldson, Rachelle – Science Teacher, 2021
COVID-19 is the first global pandemic in the age of the internet and the world has collectively documented the virus's spread, offering a unique opportunity to study both the virus and the streams related to COVID-19, on topics from testing access to income to race. They develop their own research question to investigate the relationship between…
Descriptors: COVID-19, Pandemics, Incidence, Distance Education
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Bao, Lei; Koenig, Kathleen; Xiao, Yang; Fritchman, Joseph; Zhou, Shaona; Chen, Cheng – Physical Review Physics Education Research, 2022
Abilities in scientific thinking and reasoning have been emphasized as core areas of initiatives, such as the Next Generation Science Standards or the College Board Standards for College Success in Science, which focus on the skills the future will demand of today's students. Although there is rich literature on studies of how these abilities…
Descriptors: Physics, Science Instruction, Teaching Methods, Thinking Skills
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Morphew, Jason W.; Gladding, Gary E.; Mestre, Jose P. – Physical Review Physics Education Research, 2020
Students must actively engage in problem solving to effectively learn in introductory physics courses. However, students often get stuck and are not able to make progress when solving problems outside of their current ability, particularly when one-on-one tutoring and instructor office hours are a limited resource. One effective technique consists…
Descriptors: Metacognition, Problem Solving, Introductory Courses, Physics
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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
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Mohottala, H. E. – Physics Teacher, 2016
We report the combined use of Wikispaces (wikis) and collaborative group problem solving (CGPS) sessions conducted in introductory-level calculus-based physics classes. As a part of this new teaching tool, some essay-type problems were posted on the wiki page on a weekly basis and students were encouraged to participate in problem solving without…
Descriptors: Physics, Science Instruction, Collaborative Writing, Teaching Methods
Hora, Matthew T. – Wisconsin Center for Education Research, 2014
Policymakers and educators alike increasing focus on faculty adoption of interactive teaching techniques as a way to improve undergraduate education. Yet, little empirical research exists that examines the processes whereby faculty make decisions about curriculum design and classroom teaching in real-world situations. In this study, I use the idea…
Descriptors: Postsecondary Education, Instructional Design, College Instruction, Curriculum Design
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Henderson, Charles; Yerushalmi, Edit; Kuo, Vince H.; Heller, Kenneth; Heller, Patricia – Physical Review Special Topics - Physics Education Research, 2007
To identify and describe the basis upon which instructors make curricular and pedagogical decisions, we have developed an artifact-based interview and an analysis technique based on multilayered concept maps. The policy capturing technique used in the interview asks instructors to make judgments about concrete instructional artifacts similar to…
Descriptors: Concept Mapping, College Faculty, Physics, Problem Solving
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Reigosa, Carlos; Jimenez-Aleixandre, Maria-Pilar – Physics Education, 2001
Advocates the need for pupils to practice significant aspects of scientific work such as the making of epistemic (related to the nature and construction of knowledge) and methodological decisions. This requires that they work on problems and activities presented in a more open way than usual. Describes a case study. (Contains 11 references.)…
Descriptors: Case Studies, Decision Making, Higher Education, Learning Strategies
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Marshall, Stewart – Physics Education, 1981
An engineering case study is used as the focal point of a communications course. Communications theory and practical exercises are structured around the case study described, an adaptation and extension of the power station game developed in the early 1970s. Includes outline of and sample student activities. (JN)
Descriptors: College Science, Communications, Decision Making, Educational Games
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