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Rex Taibu; Lloyd M. Mataka – Electronic Journal for Research in Science & Mathematics Education, 2025
To explain experiences of riders of rotating systems, such as a merry-go-round, some physics educators have employed the concept of 'centrifugal force.' However, others have suggested that the term is unnecessary in explaining experiences in rotating systems and that it encourages misconceptions surrounding circular motion dynamics. Owing to this…
Descriptors: Textbooks, Motion, Physics, Scientific Concepts
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
Yudi Kurniawan; Andi Suhandi; Achmad Samsudin; Nguyen Thi Thanh Xuan – Journal of Science Learning, 2024
This article provides a detailed analysis of the various methods used in physics classrooms to teach oscillation and its related concepts. We thoroughly searched reputable databases, including Scopus and Web of Science. We analyzed 50 articles published between 2018 and 2023 using content analysis techniques such as elimination, classification,…
Descriptors: Content Analysis, Foreign Countries, Physics, Science Instruction
Adrienne L. Traxler; Camila Mani Dias do Amaral; Charles Henderson; Evan LaForge; Chase Hatcher; Madison Swirtz; Ramón Barthelemy – Physical Review Physics Education Research, 2024
Network analysis has become a well-recognized methodology in physics education research (PER), with study topics including student performance and persistence, faculty change, and the structure of conceptual networks. The social network analysis side of this work has focused on quantitative analysis of whole-network cases, such as the structure of…
Descriptors: Physics, Science Instruction, Network Analysis, Social Networks
Yiting Lin; Yunqi Cai; Cheng Lian; Shouhong Xu; Wenqing Zhang; Honglai Liu – Journal of Chemical Education, 2025
Ion transport, involving the diffusion and migration of ions within the electrolyte, stands as a fundamental concept in electrochemistry and serves as the driving force for electrochemical reactions. Electric double layers are critical in the fields of electrochemical energy storage and chemical conversion, constituting a central focus of…
Descriptors: Chemistry, Science Instruction, Energy, Engineering
Paolo Bussotti – International Baltic Symposium on Science and Technology Education, 2025
The problem here dealt with concerns physics education, and specifically the concept of force. The idea behind this research is that a historical approach to the teaching of such a notion is of great help for the students to fully understand the meaning of this basic physical magnitude. For, most of scientific concepts can be better grasped by the…
Descriptors: Physics, Science Instruction, Scientific Concepts, Concept Formation
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
Matthew Dew; Emily M. Stump; N.?G. Holmes – Physical Review Physics Education Research, 2025
Previous research has found gender inequitable equipment usage across various lab course contexts. Few studies, however, have tested possible remediation strategies. In this work, we use hierarchical linear modeling to compare men and women's lab equipment usage in two group work structures across three course contexts. In one in-person course,…
Descriptors: Science Laboratories, Equal Education, Laboratory Equipment, Gender Bias
John Rafafy Batlolona; Jamaludin Jamaludin – Journal of Education and Learning (EduLearn), 2024
"Marinyo" is a culture left by the Portuguese around the 15th century in Maluku. The purpose of this study was to find out to what extent students' misconceptions about the concept of sound in the "Marinyo" case in the Kepuluan Tanimbar Regency. The method used was a qualitative study in ethnography in ten villages in two…
Descriptors: Misconceptions, Acoustics, Elementary School Students, Physics
Purwoko Haryadi Santoso; Bayu Setiaji; Wahyudi; Johan Syahbrudin; Syamsul Bahri; Fathurrahman; A. Suci Rizky Ananda; Yusuf Sodhiqin – Physical Review Physics Education Research, 2024
The Force Concept Inventory (FCI) is one of the research-based assessments established by the physics education research community to measure students' understanding of Newtonian mechanics. Former works have often recorded the notion of gendered mean FCI scores favoring male students notably in the North American (NA) based studies. Nevertheless,…
Descriptors: Gender Differences, Physics, Science Instruction, Science Tests
Brett Criswell; Kadir Demir – Journal of College Science Teaching, 2024
This paper presents important findings that were observed as interconnected key elements of high-quality co-teaching of a physics course for pre-service science teachers while the collaborating faculty experienced a "pedagogical convergence." This pedagogical convergence is akin to the "conceptual convergence" that Roschelle…
Descriptors: Physics, Science Instruction, Team Teaching, Preservice Teacher Education
Tong Tong; Feipeng Pi; Siyan Zheng; Yi Zhong; Xiaochun Lin; Yajun Wei – Research in Science Education, 2025
Students' success in physics problem-solving extends beyond conceptual knowledge of physics, relying significantly on their mathematics skills. Understanding the specific contributions of different mathematics skills to physics problem-solving can offer valuable insights for enhancing physics education. Yet such studies are rare, particularly at…
Descriptors: Mathematics Skills, Physics, Problem Solving, Science Instruction
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
Helena Johansson; Magnus Österholm – International Journal of Mathematical Education in Science and Technology, 2025
It is agreed that algebra has an important role in physics, particularly through handling symbols. A lot of previous research has focused on how mathematics is used in physics from perspectives where mathematics is taken for granted, and not addressing potential differences of mathematics in the physics classroom and in the mathematics classroom.…
Descriptors: Algebra, Physics, Mathematics, Science Instruction
Sunil Pokhrel – Teacher Education Advancement Network Journal, 2024
Recent research has indicated that the utilization of digital technologies among Nepal's secondary school teachers is minimal. A multiple case study research design was employed to explore how Physics teachers at the secondary level utilized digital technologies for teaching Physics and the challenges they encountered in adopting new instructional…
Descriptors: Physics, Science Instruction, Foreign Countries, Secondary School Teachers