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Donoso, Guillermo; Ladera, Celso L. – European Journal of Physics, 2012
We study the nonlinear oscillations of a forced and weakly dissipative spring-magnet system moving in the magnetic fields of two fixed coaxial, hollow induction coils. As the first coil is excited with a dc current, both a linear and a cubic magnet-position dependent force appear on the magnet-spring system. The second coil, located below the…
Descriptors: Physics, Motion, Magnets, Science Instruction
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Sprenger, Martin; Nicolini, Piero; Bleicher, Marcus – European Journal of Physics, 2012
Many modern theories which try to unify gravity with the Standard Model of particle physics, such as e.g. string theory, propose two key modifications to the commonly known physical theories: the existence of additional space dimensions; the existence of a minimal length distance or maximal resolution. While extra dimensions have received a wide…
Descriptors: Physics, Phenomenology, Graduate Study, College Science
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Khanna, F. C.; Mello, P. A.; Revzen, M. – European Journal of Physics, 2012
The aim of this paper is to present the subject of state reconstruction in classical and in quantum physics, a subject that deals with the experimentally acquired information that allows the determination of the physical state of a system. Our first purpose is to explain a method for retrieving a classical state in phase space, similar to that…
Descriptors: Probability, Quantum Mechanics, Textbooks, Mechanics (Physics)
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Debbasch, F. – European Journal of Physics, 2011
The logical structure of classical thermodynamics is presented in a modern, geometrical manner. The first and second law receive clear, operatively oriented statements and the Gibbs free energy extremum principle is fully discussed. Applications relevant to chemistry, such as phase transitions, dilute solutions theory and, in particular, the law…
Descriptors: Thermodynamics, Science Instruction, Scientific Principles, Geometry
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Pina, E. – European Journal of Physics, 2011
The rotational dynamics was studied from the point of view of Rodrigues' vector. This vector is defined here by its connection with other forms of parametrization of the rotation matrix. The rotation matrix was expressed in terms of this vector. The angular velocity was computed using the components of Rodrigues' vector as coordinates. It appears…
Descriptors: Motion, Science Instruction, Matrices, Physics
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Salazar, R.; Tellez, G. – European Journal of Physics, 2012
We illustrate some of the techniques to identify chaos signatures at the quantum level using as guiding examples some systems where a particle is constrained to move on a radial symmetric, but non-planar, surface. In particular, two systems are studied: the case of a cone with an arbitrary contour or "dunce hat billiard" and the rectangular…
Descriptors: Quantum Mechanics, Science Instruction, Geometric Concepts, Scientific Principles
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Marin, E.; Lara-Bernal, A.; Calderon, A.; Delgado-Vasallo, O. – European Journal of Physics, 2011
Some peculiarities of the heat transfer through a sample that is heated by the superficial absorption of light energy under continuous uniform illumination are discussed. We explain, using a different approach to that presented in a recent article published in this journal (Salazar "et al" 2010 "Eur. J. Phys." 31 1053-9), that the front surface of…
Descriptors: Heat, Science Instruction, Thermodynamics, Light
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Berry, M. V.; Shukla, P. – European Journal of Physics, 2011
The spin of a top can be regarded as a fast variable, coupled to the motion of the axis which is slow. In pure precession, the rotation of the axis round a cone (without nutation), can be considered as the result of a reaction from the fast spin. The resulting restriction of the total state space of the top is an illustrative example, at…
Descriptors: Motion, Physics, Scientific Principles, Magnets
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Donoso, Guillermo; Ladera, Celso L. – European Journal of Physics, 2012
The parametric oscillations of an oscillator driven electromagnetically are presented. The oscillator is a conductive pipe hung from a spring, and driven by the oscillating magnetic field of a surrounding coil in the presence of a static magnetic field. It is an interesting case of parametric oscillations since the pipe is neither a magnet nor a…
Descriptors: Physics, Science Instruction, Scientific Principles, Magnets
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Linares, J.; Nistal, M. C. – European Journal of Physics, 2011
We present a derivation of the paraxial geometrical laws starting from a wave-optics approach, in particular by using simple continuity conditions of paraxial spherical waves at boundaries (discontinuities) between optical media. Paraxial geometrical imaging and magnification laws, under refraction and reflection at boundaries, are derived for…
Descriptors: Optics, Geometric Concepts, Scientific Concepts, College Science
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Hnizdo, V. – European Journal of Physics, 2011
The generalized second-order partial derivatives of 1/r, where r is the radial distance in three dimensions (3D), are obtained using a result of the potential theory of classical analysis. Some non-spherical-regularization alternatives to the standard spherical-regularization expression for the derivatives are derived. The utility of a…
Descriptors: Equations (Mathematics), Science Instruction, Graduate Study, Undergraduate Study
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Aghamohammadi, Amir – European Journal of Physics, 2011
Dimensional analysis, superposition principle, and continuity of electric potential are used to study the electric potential of a uniformly charged square sheet on its plane. It is shown that knowing the electric potential on the diagonal and inside the square sheet is equivalent to knowing it everywhere on the plane of the square sheet. The…
Descriptors: Geometric Concepts, Science Instruction, Energy, Computation
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Fernandez, Francisco M. – European Journal of Physics, 2011
We propose a simple and straightforward method based on Wronskians for the calculation of bound-state energies and wavefunctions of one-dimensional quantum-mechanical problems. We explicitly discuss the asymptotic behaviour of the wavefunction and show that the allowed energies make the divergent part vanish. As illustrative examples we consider…
Descriptors: Science Instruction, Computation, Physics, Problem Solving
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Augousti, A. T.; Radosz, A.; Ostasiewicz, K. – European Journal of Physics, 2011
By using the symmetry and time-independence properties of Schwarzschild spacetime it is demonstrated that an energy conservation law may be expressed in terms of local velocity. From this form three important results may be derived very concisely. This highlights analogies and differences between relativistic and classical approaches to mechanics…
Descriptors: Energy Conservation, Mechanics (Physics), Science Instruction, Scientific Principles
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Elcoro, Luis; Etxebarria, Jesus – European Journal of Physics, 2011
The requirement of rotational invariance for lattice potential energies is investigated. Starting from this condition, it is shown that the Cauchy relations for the elastic constants are fulfilled if the lattice potential is built from pair interactions or when the first-neighbour approximation is adopted. This is seldom recognized in widely used…
Descriptors: Textbook Content, Interaction, Misconceptions, Science Instruction
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