(Part II): Mechanics of Displacement and Structural Stabilit

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Main Author: Moio, Dario Walter
Format: Recurso digital
Published: Zenodo 2026
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author Moio, Dario Walter
author_facet Moio, Dario Walter
contents <p>This manuscript constitutes the second phase of the Q.A.S.T. Project, expanding upon the mechanical causality established in the previous paper dated January 20th.  </p> <p>While the first part defined the origin of expansion through the Metric Exclusion Principle, this work integrates Archimedes' Principle and Newtonian impenetrability to describe the behavior of matter within a displacing metric fluid.  </p> <p>The core of this research is the postulate of the Natural Anchoring Mechanism, which defines Structural Homeostasis as the necessary mechanical condition for complex systems (galaxies) to maintain internal cohesion and operability during the accelerated evacuation of entropic residue (\epsilon_{r}). This model provides a technical solution to the paradox of structural integrity within a mechanically expanding universe.</p> <p> </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18427789
institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle (Part II): Mechanics of Displacement and Structural Stabilit
Moio, Dario Walter
Fluid Mechanics, Archimedes' Principle, Natural Anchoring, Structural Homeostasis, Galactic Cohesion, Structural Stability
<p>This manuscript constitutes the second phase of the Q.A.S.T. Project, expanding upon the mechanical causality established in the previous paper dated January 20th.  </p> <p>While the first part defined the origin of expansion through the Metric Exclusion Principle, this work integrates Archimedes' Principle and Newtonian impenetrability to describe the behavior of matter within a displacing metric fluid.  </p> <p>The core of this research is the postulate of the Natural Anchoring Mechanism, which defines Structural Homeostasis as the necessary mechanical condition for complex systems (galaxies) to maintain internal cohesion and operability during the accelerated evacuation of entropic residue (\epsilon_{r}). This model provides a technical solution to the paradox of structural integrity within a mechanically expanding universe.</p> <p> </p>
title (Part II): Mechanics of Displacement and Structural Stabilit
topic Fluid Mechanics, Archimedes' Principle, Natural Anchoring, Structural Homeostasis, Galactic Cohesion, Structural Stability
url https://doi.org/10.5281/zenodo.18427789