Results 211 to 220 of about 1,876 (240)
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Special Relativity: Applications to Particle Physics and the Classical Theory of Fields
American Journal of Physics, 1994Galilean relativity and absolute space basic postulates of special relativity and relativistic kinematics relativistic mechanics relativistic optics relativity and electromagnetism in vacuum relativistic kinematics of binary collisions tachyons.
Mohammad Saleem +2 more
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Applications in the Theory of Relativity and Theory of Classical Fields
2004Let us consider in the Euclidean three-dimensional space e 3 a surface determined by the parametric equations $$ x = x(u,{\text{ }}\upsilon ),{\text{ }}y = y(u,{\text{ }}\upsilon ),{\text{ }}z = z(u,{\text{ }}\upsilon ) $$ (5.1.1) .
Petre P. Teodorescu +1 more
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Classical Fields: General Relativity and Gauge Theory
Physics Bulletin, 1984Moshe Carmeli 1982 New York: John Wiley xvii + 650 pp price £42.70 ISBN 0 471 864374 The first 400 or so pages of this book provide a detailed and traditional exposition of tensor calculus and general relativity. The concepts and modern notation of differential geometry are relegated to a few pages in chapter 10.
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Physica B: Condensed Matter, 2010
We study the thermoelectric power under classically large magnetic field (TPM) in ultrathin films (UFs), quantum wires (QWs) of non-linear optical materials on the basis of a newly formulated electron dispersion law considering the anisotropies of the effective electron masses, the spin-orbit splitting constants and the presence of the crystal ...
Kumar, A +6 more
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We study the thermoelectric power under classically large magnetic field (TPM) in ultrathin films (UFs), quantum wires (QWs) of non-linear optical materials on the basis of a newly formulated electron dispersion law considering the anisotropies of the effective electron masses, the spin-orbit splitting constants and the presence of the crystal ...
Kumar, A +6 more
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Mathematical Methods in the Applied Sciences, 2016
We propose a model‐building framework unifying those continuum models of condensed matter accounting for second‐neighbor interactions. A notion of material isomorphism justifies restrictions that we impose to changes in observers on the material manifold.
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We propose a model‐building framework unifying those continuum models of condensed matter accounting for second‐neighbor interactions. A notion of material isomorphism justifies restrictions that we impose to changes in observers on the material manifold.
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On the energy tensor of spinning massive matter in classical field theory and general relativity
Reports on Mathematical Physics, 1976Abstract We are looking for the energy tensor which gives the correct local distribution of the energy of spinning massive matter fields (“localization of energy”). This is particularly important for the formulation of a consistent gravitational theory. We start with a Lagrangian formalism in flat spacetime.
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Classical fields, particles and the theory of relativity
Journal of the Franklin Institute, 1971openaire +1 more source
Special relativity and classical field theory
The Mathematical Gazette, 2019openaire +1 more source

