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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
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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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Dolinko, A. E. – European Journal of Physics, 2009
By simulating the dynamics of a bidimensional array of springs and masses, the propagation of conveniently generated waves is visualized. The simulation is exclusively based on Newton's second law and was made to provide insight into the physics of wave propagation. By controlling parameters such as the magnitude of the mass and the elastic…
Descriptors: Physics, Scientific Concepts, Mechanics (Physics), Scientific Principles
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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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Shutler, P. M. E.; Martinez, J. C.; Springham, S. V. – European Journal of Physics, 2007
The Enskog factor [chi] plays a central role in the theory of dense gases, quantifying how the finite size of molecules causes many physical quantities, such as the equation of state, the mean free path, and the diffusion coefficient, to deviate from those of an ideal gas. We suggest an intuitive but rigorous derivation of this fact by showing how…
Descriptors: Physics, Scientific Concepts, Monte Carlo Methods, Computer Simulation