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April 21, 20260 citationsOpen Access

Mathematical Resolution of the Hubble Tension via the Nonlinearity of Continuum Phase Resistance

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TNTomáš Novotný

Key Points

  • The aim is to resolve the Hubble tension by exploring phase resistance in a clumped universe.
  • Utilized Jensen's inequality to analyze expansion rates in cosmic voids.
  • Developed a mathematical model based on the hydro-elastic nature of the universe.
  • Derived a local expansion value of H0 ≈ 74.07 km/s/Mpc.
  • Results align with independent measurements from supernova data.

Abstract

This paper offers a mathematical resolution to the Hubble tension by accounting for the nonlinearity of phase resistance in a clumped universe. Using Jensen's inequality, we demonstrate that the expansion rate in cosmic voids exceeds the homogeneous baseline extrapolated from CMB data. The model analytically derives a local expansion value of H0 ≈ 74.07 km/s/Mpc, aligning precisely with independent supernova measurements without invoking new physics. This short communication is based on the comprehensive theoretical framework 'The Universe as a Hydro-Elastic 4D Mechanism' (Archived at Zenodo: DOI 10.5281/zenodo.19616545).

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Cite This Study

Tomáš Novotný (2026) studied this question.

synapsesocial.com/papers/69e713decb99343efc98d3c4https://doi.org/10.5281/zenodo.19653188
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