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Electromagnetic waves in a uniform gravitational field and Planck's postulate

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Electromagnetic waves in a uniform gravitational field and Planck's postulate

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Acedo Rodríguez, L.; Tung, MM. (2012). Electromagnetic waves in a uniform gravitational field and Planck's postulate. European Journal of Physics. 33(5):1073-1082. doi:10.1088/0143-0807/33/5/1073

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Título: Electromagnetic waves in a uniform gravitational field and Planck's postulate
Autor: Acedo Rodríguez, Luis Tung, Michael Ming-Sha
Entidad UPV: Universitat Politècnica de València. Instituto Universitario de Matemática Multidisciplinar - Institut Universitari de Matemàtica Multidisciplinària
Universitat Politècnica de València. Departamento de Matemática Aplicada - Departament de Matemàtica Aplicada
Fecha difusión:
Resumen:
The gravitational redshift forms the central part of the majority of the classical tests for the general theory of relativity. It could be successfully checked even in laboratory experiments on the earths surface. The ...[+]
Palabras clave: Classical electrodynamics , Classical fields , Classical tests , Covariant , Curved spacetime , Electromagnetic oscillations , Energy density , Frequency changes , General theory of relativity , Gravitational accelerations , Gravitational fields , Gravitational redshift , Laboratory experiments , Local structure , Periodic process , Propagation of electromagnetic waves , Spacetime , Electromagnetic wave propagation , Magnetic permeability , Gravitational effects
Derechos de uso: Reserva de todos los derechos
Fuente:
European Journal of Physics. (issn: 0143-0807 ) (eissn: 1361-6404 )
DOI: 10.1088/0143-0807/33/5/1073
Editorial:
European Physical Society
Versión del editor: http://dx.doi.org/10.1088/0143-0807/33/5/1073
Tipo: Artículo

References

Pound, R. V., & Rebka, G. A. (1959). Gravitational Red-Shift in Nuclear Resonance. Physical Review Letters, 3(9), 439-441. doi:10.1103/physrevlett.3.439

Okun, L. B., Selivanov, K. G., & Telegdi, V. L. (2000). On the interpretation of the redshift in a static gravitational field. American Journal of Physics, 68(2), 115-119. doi:10.1119/1.19382

Vessot, R. F. C., Levine, M. W., Mattison, E. M., Blomberg, E. L., Hoffman, T. E., Nystrom, G. U., … Wills, F. D. (1980). Test of Relativistic Gravitation with a Space-Borne Hydrogen Maser. Physical Review Letters, 45(26), 2081-2084. doi:10.1103/physrevlett.45.2081 [+]
Pound, R. V., & Rebka, G. A. (1959). Gravitational Red-Shift in Nuclear Resonance. Physical Review Letters, 3(9), 439-441. doi:10.1103/physrevlett.3.439

Okun, L. B., Selivanov, K. G., & Telegdi, V. L. (2000). On the interpretation of the redshift in a static gravitational field. American Journal of Physics, 68(2), 115-119. doi:10.1119/1.19382

Vessot, R. F. C., Levine, M. W., Mattison, E. M., Blomberg, E. L., Hoffman, T. E., Nystrom, G. U., … Wills, F. D. (1980). Test of Relativistic Gravitation with a Space-Borne Hydrogen Maser. Physical Review Letters, 45(26), 2081-2084. doi:10.1103/physrevlett.45.2081

Schaffer, S. (1979). John Michell and Black Holes. Journal for the History of Astronomy, 10(1), 42-43. doi:10.1177/002182867901000104

Desloge, E. A. (1989). Nonequivalence of a uniformly accelerating reference frame and a frame at rest in a uniform gravitational field. American Journal of Physics, 57(12), 1121-1125. doi:10.1119/1.15802

Desloge, E. A. (1990). The gravitational red shift in a uniform field. American Journal of Physics, 58(9), 856-858. doi:10.1119/1.16349

Kobakhidze, A. (2011). Gravity is not an entropic force. Physical Review D, 83(2). doi:10.1103/physrevd.83.021502

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