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Paula Tuzón; Antoni Salvà Salvà; Juan Fernández-Gracia – Physical Review Physics Education Research, 2025
This paper presents a methodological approach based on the use of complex networks to analyze the structure and content of curricula. We analyze the concept network built from the final year of a particular high school physics curriculum, as well as that of mathematics. We examine the most central nodes in each case, the community structures…
Descriptors: Network Analysis, Curriculum Evaluation, High School Students, Physics
Diego Ramírez; Eugenio J. Guzmán-Lavín; Javier Pulgar; Cristian Candia – Physical Review Physics Education Research, 2025
Group configurations shape social skills and learning outcomes by fostering student interaction and collaboration. Yet, the factors influencing group formation, social cohesion, and group stability have remained understudied in physics education. Here, we examine these factors in a cohort of 90 students from ninth and tenth grades at a private…
Descriptors: Group Dynamics, Group Instruction, Grade 9, Grade 10
Irnin Agustina Dwi Astuti; Basuki Wibawa; Muhammad Japar – Educational Process: International Journal, 2025
Background/purpose: The students have difficulty understanding abstract concepts that are sometimes difficult to visualize in optics and physics, so learning innovations are needed to overcome these problems. Case-Based Learning (CBL) optical physics learning integrated with mobile microlearning offers an innovative approach to improving the…
Descriptors: Physics, Optics, Science Instruction, Case Method (Teaching Technique)
Ivan Danar Aditya Irawan; Sentot Kusairi; Khusaini; Nur Akhyar Basri; Revnika Faizah; Muhammad Habibbulloh – Science Education International, 2025
In physics learning that emphasizes a student-centered approach, formative feedback strategically improves students' conceptual understanding and learning motivation. However, implementing feedback in the learning environment still faces various obstacles, including time constraints, many students, and a lack of personalization in its delivery.…
Descriptors: Physics, Formative Evaluation, Feedback (Response), Student Needs
Nedim Slijepcevic; Ali Yaylali – Journal of Teaching and Learning, 2025
This mixed-methods study investigated the effectiveness of Generative AI (GenAI) powered intelligent tutoring systems (ITS) in undergraduate physics education, specifically comparing learning outcomes between students using Khanmigo (Khan Academy's AI tutor) and the Google search engine. The study involved 69 undergraduate students divided into…
Descriptors: Undergraduate Students, Science Education, Physics, Scientific Concepts
Raffaella Negretti; Hans Malmström; Jonathan Weidow – Composition Forum, 2025
In this program profile, we describe the development of an integrated, genre-based writing curriculum in first-year engineering physics at a technical university in Sweden. The curriculum aimed at supporting undergraduate students develop disciplinary literacy and an understanding of the exigencies that different scientific genres fulfill, with a…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Physics
Bao, Lei; Fritchman, Joseph C. – Physical Review Physics Education Research, 2021
Newton's third law is one of the most important concepts learned early in introductory mechanics courses; however, ample studies have documented a wide range of students' misconceptions and fragmented understandings of this concept that are difficult to change through traditional instruction. This research develops a conceptual framework model to…
Descriptors: Science Education, Scientific Principles, Physics, Teaching Methods
Burkholder, Eric W. – Physical Review Physics Education Research, 2021
Previously, we had reported on the relationship between AP physics experience and exam scores, and student scores on the Force and Motion Conceptual Evaluation and in an introductory calculus-based mechanics course [E. W. Burkholder and C. E. Wieman, Phys. Rev. Phys. Educ. Res. 15, 020117 (2019)]. Two limitations to our previous work were that we…
Descriptors: Physics, Advanced Placement, Introductory Courses, Science Instruction
Burkholder, Eric W.; Murillo-Gonzalez, Gabriel; Wieman, Carl – Physical Review Physics Education Research, 2021
Previous work has looked at the relationship between high school preparation and student performance in calculus-based introductory mechanics (physics 1) courses. Here, we extend that work to look at performance in introductory calculus-based electricity and magnetism (physics 2), and we look at the significance of what college math courses have…
Descriptors: Physics, Science Instruction, Introductory Courses, Calculus
Hahn, Kenneth D.; Russell, Jacob M. – Physics Teacher, 2018
It has been noted that the static friction force poses challenges for students and, at times, even their instructors. Unlike the gravitational force, which has a precise and unambiguous magnitude (F[subscript G] = mg), the magnitude and direction of the static friction force depend on other forces at play. Friction can be understood rather well in…
Descriptors: Physics, Science Instruction, Scientific Concepts, Concept Formation
Dean, Kevin – European Journal of Physics Education, 2018
The conical pendulum provides a rich source of theoretical and computational analysis and the present work presents a seamless continuation of the previous publication. The tension force F[subscript T] and centripetal force F[subscript C] are explored further in linearization analyses and the appropriate slopes are explained. A similar analysis is…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
Corvo, Tony – Physics Teacher, 2019
On August 16, 1960, at 7:12 a.m., United States Air Force Captain Joseph W. Kittinger Jr. looked out from his balloon gondola at a height of over 19 miles and… jumped. Kittinger's altitude and free-fall speed record lasted until Felix Baumgartner's jump from a height of nearly 24 miles on Oct. 14, 2012. Baumgartner broke several records, including…
Descriptors: Problem Solving, Physics, Scientific Concepts
Flach, S.; Parnovsky, S.; Varlamov, A. A. – Physics Education, 2022
Why do we need to pour less water in an egg steamer to prepare more eggs to the same degree of 'doneness'? We discuss the physical processes at work in the electric egg steamer and resolve this seeming paradox. We demonstrate that the main heat transfer mechanism from steam to egg is due to latent heat through condensation. This not only explains…
Descriptors: Science Instruction, Physics, Heat, Scientific Concepts
Dziob, Daniel; Górska, Urszula; Kolodziej, Tomasz; Cepic, Mojca – International Journal of Technology and Design Education, 2022
The Chain Experiment competition has been held successfully for 6 years in Poland and is attracting growing interest. The competition provides participants with a task that involves designing and constructing a contraption that is an element in a chain of events that are based on various physical phenomena. The contraptions are then linked…
Descriptors: Physics, Competition, Foreign Countries, Science Experiments
Malespina, Alysa; Schunn, Christian D.; Singh, Chandralekha – International Journal of STEM Education, 2022
Background: Motivational factors are one active area of research that aims to increase the inclusion of women in physics. One of these factors that has only recently gained traction in physics is intelligence mindset (i.e., the belief that intelligence is either innate and unchangeable or can be developed). We studied 781 students in…
Descriptors: Ability, Gender Differences, Academic Achievement, Physics

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