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Zhou, Shaona; Han, Jing; Pelz, Nathaniel; Wang, Xiaojun; Peng, Liangyu; Xiao, Hua; Bao, Lei – European Journal of Physics, 2011
Interest in computer-based learning, especially in the use of virtual reality simulations is increasing rapidly. While there are good reasons to believe that technologies have the potential to improve teaching and learning, how to utilize the technology effectively in teaching specific content difficulties is challenging. To help students develop…
Descriptors: Cues, Computer Simulation, Physics, Motion
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Fernandez Palop, J. I. – European Journal of Physics, 2009
A pedagogical tool that consists of a Java applet has been developed so that undergraduate students in physics can explore the wave behaviour of particles. The applet executes a simulation in which a two-dimensional wave packet moves towards a slit and an obstacle with variable widths. By changing three parameters, slit width, obstacle width and…
Descriptors: Undergraduate Students, Physics, Scientific Concepts, Computer Software
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Zabunov, Svetoslav – European Journal of Physics, 2010
This paper addresses the difficulties experienced by first-grade students studying rigid body motion at Sofia University. Most quantities describing the rigid body are in relations that the students find hard to visualize and understand. They also lose the notion of cause-result relations between vector quantities, such as the relation between…
Descriptors: Graphs, Mechanics (Physics), Motion, Computer Simulation
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Wang, Yanwu; Fan, Chunli; Yang, Li; Sun, Fengrui – European Journal of Physics, 2010
A three-dimensional heat transfer model is built according to the rotor structure of an asynchronous motor, and three-dimensional temperature fields of the rotor under different working conditions, such as the unloaded, rated loaded and that with broken rotor bars, are studied based on the finite element numerical method and experiments. The…
Descriptors: Heat, Climate, Physics, Science Instruction
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Butikov, Eugene I. – European Journal of Physics, 2008
Several well-known and newly discovered counterintuitive regular and chaotic modes of the sinusoidally driven rigid planar pendulum are discussed and illustrated by computer simulations. The software supporting the investigation offers many interesting predefined examples that demonstrate various peculiarities of this famous physical model.…
Descriptors: Undergraduate Students, Laboratory Equipment, Science Instruction, Computer Simulation