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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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Stolzenberger, Christoph; Frank, Florian; Trefzger, Thomas – Physics Education, 2022
With the help of augmented reality apps objects and text can be added virtually to the physical world (e.g. physical experiments) in real time. The augmented reality (AR) app 'PUMA: "Spannungslabor"' enhances simple electric circuits experiments for students with virtual representations based on the electron gas analogy including…
Descriptors: Physics, Science Instruction, Energy, Artificial Intelligence
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Teichrew, Albert; Erb, Roger – Physics Education, 2020
Real situations are overlaid with virtual information using augmented reality technology. In a learning environment, this technology could give everyday relevance to abstract concepts. In this paper, we will show how physical structures in typical experiments can be simply augmented by virtual objects in physics classes. This is achieved by…
Descriptors: Science Instruction, Computer Software, Educational Technology, Telecommunications
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Yau, Chin Doong; Wildan, Ardan; Browning, Aidan; Wijesinghe, Chamaka; Xiao, Kevin; Ng, Tuck Wah – Physics Education, 2020
The glowing discharges of plasma obtained by introducing direct current high voltages between two electrodes in a chamber that contains a low pressure gas produces a spectacular effect that makes it attractive to be used as a laboratory experiment for students. Setting up this experiment is however costly and has crucial safety issues to be…
Descriptors: Energy, Science Instruction, Computer Simulation, Scientific Concepts
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Chekour, Mohammed – Physics Education, 2018
Moroccan students encounter major difficulties in the acquisition of electric phenomena. The phenomenon of resonance is not an exception. This phenomenon is ranked among the most difficult and important phenomena of wave physics. In this article, we simulated the resonance phenomenon via the PSPICE simulator. The proposed simulation allows…
Descriptors: Physics, Science Instruction, Scientific Concepts, Foreign Countries
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Vilarta Rodriguez, Luiza; van der Veen, Jan T.; Anjewierden, Anjo; van den Berg, Ed; de Jong, Ton – Physics Education, 2020
This paper describes the design process for a digital instructional sequence on introductory quantum physics for upper secondary education. Based on a collaboration between teachers and physics education researchers, this sequence incorporates relevant theoretical foundations from the field of science teaching to promote meaningful and conceptual…
Descriptors: Quantum Mechanics, Physics, Science Instruction, Secondary School Science
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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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Sokolowski, Andrzej – Physics Education, 2013
Research has shown that students have difficulty understanding the underlying process of the photoelectric effect. Thus, this study sought to utilize an inductively situated lesson for teaching the photoelectric effect, hypothesizing that this type of enquiry would help learners delve deeper into the principles of the phenomenon and provide a…
Descriptors: Physics, Teaching Methods, Science Instruction, Scientific Concepts
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Mihas, Pavlos – Physics Education, 2003
The motion of a magnet through a coil is analysed through a model of magnetic monopoles. The magnetic flux of a monopole passing through a loop is explained and also its rate of change. By a superposition of voltages produced by the monopoles on the coils the shape of the voltage versus time graph is explained. Also examined is the interaction of…
Descriptors: Computer Simulation, Energy, Magnets, Computer Software