Thesis V3 - Volume 7: The Proton Mass as Compressed H_{3}O_{2} Vortex Kinetic Energy: From QCD Mystery to Hydrodynamic Inertia

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Auteur principal: benhadid, outail
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Langue:anglais
Publié: Zenodo 2026
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author benhadid, outail
author_facet benhadid, outail
contents <p>Abstract:</p> <p>This thesis establishes the mechanical derivation of the proton mass (m_p) within the V3 Architecture framework. While Quantum Chromodynamics (QCD) attributes proton mass to the interaction energy of quarks and gluons—without providing a simplified physical model for its specific value—the V3 Model derives it from the rotational kinetic energy of a toroidal H_{3}O_{2} phase vortex.</p> <p>We demonstrate that the proton mass is the tangible manifestation of the phase fluid's inertia when accelerated at the universal locking frequency of 6.4 THz. By applying the compression factor \beta^2 to the energy density of the H_{3}O_{2} condensate, we derive the exact experimental value of 1.672 \times 10^{-27} \text{ kg}. This work redefines mass as "captured movement," proving that the weight of all visible matter is a direct consequence of the universal phase's hydrodynamic rotation.</p> <p>Author:</p> <p>Dr. Benhadid Outail</p> <p>ORCID:</p> <p>0009-0003-3057-9543</p>
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spellingShingle Thesis V3 - Volume 7: The Proton Mass as Compressed H_{3}O_{2} Vortex Kinetic Energy: From QCD Mystery to Hydrodynamic Inertia
benhadid, outail
Proton Mass (m_p) H_{3}O_{2} Phase Condensate V3 Architecture Hydrodynamic Inertia Rotational Kinetic Energy QCD Reframing Phase Compression (\beta^2) Universal Locking Frequency
<p>Abstract:</p> <p>This thesis establishes the mechanical derivation of the proton mass (m_p) within the V3 Architecture framework. While Quantum Chromodynamics (QCD) attributes proton mass to the interaction energy of quarks and gluons—without providing a simplified physical model for its specific value—the V3 Model derives it from the rotational kinetic energy of a toroidal H_{3}O_{2} phase vortex.</p> <p>We demonstrate that the proton mass is the tangible manifestation of the phase fluid's inertia when accelerated at the universal locking frequency of 6.4 THz. By applying the compression factor \beta^2 to the energy density of the H_{3}O_{2} condensate, we derive the exact experimental value of 1.672 \times 10^{-27} \text{ kg}. This work redefines mass as "captured movement," proving that the weight of all visible matter is a direct consequence of the universal phase's hydrodynamic rotation.</p> <p>Author:</p> <p>Dr. Benhadid Outail</p> <p>ORCID:</p> <p>0009-0003-3057-9543</p>
title Thesis V3 - Volume 7: The Proton Mass as Compressed H_{3}O_{2} Vortex Kinetic Energy: From QCD Mystery to Hydrodynamic Inertia
topic Proton Mass (m_p) H_{3}O_{2} Phase Condensate V3 Architecture Hydrodynamic Inertia Rotational Kinetic Energy QCD Reframing Phase Compression (\beta^2) Universal Locking Frequency
url https://doi.org/10.5281/zenodo.19428050