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May 7, 20260 citationsOpen Access

GF-HRPreprintᵥ2HubbleTensionKimHeerim₂026

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HKHeerim Brian Kim

Key Points

  • This work aims to present a unified framework for understanding cosmic phenomena using GF-HR Space Fluid Dynamics.
  • Developed a theoretical model based on axioms of space as a fluid.
  • Derived governing equations from Navier-Stokes equations.
  • Analyzed implications for cosmic acceleration and galaxy dynamics.
  • Predicted Hubble constant H0,local = 73.0 km s−1 Mpc−1, matching observations without free parameters.
  • Showed galaxy rotation curve flattening without invoking dark matter.
  • Outlined cosmic acceleration mechanisms without requiring dark energy.

Abstract

Abstract. We propose GF‑HR Space Fluid Dynamics, a unified framework grounded in three axioms: (I) space is a compressible fluid with density ρs and dynamic viscosity µs; (II) atter is a cavitation vortex core torn from the space fluid; (III) c equals the maximum elastic propagation speed of the space fluid. From these axioms and the Navier‑Stokes quations we derive: (1) µs ≈ 1. 124×109 Pa · s via ¯h = µsVc; (2) m = 1/2 ρsVc (electron rest energy error < 0. 01%) ; (3) the GF‑HR governing equations (GF‑HR I and II) that reinterpret the N‑S blow‑up as mass creation; (4) gravity as a Bernoulli low‑pressure zone, recovering F = −GmM/r²; (5) galaxy rotation curve flattening without dark matter; (6) cosmic acceleration without dark energy; and (7) quantitative resolution of the Hubble tension: the space fluid elastic term predicts H0, local = √ (H0, CMB² + cₛ²) = √ (67. 4) ² + (28. 042) ² ≈ 73. 0 km s−1 Mpc−1, matching the Cepheid/SN Ia measurement exactly with no free parameters. The fine‑structure constant is derived as α = (re/a0) ² ≈ 7. 293 × 10^−3 (error< 0. 05%). All results follow from µs, ρs, Vc

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Cite This Study

Heerim Brian Kim (2026) studied this question.

synapsesocial.com/papers/69fbe382164b5133a91a2d5bhttps://doi.org/10.5281/zenodo.20041765
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1GF-HR_Preprint_v2_HubbleTension_KimHeerim_20262026
  2. 2GF-HR_SpaceFluidDynamics_Preprint_KimHeerim_20262026
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  4. 4The Expansion Freedom Principle v6.2: Hierarchical Effective Flux Areas, Generalized Inertial Motion, Natural Gravitational Boundaries, and the Hubble Tension2026
  5. 5The Expansion Freedom Principle v1.2: Hierarchical Effective Flux Areas, Generalized Inertial Motion, Natural Gravitational Boundaries, and the Hubble Tension2026