Paper
22 August 2000 Statistical description of gravitational field: a new approach
Alexander M. Krot
Author Affiliations +
Abstract
A model of slow-flowing-in time gravitational compression of a spheroidal body has been considered. The pressure inside a spheroidal body has been calculated at mechanical unstable equilibrium, and the internal energy connected with it has been shown to be 3 times less than the potential energy of the gravitating spheroidal body. Time equations have been derived for a slow-flowing gravitational compression of spheroidal body in the vicinity of unstable equilibrium state. Also, has been deduced a thermodynamic relation whereby the gravitational thermodynamic potential has been determined. Two thirds of gravitational potential energy have been shown to be consumed in the substance mass transfer inside the spheroidal body due to the gravitational thermodynamic potential. The density of the mass flow has been introduced for the slow-gravitational spheroidal body.
© (2000) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Alexander M. Krot "Statistical description of gravitational field: a new approach", Proc. SPIE 4038, Detection and Remediation Technologies for Mines and Minelike Targets V, (22 August 2000); https://doi.org/10.1117/12.396216
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Cited by 5 scholarly publications.
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KEYWORDS
Thermodynamics

Particles

Diffusion

Liquids

Optical spheres

Spherical lenses

Differential equations

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