CALCULATIONS OF THE MINI BLACK HOLES SIZE, PRESENT TO ZERO RESULTING POTENTIAL, IN QUANTUM GRAVITY EVTD2. PHOTONIC FIELDS RADIATED BY MASSES BLACK BODY BALANCE TEMPERATURES ARE THE GRAVITATIONAL QUANTUM FIELDS

Ileana ROŞCA, Michel CONTE

Abstract


This publication follows in this review the works [1-3]. In this paper are proposed suite and additions to the assumptions of [4-5], in quantum gravity EVTD2 [6-7], relatively to the quantum photonic gravity potential energy. The notions of black holes respectively positioned at the level of the zero resulting potential (O) of these pairs of bodies are utilized here for their energetic characteristics to determine the volume dimensions of the black holes.

These mini black holes (MBH) would be approximately estimate as very thin disks and, placed normally on the gravity centers’ axes. The study concerns the different MBH relative to the eight duos Sun and its planets [1-2] as well as the duo Earth-Moon [3].

The equivalent photonic energies, studied under the new EVTD2 hypothesis, are compacted in MBH and can be correlated with equivalent masses (by E=mc2 [8]) who, fictitiously placed to zero resulting potential, would provoke the same potential accelerations. The calculated and approximated dimensions seem naturally compliant.

Key words: Multiple black holes, photonic quantic potential, quantic photonic compacting, quantic Gravity EVTD2, quantic Substratum, EVTD2 entities theory, gravitational acceleration and compacting acceleration correlation.

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References


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