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February 5, 20260 citationsOpen Access

GREST: Geometric Resistance of Expanding Space-Time

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JGJohn Gresty

Key Points

  • The aim is to derive and formulate the GREST framework to unify the Hubble Tension and Small-Scale Crisis in cosmology.
  • Development of the GREST framework using geometric properties of the FLRW metric.
  • Establishment of a global acceleration floor influenced by cosmic expansion and local gravity.
  • Analysis of galactic dynamics and large-scale cosmic flows under the new framework.
  • Introduced a zero free-parameter framework based on global observables.
  • Demonstrated that the Hubble Tension and small-scale issues are linked by a geometric property.
  • Provided a new perspective on how cosmic expansion interacts with local gravitational effects.

Abstract

AbstractThis manuscript establishes the initial derivation and formulation of the GREST (Geometric Resistance of Expanding Space-Time) framework. GREST addresses the Hubble Tension and the Small-Scale Crisis of cosmology (for example galactic rotation curves and large-scale bulk flows) as scale-dependent manifestations of a single geometric property of the expanding FLRW metric. The framework introduces a global acceleration floor (a0) set by cosmic expansion (c multiplied by H0), which interacts with local Newtonian gravity through scalar metric modulation. The theory contains zero free parameters: all constants are fixed by global observables, while state variables are independently measurable and environment-specific. Priority StatementThis deposit establishes the priority of the GREST master equation and its application to galactic dynamics and large-scale cosmic flows.

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Cite This Study

John Gresty (2026) studied this question.

synapsesocial.com/papers/69843564f1d9ada3c1fb413ahttps://doi.org/10.5281/zenodo.18463220
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