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June 11, 20260 citationsOpen Access

Unification of Relativistic Curvature and High-Dimensional Fluid Dynamics: Resolving Schwarzschild Metrics through the Viscous Head Loss of Current I

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RVrodrigo javier vidal

Key Points

  • This research aims to unify Einstein's field equations with a high-dimensional viscous fluid model, exploring gravitational phenomena.
  • Developed a deterministic model that combines classical physics and a 6D hydrodynamic viscous head loss framework.
  • Defined specific boundary conditions for a spherically symmetric mass to derive gravitational effects.
  • Outlined experimental protocols to test findings using topological properties of materials under radiofrequency excitation.
  • Demonstrated that the viscous drag of Current I yields effects equivalent to the Schwarzschild metric's geodesics.
  • Predicted a stepwise conformal mass reduction of exactly 0.045% (Δγ = 0.00045).
  • Established conditions for a trans-membrane phase transition observable at room temperature.

Abstract

We present a non-perturbative, deterministic unification that merges Albert Einstein’s classical field equations with the 6D Hydrodynamic Viscous Head Loss model of the Summa Teorica. By replacing abstract, empty space-time geometry with a physical, active, conducting vacuum, we demonstrate that gravitational acceleration and metric curvature are secondary macroscopic phenomena generated by the frictional drag of Current I filtering through a two-dimensional pre-Planckian simplicial membrane (\ (M₆₃\) ). We solve the specific boundary conditions for a static, spherically symmetric central mass \ (M\), proving that the resulting inverse pressure gradients match the exact geodesics of the classical Schwarzschild metric with mathematical equivalence (\ (V (P/) ₄₈₍ₒₓ₄₈₍\) ). Furthermore, we establish the definitive experimental protocol to verify this trans-membrane phase transition at room temperature (\ (293 K\) ) by exploiting the topological properties of Ditelurio de Uranio (\ (UTe₂\) ) and Nickelates (\ (La₃Ni₂O₇\) ) under a coherent \ (10. 00 MHz\) radiofrequency excitation loop. The framework successfully derives the predictable, stepwise conformal mass reduction of exactly \ (0. 045\%\) (\ (_ = 0. 00045\) ), closing the ontological gap between fluid mechanics, particle physics, and general relativity.

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rodrigo javier vidal (2026) studied this question.

synapsesocial.com/papers/6a2a50b680c8f91e7f39d212https://doi.org/10.5281/zenodo.20617005
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