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March 10, 20260 citationsOpen Access

FUH Empirical Evidence JWST ALMA 2026

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ASAlexander Shlyapik

Key Points

  • This addendum aims to provide empirical evidence supporting the Fermionic Universe Hypothesis (FUH) through observations from 2026.
  • Analysis of morphological maturity of galaxies at high redshifts using JWST data.
  • Investigation of thermal overpressure in protoclusters through ALMA observations.
  • Interpretation of cluster cold front stability from Chandra data.
  • Demonstrated that the extended FUH cosmic timeline explains high redshift galaxy maturity.
  • Identified anomalies in thermal overpressure as indicators of dynamic viscosity.
  • Confirmed that viscous condensate influences the hydrodynamic evolution of the Universe.

Abstract

This empirical addendum presents new evidence for the Fermionic Universe Hypothesis (FUH) derived from early 2026 observations. The study demonstrates that the morphological maturity of galaxies at high redshifts (JWST, z > 10) is naturally explained within the extended FUH cosmic timeline (22. 5 billion years). Anomalous thermal overpressure in protoclusters (ALMA) and the structural stability of cluster cold fronts (Chandra) are interpreted as direct manifestations of the medium's dynamic viscosity (eta = 1. 2 * 10^-15 Pa s). Collectively, these data points confirm that the viscous condensate is an active hydrodynamic agent dictating the visible evolution of the Universe and resolving the fundamental chronological and thermal paradoxes of the standard model.

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Cite This Study

Alexander Shlyapik (2026) studied this question.

synapsesocial.com/papers/69af95b470916d39fea4d89chttps://doi.org/10.5281/zenodo.18916021
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