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Peter Cumber – International Journal of Mathematical Education in Science and Technology, 2024
A Slinky is a loose helical coil spring and is a well-known educational toy. In this paper a model for a Slinky is presented. The Slinky is represented as a sequence of rigid half coils connected by torsional springs. A range of Slinky configurations in static equilibrium are calculated. Where possible the torsion spring model is compared with the…
Descriptors: Toys, Mechanics (Physics), Motion, Scientific Concepts
Kaitlyn Stephens Serbin; Megan Wawro – International Journal of Research in Undergraduate Mathematics Education, 2024
Reasoning with mathematics plays an important role in university students' learning throughout their courses in the scientific disciplines, such as physics. In addition to understanding mathematical concepts and procedures, physics students often must mathematize physical constructs in terms of their associated mathematical structures and…
Descriptors: Mathematical Logic, Logical Thinking, College Students, Quantum Mechanics
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
Gruss, Amy Borello; Glassmeyer, David; Yee, Tien – Journal of Civil Engineering Education, 2024
Humanizing engineering education is a research-based way to help students understand the origin of concepts and the people who contributed to the field's development. This case study explores an experimental intervention to improve engineering undergraduate student knowledge and interest in fluid mechanics. The intervention incorporates the…
Descriptors: Undergraduate Students, Student Interests, Knowledge Level, Mechanics (Physics)
Yuting Wu; Yuxin Chen; Yi Cheng – Journal of Chemical Education, 2024
Microfluidics has attracted widespread interest in the fields of chemicals, materials, pharmaceuticals, biology, etc. Integrating low-cost automation based on open-source hardware/software to improve lab security and reduce time consumption is demanded in microchemical processing. In this work, we developed a "do it yourself"…
Descriptors: Chemistry, Mechanics (Physics), Scientific Concepts, Hands on Science
Lisa Giachini; Isabelle Cabot – Journal of Education and Learning, 2025
This study examines the effects of the pedagogical use of context-rich problems on motivation and learning, as compared to traditional problems, in mechanical physics courses at the college level. The results indicate that the treatment has appreciable outcomes on conceptual learning gain, on the perception of task value and on a perceived sense…
Descriptors: Mechanics (Physics), Science Instruction, Student Motivation, Problem Solving
Victoria Borish; H.?J. Lewandowski – Physical Review Physics Education Research, 2024
Instruction in quantum mechanics is becoming increasingly important as the field is not only a key part of modern physics research but is also important for emerging technologies. However, many students regard quantum mechanics as a particularly challenging subject, in part because it is considered very mathematical and abstract. One potential way…
Descriptors: Science Instruction, Science Experiments, Quantum Mechanics, Mechanics (Physics)
Vy Le; Jayson M. Nissen; Xiuxiu Tang; Yuxiao Zhang; Amirreza Mehrabi; Jason W. Morphew; Hua Hua Chang; Ben Van Dusen – Physical Review Physics Education Research, 2025
In physics education research, instructors and researchers often use research-based assessments (RBAs) to assess students' skills and knowledge. In this paper, we support the development of a mechanics cognitive diagnostic to test and implement effective and equitable pedagogies for physics instruction. Adaptive assessments using cognitive…
Descriptors: Physics, Science Education, Scientific Concepts, Diagnostic Tests
Giulia Polverini; Bor Gregorcic – Physical Review Physics Education Research, 2024
The well-known artificial intelligence-based chatbot ChatGPT-4 has become able to process image data as input in October 2023. We investigated its performance on the test of understanding graphs in kinematics to inform the physics education community of the current potential of using ChatGPT in the education process, particularly on tasks that…
Descriptors: Computer Software, Artificial Intelligence, Visual Impairments, Graphs
Emily M. Stump; Mark Hughes; N. G. Holmes; Gina Passante – Physical Review Physics Education Research, 2024
Previous research on student thinking about experimental measurement and uncertainty has primarily focused on students' procedural reasoning: Given some data, what should students calculate or do next? This approach, however, cannot tell us what beliefs or conceptual understanding leads to students' procedural decisions. To explore this…
Descriptors: College Students, Mechanics (Physics), Calculus, Measurement
Sunil Dehipawala; Todd Holden; Tak Cheung – International Society for Technology, Education, and Science, 2024
Hurricane and galaxy tidal effect are routine teaching topics in community college first year science courses, but there is a knowledge gap without a quantitative discussion of the physics of non-inertia frame. A survey of YouTube videos posted by Education Centers and professors showed that the hand-waving conceptual explanation is the most…
Descriptors: Community Colleges, Engineering Education, College Freshmen, Astronomy
Tamar Fuhrmann; Leah Rosenbaum; Aditi Wagh; Adelmo Eloy; Jacob Wolf; Paulo Blikstein; Michelle Wilkerson – Science Education, 2025
When learning about scientific phenomena, students are expected to "mechanistically" explain how underlying interactions produce the observable phenomenon and "conceptually" connect the observed phenomenon to canonical scientific knowledge. This paper investigates how the integration of the complementary processes of designing…
Descriptors: Mechanics (Physics), Thinking Skills, Scientific Concepts, Concept Formation
Ayse Buber – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2024
This paper introduces a scientific activity named "Pythagorean Cup of Justice" for teacher candidates to discuss values by integrating moral and ethical dimensions into science education, offering crucial insights into the cup's historical significance, enhancing fluid dynamics understanding, and engaging STEM-based activity. The study…
Descriptors: Preservice Teachers, Preservice Teacher Education, Middle School Students, STEM Education
Anne van der Linden; Ralph F. G. Meulenbroeks; Wouter R. van Joolingen – Journal of Computer Assisted Learning, 2024
Background: Research on cognitive effects of educational games in general shows promising results. However, there are large variations in learning outcomes between individual educational games. Research on the design process and different design elements of educational games has led to some interesting directions, but some design aspects remain…
Descriptors: Scientific Principles, Mechanics (Physics), Educational Games, Science Education
Nate Barnes; HyeYoung Cho; Mick G. Mack – Strategies: A Journal for Physical and Sport Educators, 2024
Pitching velocity is a crucial factor in effective baseball pitching performance. Upper-body-focused training is prevalent in baseball training to increase pitching velocity. However, significant pitchers, including youth league baseball players, suffer from upper body injuries due to the heavy training load of the throwing arm. This article…
Descriptors: Physical Education, Psychomotor Skills, Teaching Methods, Physical Activities
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