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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
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
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
William D. Riihiluoma; Zeynep Topdemir; John R. Thompson – Physical Review Physics Education Research, 2024
One expected outcome of physics instruction is for students to be capable of relating physical concepts to multiple mathematical representations. In quantum mechanics (QM), students are asked to work across multiple symbolic notations, including some they have not previously encountered. To investigate student understanding of the relationships…
Descriptors: Quantum Mechanics, Mathematical Concepts, Knowledge Level, College Students
Zhang, Muxin; Morphew, Jason; Stelzer, Tim – Physical Review Physics Education Research, 2023
Preparing for high-stakes exams in introductory physics courses is generally a self-regulated activity. Compared to other exam reviewing strategies, doing practice exams has been shown to help students recognize gaps in their knowledge, encourage active practicing, and produce long-term retention. However, many students, particularly students who…
Descriptors: Tests, Scores, Drills (Practice), Study Habits
Emily M. Stump; Matthew Dew; Gina Passante; N. G. Holmes – Physical Review Physics Education Research, 2023
Measurement uncertainty is an important topic in the undergraduate laboratory curriculum. Previous research on student thinking about experimental measurement uncertainty has focused primarily on introductory-level students' procedural reasoning about data collection and interpretation. In this paper, we extended this prior work to study…
Descriptors: Quantum Mechanics, Introductory Courses, Thinking Skills, Physics
Victoria Borish; H. J. Lewandowski – Physical Review Physics Education Research, 2023
Quantum mechanics is a field often considered very mathematical, abstract, and unintuitive. One way some instructors are hoping to help familiarize their students with these complex topics is to have the students see quantum effects in experiments in undergraduate instructional labs. Here, we present results from an interview study about what it…
Descriptors: Physics, Quantum Mechanics, Undergraduate Students, Educational Objectives
Suárez, Álvaro; Martí, Arturo C.; Zuza, Kristina; Guisasola, Jenaro – Physical Review Physics Education Research, 2023
Textbooks play a fundamental role in teaching and learning in school science classrooms. In this paper, we investigate the presentation of the nature of the electromagnetic field in a dozen of the world's most popular introductory university physics textbooks. We analyze, from an epistemologically based teaching approach, the didactic treatment of…
Descriptors: Teaching Methods, Physics, Science Instruction, Textbooks
William D. Riihiluoma; Zeynep Topdemir; John R. Thompson – Physical Review Physics Education Research, 2025
The ability to relate physical concepts and phenomena to multiple mathematical representations--and to move fluidly between these representations--is a critical outcome expected of physics instruction. In upper-division quantum mechanics, students must work with multiple symbolic notations, including some that they have not previously encountered.…
Descriptors: Undergraduate Students, College Faculty, Physics, Science Instruction
Mary Jane Brundage; David E. Meltzer; Chandralekha Singh – Physical Review Physics Education Research, 2024
We use the Survey of Thermodynamic Processes and First and Second Laws-Long (STPFaSL-Long), a research-based survey instrument with 78 items at the level of introductory physics, to investigate introductory and advanced students' difficulties with entropy and the second law of thermodynamics. We present an analysis of data from 12 different…
Descriptors: Scientific Concepts, Thermodynamics, Introductory Courses, Advanced Courses
Danijela Dodlek; Gorazd Planinsic; Eugenia Etkina – Physical Review Physics Education Research, 2024
Research carried out through the last 20 years gave us undeniable evidence that to learn anything we need to be active participants, not passive observers. One of the important aspects of learning physics is constructing explanations of physical phenomena. To support and guide students toward constructing their explanations, teachers need to be…
Descriptors: Science Teachers, Preservice Teachers, Teacher Response, Physics
Agostino Cioffi; Silvia Galano; Raffaella Passeggia; Italo Testa – Physical Review Physics Education Research, 2024
The assessment of test anxiety has received increasing attention in educational research due to the potential negative effects of anxiety on student performance. Traditionally, test anxiety scales have been developed for mathematics, but few studies have focused on physics. In this study, we validated two test anxiety scales for undergraduate…
Descriptors: Test Anxiety, Test Validity, Undergraduate Students, Physics
Dewei Ye; Jiali Qian; Wangyi Xu; Yuyang Lu; Shuli Wang; Longhai Xiao; Lei Bao – Physical Review Physics Education Research, 2024
The galvanic cell is a typical interdisciplinary topic, which is primarily taught in chemistry but its underpinning is closely related to physics. Student learning in galvanic cell has been extensively studied in chemistry education, which has revealed a large number of misconceptions that are difficult to change through traditional instruction. A…
Descriptors: Physics, Science Instruction, Teaching Methods, Cytology
Álvaro Suárez; Arturo C. Marti; Kristina Zuza; Jenaro Guisasola – Physical Review Physics Education Research, 2024
We investigate learning difficulties among second-year students in electromagnetism courses when they apply Ampère-Maxwell's law. Using phenomenography, we analyzed written answers from 65 undergraduate physics students to four questions on Ampère's and Ampère-Maxwell's laws. We complemented our research by interviewing 12 students. To design the…
Descriptors: Learning Problems, Undergraduate Students, Energy, Magnets
Kelly Miller; Tobias Espinosa; Ives Araujo; Isaura Gallegos – Physical Review Physics Education Research, 2023
Self-efficacy is an important measure in science education as it is predictive of persistence and success in science, technology, engineering, and mathematics (STEM) courses and is an influential factor in students' decisions to major in STEM fields. It is unclear what effect active teaching strategies have on students' self-efficacy, which is…
Descriptors: Self Efficacy, Physics, Science Instruction, Student Attitudes