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Mhamed Ben Ouahi; Mohamed Droui; Elyazid Hida; Taoufik Hassouni; El Mehdi AL Ibrahmi – Knowledge Management & E-Learning, 2025
Science education, particularly physics, remains a priority for many countries, as their future economic prosperity is closely linked to student success in science and technology. Given the persistent challenges faced by teachers in stimulating students' interest in this discipline, the integration of innovative teaching methods has become…
Descriptors: Science Education, Physics, Student Attitudes, Middle School Students
Nikolaos Papalazarou; Ioannis Lefkos; Nikolaos Fachantidis – Journal of Science Education and Technology, 2024
Involving students in laboratory and inquiry-based activities can help them understand the concepts of physics. However the learning process should not only focus on the concepts. Moreover, the advantages of using virtual or physical labs are still under examination. The purpose of this study is to analyse which of the two modes (virtual or…
Descriptors: Student Attitudes, Physics, Laboratory Experiments, High School Students
Theogene Niyomufasha; Celestin Ntivuguruzwa; Leon Rugema Mugabo – Cogent Education, 2024
The subject of physics can sometimes seem esoteric and challenging to engineering students. It would be beneficial to create a more conducive learning environment for them by combining words, mathematical equations, graphs, and diagrams to increase their problem-solving abilities. It has been demonstrated in mechanics that employing multiple…
Descriptors: Engineering Education, Problem Solving, Mathematics, Achievement Tests
Ronny Kjelsberg – Discover Education, 2024
The purpose of this study is to examine how physics students position themselves compared to other student groups on various attitudes and opinions relevant to the tradition of "scientific skepticism". Previous research has shown physics students identifying and having mindsets in line with the epistemic ideas from this philosophical…
Descriptors: Foreign Countries, Science Education, Higher Education, Physics
Molly Griston; Bethany R. Wilcox – Physical Review Physics Education Research, 2025
Despite the recognition that reflection is an essential part of problem solving, it is often not emphasized in upper-division physics courses. In this paper, we discuss homework corrections (HWCs) as a pedagogical tool to motivate reflection on homework assignments. We focus on gaining a qualitative understanding of how students may engage with…
Descriptors: Physics, Science Education, Homework, Problem Solving
Eetu Haataja; Tiina Törmänen; Matthew P. Somerville; Jonna Malmberg; Hanna Järvenoja; Sanna Järvelä – Frontline Learning Research, 2025
Despite recognising momentary challenges while learning, collaborative groups do not necessarily regulate and adapt their learning process according to the demands. Various online measures have recently been explored to unobtrusively study engagement and adaptation in collaborative learning (CL), as it occurs in the classroom. For example,…
Descriptors: Learner Engagement, Cooperative Learning, Physiology, Student Attitudes
Geraldine L. Cochran; Corey Ptak; Jenna Tempkin; Tea Boone; Stella F. Nelson; Sabrina R. Henige; Diana Sachmpazidi – Physical Review Physics Education Research, 2025
In recent years, multiple physics education research studies were conducted with a goal of understanding and improving graduate education in physics. Using a variety of frameworks and methodologies, these studies have documented policies and practices in graduate programs and the results of these studies have influenced policies and practices…
Descriptors: Physics, Graduate Students, Family Characteristics, Cultural Capital
Uchenna Kingsley Okeke; Sam Ramaila – African Journal of Research in Mathematics, Science and Technology Education, 2025
This study analyses the effectiveness of directed vs. minimally directed inquiry-based instructional approaches in improving students' attitudes toward physics. It specifically compares the impacts of cognitively guided instructional strategy (CGIS) and Cubing instructional strategy (CIS) on student attitudes. Using a pretest--post-test…
Descriptors: Instructional Effectiveness, Comparative Analysis, Student Attitudes, Physics
Derek Raine; Sarah Gretton – New Directions in the Teaching of Natural Sciences, 2025
We address the extent to which students developed expert attitudes in the individual disciplines of biology, chemistry and physics during their degree programme. By attitudes we mean the way students think about the sciences compared to discipline experts. We used the standard CLASS survey instrument to compare student attitudes to biology,…
Descriptors: Student Attitudes, Undergraduate Students, Scientific Attitudes, Interdisciplinary Approach
Deborah L. Santos; Suazette Reid Mooring – Chemistry Education Research and Practice, 2024
Mindset is a construct of interest for challenging learning environments, as science courses often are, in that, it has implications for behavioral responses to academic challenges. Previous work examining mindset in science learning contexts has been primarily quantitative in nature, limiting the theoretical basis for mindset perspectives…
Descriptors: Science Education, Physics, Cognitive Processes, Organic Chemistry
Haina Wu; Weijiang Gong; Guangyu Yi – Science & Education, 2024
Physical education in colleges plays an increasingly important role in cultivating high-quality innovative talent. The main factors that affect college students' approaches to learning physics remain unknown. This study examined the relationships among college engineering students' epistemic views of physics, conceptions of learning physics, and…
Descriptors: Epistemology, Physics, Engineering Education, Undergraduate Students
Ashley B. Heim; Georgia Lawrence; Riya Agarwal; Michelle K. Smith; N. G. Holmes – Physical Review Physics Education Research, 2025
There is a growing need for more effective interdisciplinary science instruction across undergraduate degree programs. In addition to supporting students' connections between disciplinary concepts, interdisciplinary learning can develop students' critical thinking skills and allow them to evaluate scientific investigations and claims between…
Descriptors: Critical Thinking, Biology, Physics, Undergraduate Students
Charlotte Zimmerman; Alexis Olsho; Trevor I. Smith; Philip Eaton; Suzanne White Brahmia – Physical Review Physics Education Research, 2025
Quantitative reasoning is an essential learning objective of physics instruction. The Physics Inventory for Quantitative Literacy (PIQL) is a published assessment tool that has been developed for calculus-based physics courses to help instructors evaluate whether their students learn to reason this way. However, the PIQL is not appropriate for the…
Descriptors: Science Instruction, Physics, Numeracy, Test Construction
Dahlkemper, Merten Nikolay; Lahme, Simon Zacharias; Klein, Pascal – Physical Review Physics Education Research, 2023
This study aimed at evaluating how students perceive the linguistic quality and scientific accuracy of ChatGPT responses to physics comprehension questions. A total of 102 first- and second-year physics students were confronted with three questions of progressing difficulty from introductory mechanics (rolling motion, waves, and fluid dynamics).…
Descriptors: Physics, Science Instruction, Artificial Intelligence, Computer Software
Mark A. J. Parker; Holly Hedgeland; Nicholas St. J. Braithwaite; Sally E. Jordan – European Journal of Science and Mathematics Education, 2024
The study outlines the early-stage development of a free-response General Relativity Concept Inventory (GRCI), an educational instrument designed to test for conceptual understanding of General Relativity. Data were collected for the study by having 26 participants from General Relativity courses work through the questions on the GRCI. Interviews…
Descriptors: Scientific Concepts, Physics, Science Tests, Thinking Skills