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Benjie Wang; Wei Han; Yingjie Zhang; Qian Wang; Dan Li; Ziling Tang; Qingdian Kong – Journal of Baltic Science Education, 2024
A central objective of science education is to foster a profound comprehension of fundamental scientific principles among students. Research has shown that a highly integrated knowledge structure is a key factor in achieving a deep understanding. This research has developed a friction force conceptual framework to model students' different…
Descriptors: Foreign Countries, Science Education, Scientific Concepts, Physics
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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
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Muhammad Aswin Rangkuti; Ricardo Karam – Physical Review Physics Education Research, 2023
Despite its crucial importance in physics, there are not many studies focusing on student difficulties and teaching strategies related to the (1D) wave equation in the PER literature. In order to contribute to fill this gap, we conducted a study with university students which focused on specific aspects that are crucial for understanding this…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Concepts
Mary Jane Brundage – ProQuest LLC, 2024
Validated conceptual multiple-choice surveys administered before and after instruction in relevant concepts can be useful tools to gauge the effectiveness of curricula and pedagogical strategies. Here we discuss the use of four different validated surveys to investigate student understanding: The Energy and Momentum Conceptual Survey (EMCS), the…
Descriptors: Surveys, Comprehension, Energy, Magnets
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Gao, Yizhu; Zhai, Xiaoming; Cui, Ying; Xin, Tao; Bulut, Okan – Research in Science Education, 2022
This paper re-validates middle school students' learning progression of the concept of buoyancy (Gao et al., 2020) by using two-time point data. The previous study developed a four-level learning progression based on data collected at a single time point using cross-sectional design. This single-time-point model of learning progression calls for a…
Descriptors: Middle School Students, Grade 8, Physics, Science Curriculum
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Siantuba, Jackson; Nkhata, Leonard; de Jong, Ton – Smart Learning Environments, 2023
This study sought to develop and evaluate an online module based on inquiry learning with digital laboratories, which was intended to address students' misconceptions in a science domain. In a quasi-experimental design, 171 first-year students in a higher education introductory physics course on circular motion were as their existing groups…
Descriptors: College Freshmen, College Science, Introductory Courses, Physics
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Yanrou Wen; Jiabei Lin; Yue Ming; Junpeng Zhang; Xianqiu Wu; Lei Bao; Keke Yu; Yang Xiao – Physical Review Physics Education Research, 2024
Misconceptions coexisting with scientific understanding pose significant challenges in physics education. Inhibitory control may enable individuals to overcome interference from misconceptions. However, discerning the role of inhibitory control becomes intricate when the saliency of scientific- and misconception-related features varies in a…
Descriptors: Science Instruction, Scientific Concepts, Misconceptions, Motion
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Eryilmaz Toksoy, Seyhan; Bulut, Emine – Education and Information Technologies, 2023
Simulations, which are very powerful educational tools on their own, enable concretization of abstract concepts and help students research the variables related to the subject matter of the simulation. Simulations provide powerful modelling environments that include the interaction processes of physics concepts, bring active participation of…
Descriptors: Foreign Countries, Student Attitudes, Teacher Attitudes, Simulation
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Irmak, Meltem; Inaltun, Hüseyin; Ercan-Dursun, Jale; Yanis-Kelleci, Hilal; Yuruk, Nejla – International Journal of Science and Mathematics Education, 2023
The purpose of this study is twofold: (1) to develop and validate a three-tier diagnostic test on work, power, and energy (WPE) concepts and (2) to identify Turkish pre-service science teachers' conceptual understanding through this test. The Work, Power, and Energy Concept Test (WPECT) was developed through interviews, read-aloud sessions, and…
Descriptors: Diagnostic Tests, Preservice Teachers, Science Teachers, Science Tests
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Anna Koumara; Michael Bakaloglou; Hariton M. Polatoglou – World Journal of Education, 2024
Eleven high school students participated in a one-week STEM summer camp focused on designing and building parachutes to deliver fragile objects safely. Using the Engineering Design Process (EDP) as a framework, students explored how canopy size affects performance. They applied physics concepts such as terminal velocity, forces, and acceleration,…
Descriptors: Foreign Countries, High School Students, Summer Science Programs, Physics
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Ezema, Marcus Jideofor; Ugwuany, Christian Sunday; Okeke, Chinedu Ifedi; Orji, Emmanuel Ifeanyi – Journal of Turkish Science Education, 2022
When students were exposed to cognitive conflict and 5E teaching models, this study looked at the impact of cognitive ability on their conceptual change in the particulate nature of matter in physics. With a sample of 195 first-year upper secondary school students, the study used a quasi-experimental design with non-equivalent groups. The data…
Descriptors: Cognitive Ability, Scientific Concepts, Concept Formation, Science Instruction
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Pascasie Nyirahabimana; Evariste Minani; Mathias Nduwingoma; Imelda Kemeza – Education and Information Technologies, 2024
Students ability to build correct knowledge relies on their understanding of concepts. Students must understand the concept well before applying it in real-life situations. With the advent of technology, teaching and learning quantum physics has been made easier and more effective in enhancing students' critical thinking and conceptual…
Descriptors: Quantum Mechanics, Physics, Multimedia Materials, Scientific Concepts
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Jian-Bo Zhu; Yu-Zhou Luo – Journal of Baltic Science Education, 2024
Science identity, encompassing perceptions of competence, interest, and recognition in science, alongside learning self-efficacy reflecting confidence to master science skills, are key drivers of outcomes. However, developmental patterns likely vary across contexts. Participants were 512 Chinese students spanning grades 1-3 who completed the…
Descriptors: Science Education, Science Achievement, Secondary School Students, Self Efficacy
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Philipp Bitzenbauer; Sergej Faletic; Marisa Michelini; Kristóf Tóth; Gesche Pospiech – Physical Review Physics Education Research, 2024
The teaching and learning of quantum physics has recently become a topic of increasing interest in physics education research. In particular, the study of two-state systems is gaining importance as a means of teaching quantum physics at various educational levels. Meanwhile, a number of approaches have been developed that are also suitable for…
Descriptors: Physics, Science Instruction, Measurement Techniques, Teaching Methods
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White, Gary; Sikorski, Tiffany-Rose; Landay, Justin; Ahmed, Maryam – Physical Review Physics Education Research, 2023
Limiting case analysis (LCA) is important to practicing physicists. Yet, there is little concrete guidance for physics educators, and a lack of consensus in the research community about how to help students learn, and learn from, limiting case analysis. In this study, we first review existing literature to find commonalities and variations in how…
Descriptors: Energy, Magnets, Physics, Science Education
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