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Kohnle, Antje; Jackson, Alexander; Paetkau, Mark – Physics Teacher, 2019
Learning introductory quantum physics is challenging, in part due to the different paradigms in classical mechanics and quantum physics. Classical mechanics is deterministic in that the equations of motion and the initial conditions fully determine a particle's trajectory. Quantum physics is an inherently probabilistic theory in that only…
Descriptors: Probability, Quantum Mechanics, Physics, Computer Simulation
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Hughes, Ciaran; Isaacson, Joshua; Turner, Jessica; Perry, Anastasia; Sun, Ranbel – Physics Teacher, 2022
Quantum computing is a growing field at the intersection of physics and computer science. The goal of this article is to highlight a successfully trialled quantum computing course for high school students between the ages of 15 and 18 years old. This course was designed to bridge the gap between popular science articles and advanced undergraduate…
Descriptors: Teaching Methods, Physics, Science Instruction, Quantum Mechanics
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Freericks, J. K.; Cutler, D.; Kruse, A.; Vieira, L. B. – Physics Teacher, 2019
We describe a new style of MOOC designed to engage students with an immersive multimedia environment including text, images, video lectures, computer-based simulations, animations, and tutorials. Quantum Mechanics for Everyone is currently running on edX and has been successful by a number of different measures. Building on the pioneering work of…
Descriptors: Quantum Mechanics, Physics, Science Instruction, Large Group Instruction
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Jewett, John W., Jr. – Physics Teacher, 2015
The notion of bringing technology into the classroom has been the subject of many recent presentations at conferences and papers in physics teaching journals. The use of devices such as laptops, smartphones, tablets, and clickers is rising in today's classrooms and laboratories. PhET simulations have been available online for over a decade. A…
Descriptors: Physics, Science Instruction, Quantum Mechanics, Computer Simulation
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Fanaro, Maria de los Angeles; Otero, Maria Rita; Arlego, Marcelo – Physics Teacher, 2012
This paper discusses the teaching of basic quantum mechanics in high school. Rather than following the usual formalism, our approach is based on Feynman's path integral method. Our presentation makes use of simulation software and avoids sophisticated mathematical formalism. (Contains 3 figures.)
Descriptors: Quantum Mechanics, Secondary School Science, Science Instruction, Teaching Methods