On Two Approaches to Determining the Gravitational Forces of the Graviton Model And Its Changes at High Speeds of Motion of Bodies
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Abstract
The gravity forces (the forces of gravity attraction, gravitational attraction) of bodies play an important role in various fields of science and technology, including building mechanics. Thus, most of the major loads acting on buildings and structures are related to gravity.
These forces are determined on the basis of the law of gravity of I. Newton. However, the physical nature of the carrier of the forces of attraction in this law remains open.
In the works of the authors, the physical nature of the formation and transmission of the gravity forces is revealed on the basis of the established regularities of the formation and reactive ejection of the flows of gravitons from the body mass, followed by scattering and the action of scattered flows on the oncoming masses of bodies (conditionally on the oncoming bodies). It is shown that the mutual action of graviton flows of two bodies reduces to the law of gravity of I. Newton, provided that the third Newton's law "action equals reaction" is observed. However, the validity of the action (long-range) of this law at a distance raises questions.
In this article, we consider two approaches to the graviton formulation, in which Newton's law of gravity and his third law "action equals reaction" are performed automatically.
Taking into account the features of these approaches, we consider the development of the graviton model for bodies moving at high speeds, when the laws of the graviton model change significantly. The release of gravitons increases, which leads to compression of the body and its weighting without changing its initial mass, as well as other effects.
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