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Atilla Ayaz Unsal; Cemil Aydogdu – Journal of Education in Science, Environment and Health, 2025
Today, knowledge and technology are produced rapidly. In this case, the aim of educators is to develop appropriate environments instead of presenting information directly to students and to develop students' ability to access and use information by blending it with other information. This situation reveals the importance of concept education in…
Descriptors: Misconceptions, Scientific Concepts, Science Education, Physics
Fabien Paillusson; Matthew Booth – Science & Education, 2025
For the past five decades, the majority of science education has adhered to a pedagogical philosophy which contends that issues in the acquisition and expression of target scientific narratives by learners stem from the existence of "incorrect beliefs" called misconceptions. According to this philosophy, misconceptions must be…
Descriptors: Science Education, Misconceptions, Teaching Methods, Student Attitudes
Linda Zhang; Madison Swirtz; Kerstin Nordstrom – Physical Review Physics Education Research, 2025
Asian(American) physics students lack ample representation in physics identity studies and in the broader science, technology, engineering, and mathematics (STEM) sociological literature. This may be due to their perceived overrepresentation, the "model minority" myth, or their treatment as monolithic. These misconceptions obscure the…
Descriptors: Physics, Self Concept, Asian Americans, Majors (Students)
Nur Farha Shaafi; Mohammad Mubarrak Mohd Yusof; Ellianawati Ellianawati; Bambang Subali; Muhammad Haziq Hazim Raji’e – Journal of Education and Learning (EduLearn), 2025
This study examines prevalent misconceptions among students regarding the fundamental concepts of acids and bases, which often arise during the learning process. This study aims to pinpoint misconceptions held by preservice science teachers in the realm of acids and bases; 117 university students from diverse educational backgrounds, enrolled in…
Descriptors: Foreign Countries, Preservice Teacher Education, Preservice Teachers, Science Education
Masaki Goda; Shinichi Kishizawa; Yamato Hasegawa – Physical Review Physics Education Research, 2025
In this paper, we describe student understanding of the "force concept" (basic concepts of Newtonian mechanics) by representing it as a vector-valued quantity, which we refer to as the "score-state vector," in a (30-dimensional) Force Concept Inventory (FCI) score space. We use a large ensemble of FCI results collected…
Descriptors: Mechanics (Physics), Scientific Concepts, Scientific Literacy, Foreign Countries
Yossi Ben-Zion; Roni Segal; Jianqiang Liu; Chun-Ming Wang; Atanu Rajak; Noah D. Finkelstein – Physical Review Physics Education Research, 2025
Trigonometric derivatives are fundamental in both mathematics and physics, yet their correct application, particularly the distinction between radians and degrees, remains a significant challenge for college students worldwide. This study identifies a widespread "blind spot" in understanding trigonometric derivatives and their…
Descriptors: Trigonometry, Mathematical Concepts, Physics, Misconceptions
Bagdat Abdikadyr; Bayan Ualikhanova; Daulet Berdaliyev; Gulnara Issayeva; Samat Maxutov – European Journal of Science and Mathematics Education, 2025
This study investigates the impact of constructivist teaching methods on achievement and misconceptions in mechanics, with a focus on gender differences. The research involved 88 first-year physics students enrolled in the physics teacher training program. Using a quasi-experimental design, students were divided into experimental (constructivist…
Descriptors: Gender Differences, Physics, Science Achievement, Constructivism (Learning)
Yushan Xiong; Jialan Liu; Jiejie Lai; Tongyi Zheng; Xuhuai Qu; Qiuye Li; Yi Zhong; Lei Bao; Shaona Zhou – Physical Review Physics Education Research, 2025
This study investigates the cognitive processes of novice students in science learning, with a specific focus on how inhibitory control is employed to overcome a common student misconception about the buoyant force in liquid, which leads to the belief that "the greater the depth an object is in a liquid, the greater the buoyant force it…
Descriptors: Scientific Concepts, Misconceptions, Intervention, Physics
Purbo Suwasono; Supriyono Koes H.; Nugroho Adi P.; Eleeyah Saniso – Open Education Studies, 2025
Despite continued efforts to address this issue, many students still exhibit misunderstandings regarding Newton's laws. These misconceptions include beliefs, such as every movement requires a force, that force is directly proportional to velocity, and that action-reaction forces can differ in magnitude. To mitigate these misunderstandings,…
Descriptors: Scientific Concepts, Misconceptions, Physics, Scaffolding (Teaching Technique)
Sakyiwaa Boateng; Sizwe J. C. Masuku – Journal of Baltic Science Education, 2025
Electricity and magnetism are fundamental areas of physics and are integral to science curricula at various educational levels. However, this area has been reported to contain several concepts that students find challenging, leading to perspectives that diverge from scientifically accepted views. This study examines the errors made by physics…
Descriptors: Physics, Science Teachers, Preservice Teachers, Teacher Education Programs
Soyeon Kim; Pyung Kang Jung; Jung Bog Kim – Physical Review Physics Education Research, 2025
As global interest in quantum mechanics grows, its inherent complexities continue to pose challenges for effective instruction. This study investigates the impact of Quantum Interactive Learning Tutorials (QuILTs) on enhancing conceptual understanding of quantum mechanics among preservice physics teachers in Korea. The QuILTs, consisting of…
Descriptors: Foreign Countries, Preservice Teachers, Science Teachers, Physics
Exploring Student Estimates of Astronomical Scales: Impact of Question Formulation and Visualization
Willem Keppens; Mieke De Cock; Hans Van Winckel; Wim Van Dooren; Jan Sermeus – Physical Review Physics Education Research, 2025
Estimating astronomical scales requires multiple complex mental processes, such as spatial thinking and interpreting large numbers. As such, it is a nontrivial question how these estimates can be most efficiently assessed. There is reason to believe that results from previous studies probing astronomical scale estimates are possibly susceptible to…
Descriptors: Astronomy, Science Instruction, Physics, Comparative Analysis
Benjie Wang; Wei Han; Qingdian Kong; Huanxia Wang; Yingjie Zhang – Physical Review Physics Education Research, 2025
Enhancing students' conceptual understanding is one of the primary goals of science education. Existing literature suggests that the degree of knowledge integration among students can reflect their level of conceptual understanding. This study focuses on the concept of friction force, constructing a cognitive structure model of friction force to…
Descriptors: High School Students, Physics, Scientific Concepts, Concept Formation
Test of Understanding of Electric Field, Force, and Flux: A Reliable Multiple-Choice Assessment Tool
Eder Hernandez; Esmeralda Campos; Pablo Barniol; Genaro Zavala – Physical Review Physics Education Research, 2025
This study presents the development and validation of a novel multiple-choice test designed to assess university students' conceptual understanding of electric field, force, and flux. The test of understanding of electric field, force, and flux was constructed based on the results of previous studies using a phenomenographic approach to classify…
Descriptors: Physics, Scientific Concepts, Science Tests, Multiple Choice Tests

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