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Auteur principal: WAN AHMAD, WAN AZHAR
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Publié: Zenodo 2025
Accès en ligne:https://doi.org/10.5281/zenodo.17629656
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author WAN AHMAD, WAN AZHAR
author_facet WAN AHMAD, WAN AZHAR
contents <p>We resolve the Navier–Stokes existence and smoothness problem by integrating classical fluid dynamics with Semantic Unification Theory (SUT). We show that smooth solutions to the Navier–Stokes equations do not blow up in finite time. Instead, they collapse into a Planck-bounded cadence fold—a semantic horizon encoded by the Planck constant ℏ. This collapse is not a singularity but a structural limit of spacetime cadence. This limit is fundamentally necessitated by the Axiom of Computational Asymmetry (P not equal NP), which defines the minimal structural cost for non-trivial existence. The equations remain well-defined within 4D spacetime, and the apparent blow-up is a misinterpretation of cadence saturation.</p>
format Recurso digital
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institution Zenodo
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publishDate 2025
publisher Zenodo
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spellingShingle Semantic Resolution of the Navier–Stokes Problem
WAN AHMAD, WAN AZHAR
<p>We resolve the Navier–Stokes existence and smoothness problem by integrating classical fluid dynamics with Semantic Unification Theory (SUT). We show that smooth solutions to the Navier–Stokes equations do not blow up in finite time. Instead, they collapse into a Planck-bounded cadence fold—a semantic horizon encoded by the Planck constant ℏ. This collapse is not a singularity but a structural limit of spacetime cadence. This limit is fundamentally necessitated by the Axiom of Computational Asymmetry (P not equal NP), which defines the minimal structural cost for non-trivial existence. The equations remain well-defined within 4D spacetime, and the apparent blow-up is a misinterpretation of cadence saturation.</p>
title Semantic Resolution of the Navier–Stokes Problem
url https://doi.org/10.5281/zenodo.17629656