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Zuo, Fulin – Physics Teacher, 2022
The electric field inside a uniformly charged long cylindrical shell is a standard example discussed in introductory university physics. The field is zero inside the cylinder; outside of the cylinder, the field behaves like a long wire at the center carrying the same amount of charge per unit length, analogous to that of a uniformly charged…
Descriptors: Science Activities, Physics, Introductory Courses, College Students
Eric Kincanon – European Journal of Physics Education, 2022
Teaching upper division statistical physics can often be clouded by the theory and complex examples used. To better help students appreciate the fundamental statistical concepts and how they are connected to thermodynamic principles this paper suggests using a simple abstract model. Using Atkins' Model students can see these ideas clearly…
Descriptors: Statistics, Physics, Thermodynamics, Models
Cross, Rod – Physics Education, 2021
Experimental results are presented on the collision of a superball with two different wood blocks. The results are in reasonable agreement with a simple collision model where kinetic energy is conserved, but better agreement is obtained if a small loss of kinetic energy is assumed, as observed. The physics is slightly more complicated than the…
Descriptors: Science Instruction, Physics, Science Experiments, Scientific Concepts
Kontomaris, S. V.; Malamou, A. – Physics Education, 2021
A significant approach that should be followed by physics teachers at the secondary education level in order to enhance students' understanding is to highlight the generality of the mathematical procedures that describe different physical phenomena. In this paper, the common procedure that is used to calculate the duration of various physical…
Descriptors: Computation, Equations (Mathematics), Secondary School Science, Mechanics (Physics)
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
Maria Vetleseter Bøe; Anders Lauvland; Ellen Karoline Henriksen – Science Education, 2025
Supporting student participation and learning in STEM involves motivating students to engage in the most effective learning activities. In this article, we study how student motivation interacts with learning activities, and we pay special attention to active learning and the Scandinavian context where participation in learning activities is…
Descriptors: Foreign Countries, Undergraduate Students, Physics, Science Education
Jacob Beautemps; André Bresges; Sebastian Becker-Genschow – Journal of Science Education and Technology, 2025
This study investigates the impact of different animation styles on learning outcomes in physics, with a focus on explanations of the seasons. Using a combination of pre-post performance tests and eye tracking, we compared animations featuring a presenter with pure animations without a person in the frame. The sample consisted of students from a…
Descriptors: Electronic Learning, Animation, Video Technology, Technology Uses in Education
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
Jonas Gleichmann; Hans Kubitschke; Jörg Schnauß – European Journal of Science and Mathematics Education, 2025
The transition from school-level mathematics to the more abstract and formal structures in universities poses challenges for many first-year physics students. To address this gap, most physics faculties offer a mathematics pre-course. Here, we report about a pre-posttest study investigating the impact of a pre-course on N = 56 first-year physics…
Descriptors: Foreign Countries, College Freshmen, STEM Education, Physics
Theophile Musengimana; Lakhan Lal Yadav; Jean Uwamahoro; Gabriel Nizeyimana – Discover Education, 2025
Classroom observation is a critical tool for evaluating instructional strategies and their impact on student learning outcomes. This study investigates how implementing systematic problem-solving strategies affects teaching practices, classroom dynamics, and student engagement in Rwandan secondary school physics classrooms. A quasi-experimental…
Descriptors: Physics, Science Instruction, Secondary School Students, Problem Solving
Zhomart Naushabekov; Samat Maxutov; Aizhan Mansurova; Nursultan Japashov – European Journal of Science and Mathematics Education, 2025
This research investigated the effect of project-based learning (PjBL) on students' conceptual understanding of mechanics. For this purpose, a quasi-experimental research design was conducted with 50 ninth-grade students at Nazarbayev Intellectual School in Kazakhstan. We used the force concept inventory test to measure students' conceptual…
Descriptors: Student Projects, Active Learning, Concept Formation, Grade 9
Gregor Benz; Tobias Ludwig; Andreas Vorholzer – Science Education, 2025
The increasing availability of digital tools in science classrooms can provide students with more frequent and easier access to large amounts of data. Large data sets have considerable epistemological potential, as they enable, for instance, the observation of otherwise unobservable phenomena, but it must be assumed that handling them places…
Descriptors: Visual Aids, Data Analysis, Science Instruction, High School Students
Kateryna Zabolotna; Liv Nøhr; Megumi Iwata; Daniel Spikol; Jonna Malmberg; Hanna Järvenoja – International Journal of Computer-Supported Collaborative Learning, 2025
Computer-supported collaborative learning (CSCL) offers a modern setting for learners to engage in meaningful (meta)cognitive and socioemotional interactions. However, the task design, not technology alone, significantly shapes students' learning interactions. This study investigates how a conceptual physics task and a hands-on robotics task…
Descriptors: Cooperative Learning, Task Analysis, Learning Processes, Secondary School Students
Van Thien Ngo – Journal of Research in Innovative Teaching & Learning, 2025
Purpose: This study aims to examine the perceptions of students about learning science and physics using the engineering design process (EDP). Design/methodology/approach: The study employed a mixed-methods research design: The quantitative session features a pre-post-test control group study. In the qualitative aspect, the study conducted…
Descriptors: Flipped Classroom, Student Attitudes, Science Instruction, Physics

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