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Maiolino, R., Scholtz, J., Witstok, J., Carniani, S., D’Eugenio, F., de Graaff, A., et al. (2024) A Small and Vigorous Black Hole in the Early Universe. Nature, 627, 59-63.
https://doi.org/10.1038/s41586-024-07052-5
has been cited by the following article:
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TITLE:
Two Compartment Model of the Universe: New Source of Energy
AUTHORS:
Philip D. Houck
KEYWORDS:
Negentropy, Geometry, Linking Quantum to the Cosmic, Particle Mass Prediction, Star Rotation, Two Compartment Universe, Replacing Manifold with a Prism
JOURNAL NAME:
Journal of Modern Physics,
Vol.16 No.10,
October
22,
2025
ABSTRACT: Unresolved aspects of quantum mechanics and cosmic energy motivated the development of a two-compartment model of the universe. Building on that foundation, the present work extends the framework by formulating equations of negentropy suggesting a potential new source of energy. The two-compartment model connects the quantum with the cosmic by mass deforming geometry of the spacetime prism. Particle masses are predicted. Star rotation in various size galaxies is calculated and is consistent with observations. The source of gluon energy in Baryons is due to extreme curvature of the spacetime prism while gravity emerges from large scale curvature of the spacetime. Converting Einstein’s continuous manifold to a discrete spherical tiling prism with a thickness of Plank length adds an additional nine terms to the energy stress tensor. These terms allow properties surface tension and viscosity to explain inconsistencies. The tiling spheres of the prism generate Schrödinger waves within the prism and particles as they emerge.