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External Energy Paradigm For Black Holes

General Physics 2018-11-30 v1

Abstract

A new paradigm for black holes is introduced. It is known as the External Energy Paradigm. The paradigm asserts that all energies of a black hole are external quantities; they are absent inside the horizon. These energies include constituent mass, gravitational energy, electrostatic energy, rotational energy, heat energy, etc. As a result, quantum particles with charges and spins cannot exist inside the black hole. To validate the conclusion, we derive the moment of inertia of a Schwarzschild black hole and find that it is exactly equal to mass×(Schwarzschildradius)2mass \times (Schwarzschild \,\,\, radius)^{2}, indicating that all mass of the black hole is located at the horizon. This remarkable result can resolve several long-standing paradoxes in black hole theory; such as why entropy is proportional to area and not to volume, the singularity problem, the information loss problem, and the perplexing firewall controversy.

Keywords

Cite

@article{arxiv.1811.02890,
  title  = {External Energy Paradigm For Black Holes},
  author = {Yuan K. Ha},
  journal= {arXiv preprint arXiv:1811.02890},
  year   = {2018}
}

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(9 pages)

R2 v1 2026-06-23T05:07:40.505Z