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Kamphorst, Floor; Vollebregt, M. J.; Savelsbergh, E. R.; van Joolingen, W. R. – Science & Education, 2023
Einstein's derivation of special relativity theory (SRT), based on hypothetical reasoning and thought experiments, is regarded as a prime example of physics theory development. In secondary education, the introduction of SRT could provide a great opportunity for students to engage in physics theorizing, but this opportunity is largely being missed…
Descriptors: Physics, Scientific Concepts, Secondary School Science, Science Education
Gayle Geschwind; Michael Vignal; Marcos D. Caballero; H. J. Lewandowski – Physical Review Physics Education Research, 2024
Concepts and practices surrounding measurement uncertainty are vital knowledge for physicists and are often emphasized in undergraduate physics laboratory courses. We have previously developed a research-based assessment instrument--the Survey of Physics Reasoning on Uncertainty Concepts in Experiments (SPRUCE)--to examine student proficiency with…
Descriptors: Undergraduate Students, Physics, Science Laboratories, College Science
Maja Planinic; Katarina Jelicic; Karolina Matejak Cvenic; Ana Susac; Lana Ivanjek – Physical Review Physics Education Research, 2024
Wave optics is a mandatory part of Croatian secondary school physics curriculum for students in the final year of secondary school (age 18-19). Many physics education research studies have shown that it is a difficult physics topic for both university and secondary school students. An inquiry-based teaching sequence on wave optics, designed for…
Descriptors: Secondary School Students, Secondary School Science, Physics, Scientific Concepts
Daniel A. Martens Yaverbaum – ProQuest LLC, 2024
This study investigated evidence of how students' mental models of fundamental kinematic relations evolved (i.e., developed cognitively over time) as observed during an introductory course in calculus-based classical mechanics. The core of the curriculum is based on a claim known as Galileo's principle of relativity. The course material comprised…
Descriptors: Schemata (Cognition), Motion, Physics, Science Education
Palacios Gómez, Jesús; Villagómez, Roque André Eleazar Arroyo – Physics Teacher, 2023
Here, a relatively simple laboratory experiment of a physical pendulum, suitable for students of science and engineering in the first courses of university physics, is presented to illustrate its dynamic behavior and to determine its inertia moment. To this end, a long wooden rod of length L = 99.8 cm and cross-section radius R = 1.73 cm was used…
Descriptors: Physics, Science Instruction, Science Laboratories, Motion
Mable Moloi; Mogalatjane Edward Matabane – Research in Social Sciences and Technology, 2024
Digital practical work (DPW) has emerged as a highly effective and indispensable component of science education, enhancing and extending traditional laboratory experiences. DPW aims to complement physical laboratory experiments, particularly those that teachers may find challenging to conduct or lack the confidence to perform. In this study, a…
Descriptors: Physical Sciences, Science Education, Technology Integration, Science Instruction
David T. Brookes; Mc Kenna Wallace; Michael Nelson; Anna Karelina; Peter Bohacek; Matthew Vonk; Eugenia Ektina – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] In this paper, we describe the results of a research project whose goals were to (1) develop and implement video-based experimental investigations using the Investigative Science Learning Environment (ISLE) approach and (2) study how…
Descriptors: Scientific Literacy, Science Process Skills, Laboratory Equipment, Science Experiments
Kyla Adams; Anastasia Lonshakova; David Blair; David Treagust; Tejinder Kaur – Teaching Science, 2024
Quantum science is in the news daily and engages students' interest and curiosity. A fundamental quantum science concept that underpins medical imaging, quantum computing and many future technologies is quantum spin. Quantum spin can explain many physical phenomena that are in the lower secondary school curriculum, such as magnetism and light,…
Descriptors: Quantum Mechanics, Science Instruction, Physics, Science Activities
Meagan Sundstrom; Rebeckah K. Fussell; Anna McLean Phillips; Mark Akubo; Scott E. Allen; David Hammer; Rachel E. Scherr; N. G. Holmes – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Research on nontraditional laboratory (lab) activities in physics shows that students often expect to verify predetermined results, as takes place in traditional lab activities. This understanding of what is taking place, or…
Descriptors: Science Education, Nontraditional Education, Science Laboratories, Physics
Wouter Spaan; Ron Oostdam; Jaap Schuitema; Monique Pijls – Research in Science & Technological Education, 2024
Background: Practical work in school science has been ineffective due to students not connecting hands-on to minds-on aspects. With the designation Thinking-Back-and-Forth (TBF)we present a framework with a taxonomy of TBF activities. Purpose: Aim was to gain insight how teachers stimulate and support their students in TBF. Detailed information…
Descriptors: Foreign Countries, Grade 8, Grade 9, Secondary School Teachers
Christof Keebaugh; Emily Marshman; Chandralekha Singh – Physical Review Physics Education Research, 2024
We examine students' challenges in determining the number of distinct many-particle stationary states for a system of noninteracting identical particles, focusing on how these insights guided the design, validation, and evaluation of a quantum interactive learning tutorial (QuILT) to aid students' understanding. Specifically, we focus on systems…
Descriptors: Physics, Scientific Concepts, Science Education, Quantum Mechanics
Owens, David C.; Greer, Kania; Thaler, Mary – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2023
Kids are drawn to dolls and dump trucks, and crashing the two together might just be a child's favorite pastime. Who knew such a simple pleasure could serve as an accessible, compelling phenomenon for instigating investigations of force and motion. With a few inexpensive materials straight out of the toy box (literally, a doll, a dump truck, a…
Descriptors: Toys, Science Instruction, Scientific Concepts, Motion
Nieh, Hwa-Ming; Chen, Huai-Yi – Physics Teacher, 2023
The Arduino microcontroller is currently one of the favorite tools of makers, and many teachers have used it in teaching or experiments. In addition, light-emitting diode (LED) smart lighting is the worldwide trend in lighting. There are many teaching demonstrations or applications of color addition using LEDs. Furthermore, the Internet of Things…
Descriptors: Science Experiments, Light, Color, Heat
Harriet R. Tenenbaum; Jo Van Herwegen – International Journal of Early Years Education, 2024
Many technological applications (apps) purport to help children learn academic material. Building on research in developmental and educational psychology, we developed and tested an app to teach biological and physical science content to preschool children. There were 21 children in the control condition (M[subscript age] = 50.30 months, SD =…
Descriptors: Preschool Children, Elementary School Science, Science Education, Science Instruction
Kirsty Dunnett; Anders Mattias Lundmark – International Journal of Science Education, 2024
'A lack of prior knowledge in the other discipline' is often given by geoscience instructors to explain why students struggle to apply knowledge from other disciplines to the Earth. We examine this assumption by considering the disciplinary crossing of buoyancy (physics) to isostasy (geoscience). We investigate the teachers' perspective through…
Descriptors: Science Instruction, Earth Science, Interdisciplinary Approach, Physics