The Ukachi Scaling Law: A Universal Framework from Quantum Decoherence to Navier-Stokes Global Regularity

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1. Verfasser: Ukachi Nmachuwku, Treasure
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Ukachi Nmachuwku, Treasure
author_facet Ukachi Nmachuwku, Treasure
contents <p>By incorporating the Ukachi decoherence operator into the<br>Navier-Stokes system, we obtain global a priori bounds on vorticity. Crucially, as<br>the artificial regularization parameter vanishes, the physical quantum noise floor<br>remains, providing perpetual smoothing that prevents finite-time singularities. The<br>proof resolves the Navier-Stokes Millennium Problem affirmatively by showing that<br>singularities are physically impossible, not merely mathematically prevented.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18436872
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Ukachi Scaling Law: A Universal Framework from Quantum Decoherence to Navier-Stokes Global Regularity
Ukachi Nmachuwku, Treasure
Cerebrospinal Fluid Proteins/cerebrospinal fluid
Fluid dynamics
Mathematics
Mathematical physics
navier stokes equation
<p>By incorporating the Ukachi decoherence operator into the<br>Navier-Stokes system, we obtain global a priori bounds on vorticity. Crucially, as<br>the artificial regularization parameter vanishes, the physical quantum noise floor<br>remains, providing perpetual smoothing that prevents finite-time singularities. The<br>proof resolves the Navier-Stokes Millennium Problem affirmatively by showing that<br>singularities are physically impossible, not merely mathematically prevented.</p>
title The Ukachi Scaling Law: A Universal Framework from Quantum Decoherence to Navier-Stokes Global Regularity
topic Cerebrospinal Fluid Proteins/cerebrospinal fluid
Fluid dynamics
Mathematics
Mathematical physics
navier stokes equation
url https://doi.org/10.5281/zenodo.18436872