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Dynamics of Universe Relative and absolute speed of light Aberration of light - Apparent light speed Explanation of Michelson-Morley experiment

Michael Tzoumpas

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Abstract

On a previous paper (see http://viXra.org/abs/1410.0040) it is described the structure of the isotropic space of infinite dimensions by the electrically opposite elementary units (in short: units) and, also, it is described the spherical deformation of this isotropic space as a dynamic space of finite dimensions, the Universe. Τhis first space deformation creates the cohesive forces, which cause the chaotic (huge) cohesive pressure. The allocation of these forces in the Universe, as a function of distance from the Universe center, will be developed in this paper. The explanation of Michelson-Morley experiment is based on actual and apparent equal reduction of light speed. The actual reduction of light speed happens only when light is transmitted on material moving systems, on which the cohesive pressure P0 of the proximal space is reduced. The aberration of light can be used as a detection criterion of the absolute motion. Lorentz factor is the result of a mathematical settlement of the problem encountered with the Michelson-Morley experiment. This same reduction factor (Lorentz factor) appears also in the Theory of Dynamic Space at the Galilean transformations, by calculating the actual reduction of the light speed on material moving systems, without the second postulate of Relativity.

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On a previous paper (see http://viXra.org/abs/1410.0040) it is described the structure of the isotropic space of infinite dimensions by the electrically opposite elementary units (in short: units) and, also, it is described the spherical deformation of this isotropic space as a dynamic space of finite dimensions, the Universe. Τhis first space deformation creates the cohesive forces, which cause the chaotic (huge) cohesive pressure. The allocation of these forces in the Universe, as a function of distance from the Universe center, will be developed in this paper. The explanation of Michelson-Morley experiment is based on actual and apparent equal reduction of light speed. The actual reduction of light speed happens only when light is transmitted on material moving systems, on which the cohesive pressure P0 of the proximal space is reduced. The aberration of light can be used as a detection criterion of the absolute motion. Lorentz factor is the result of a mathematical settlement of the problem encountered with the Michelson-Morley experiment. This same reduction factor (Lorentz factor) appears also in the Theory of Dynamic Space at the Galilean transformations, by calculating the actual reduction of the light speed on material moving systems, without the second postulate of Relativity.

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Available abstract

On a previous paper (see http://viXra.org/abs/1410.0040) it is described the structure of the isotropic space of infinite dimensions by the electrically opposite elementary units (in short: units) and, also, it is described the spherical deformation of this isotropic space as a dynamic space of finite dimensions, the Universe. Τhis first space deformation creates the cohesive forces, which cause the chaotic (huge) cohesive pressure. The allocation of these forces in the Universe, as a function of distance from the Universe center, will be developed in this paper. The explanation of Michelson-Morley experiment is based on actual and apparent equal reduction of light speed. The actual reduction of light speed happens only when light is transmitted on material moving systems, on which the cohesive pressure P0 of the proximal space is reduced. The aberration of light can be used as a detection criterion of the absolute motion. Lorentz factor is the result of a mathematical settlement of the problem encountered with the Michelson-Morley experiment. This same reduction factor (Lorentz factor) appears also in the Theory of Dynamic Space at the Galilean transformations, by calculating the actual reduction of the light speed on material moving systems, without the second postulate of Relativity.

Key concepts: Speed of light (cellular automaton), Physics, One-way speed of light, Isotropy, Classical mechanics, Lorentz transformation, Metric expansion of space, Universe

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