z-logo
open-access-imgOpen Access
Quantum Theory of Gravity and Arthur Eddingtons Fundamental Theory
Author(s) -
Konstantinov Si
Publication year - 2021
Publication title -
journal of biomedical research and environmental sciences
Language(s) - English
Resource type - Journals
ISSN - 2766-2276
DOI - 10.37871/jbres1353
Subject(s) - physics , quantum gravity , equivalence principle (geometric) , general relativity , theoretical physics , hořava–lifshitz gravity , gravitation , dark matter , classical mechanics , astrophysics , quantum , quantum mechanics , quantum dynamics , quantum process
For the first time, the article presents the Quantum Theory of Gravity, covering not only the microcosm of elementary particles, but also the macrocosm of planets, stars and black holes. This relational approach to gravity was consistently presented in Arthur Eddington's monograph “Fundamental Theory”. In the theory of quantum gravity proposes to consider instead of gravity holes in the curved space-time of Einstein's general relativity, gravitational funnels formed by the rotation of planets, stars and galaxies in a dark matter halo. The change in the gravitational potential in the funnels occurs instantly in all areas of the gravitational funnel space in accordance with the pressure gradient described by the Euler-Bernoulli equation for superfluid continuous media. The new cosmological theory represents the evolution of the universe and dark holes without a singularity. The disordered alternation of the processes of contraction and expansion of individual regions of the infinite Universe realizes the circulation of baryonic and dark matter, which allows it to exist indefinitely, bypassing the state of equilibrium. Numerical modeling allows us to assert that the theory of quantum gravity is the most reliable of the three generally accepted theories of gravity.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here