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QUANTUM THEORY AND RELATIVITY
SOME PROBLEMS ABOUT RESTRICTED RELATIVITY
GRAVITATION AND RELATIVITY QUANTIZED
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acceleration action and reaction actual assume assumption atomic clock Bohr Bohr's Bridgman Brillouin Carstoiu Chapter charge Q classical mechanics complete computation constant velocity corresponds definition discussion distance Doppler effect Einstein Einstein's theory electromagnetism electron emission emitted energy density energy levels equations experimental experiments Fock formula frame of reference fundamental geometry given gravistatics gravitation gravity field gravity potential gravity propagation gravity red shift gravity waves heavy hence ideal clock inertial infinite infinity interaction kinetic laboratory Lorentz transformation mass density mass M0 mass-energy relation measure Mossbauer effect motion moving negative masses Newton observed obtain optical particles perturbation photons Phys physical meaning Poincare potential energy principle of relativity problem quantized quantum theory radiation radius recoil reference at rest relativistic represents role rotation scientific Section sets of coordinates signals similar Sommerfeld space special relativity specified spectral line sphere symmetry tion velocity of light yields zero