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      Deriving The Bekenstein-Hawking entropy by Statistical Mechanics and Quantization of Non-Commuting Spaces

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          Abstract

          In this paper, we derive the Bekenstein-Hawking entropy by considering a Non-Commuting two dimensional quantized space, and we will show that the Bekenstein-Hawking entropy is valid for the system (black hole) in an equilibrium state. Also, by using the entropy was obtained, we derive the Einstein and Newton gravity equation, and finally, we get an equation that is consistent with the previous results. In other words, we want to show that by using the statistical mechanics and quantization of space and the excitation of space quanta, can be obtained the Einstein and Newton gravity equation. In general, we try to show that the all equation of gravity and thermodynamics of gravitational systems have quantum and statistical origin.

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          Author and article information

          Journal
          24 November 2019
          2019-11-26
          Article
          1911.10543
          12941e76-d7b4-41ee-b478-6e45a9b6f64a

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          gr-qc

          General relativity & Quantum cosmology
          General relativity & Quantum cosmology

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