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Gagnon, Michel – Physics Education, 2020
At the end of the 18th-century, Charles Coulomb developed an apparatus to study the force between two electrified beads which allowed him to obtain his famous Coulomb's law. Today, as one of the most fundamental outcomes in classical electromagnetism, his result is revisited in most high school physics courses, where students are asked to…
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Principles
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Fisher, Aidan A.E. – Journal of Chemical Education, 2019
Computational approaches toward simulating chemical systems and evaluating experimental data has gathered great momentum in recent years. The onset of more powerful computers and advanced software has been instrumental to this end. This manuscript presents a hands-on activity which trains students in basic coding skills within the Matlab…
Descriptors: Computer Software, Chemistry, Quantum Mechanics, Energy
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Gates, Joshua – Physics Education, 2014
Despite their physics instructors' arguments to the contrary, introductory students can observe situations in which there seems to be compelling evidence for magnetic force doing work. The counterarguments are often highly technical and require physics knowledge beyond the experience of novice students, however. A simple example is presented…
Descriptors: Magnets, Scientific Principles, Science Instruction, Physics
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Ribeiro, C. I. – Physics Teacher, 2014
In this article we propose an activity aimed at introductory students to help them understand the Stefan-Boltzmann and Wien's displacement laws. It only requires simple materials that are available at any school: an incandescent lamp, a variable dc energy supply, and a computer to run an interactive simulation of the blackbody spectrum.…
Descriptors: Science Instruction, Physics, Scientific Principles, Lighting
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Ibáñez, María-Blanca; Di-Serio, Ángela; Villarán-Molina, Diego; Delgado-Kloos, Carlos – IEEE Transactions on Education, 2015
This paper reports empirical evidence on having students use AR-SaBEr, a simulation tool based on augmented reality (AR), to discover the basic principles of electricity through a series of experiments. AR-SaBEr was enhanced with knowledge-based support and inquiry-based scaffolding mechanisms, which proved useful for discovery learning in…
Descriptors: Simulated Environment, Computer Simulation, Energy, Science Experiments
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Silva, P. E. S.; de Abreu, F. Vistulo; Simoes, R.; Dias, R. G. – European Journal of Physics, 2010
Modelling elastic filament dynamics is a topic of high interest due to the wide range of applications. However, it has reached a high level of complexity in the literature, making it unaccessible to a beginner. In this paper we explain the main steps involved in the computational modelling of the dynamics of an elastic filament. We first derive…
Descriptors: Computer Simulation, Equations (Mathematics), Calculus, Scientific Principles
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Garriz, Abel E.; Sztrajman, Alejandro; Mitnik, Dario – European Journal of Physics, 2010
The propagation in time of a wavepacket is a conceptually rich problem suitable to be studied in any introductory quantum mechanics course. This subject is covered analytically in most of the standard textbooks. Computer simulations have become a widespread pedagogical tool, easily implemented in computer labs and in classroom demonstrations.…
Descriptors: Textbooks, Quantum Mechanics, Science Instruction, Introductory Courses