Thesis V3 - Volume 1: Mechanical Derivation of Planck's Constant from H_3O_2 Phase Condensate Dynamics: From Quantum Mystery to Hydrodynamic Action

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Main Author: benhadid, outail
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author benhadid, outail
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contents <p>Abstract:</p> <p>This thesis establishes the physical and mechanical origin of Planck's constant (h) within the framework of the V3 Architecture. While the Standard Model accepts h \approx 6.626 \times 10^{-34} \text{ J s} as an unexplained, fundamental "quantum of action" discovered through empirical observation, the V3 Model derives it from the first principles of H_3O_2 phase condensate dynamics.</p> <p>We demonstrate that Planck's constant represents the minimal rotational energy-momentum exchange (the "pulsation") of a phase vortex. By calculating the energy required to create the smallest stable displacement in the superfluid H_3O_2 substrate at the universal locking frequency, we derive the exact value of h. This work proves that quantum mechanics is not a separate realm of physics, but the result of discrete hydrodynamic events occurring within a continuous phase medium.</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 1: Mechanical Derivation of Planck's Constant from H_3O_2 Phase Condensate Dynamics: From Quantum Mystery to Hydrodynamic Action
benhadid, outail
Planck's Constant (h) H_3O_2 Phase Condensate V3 Architecture Quantum of Action Hydrodynamic Derivation Superfluid Dynamics Phase Vortex Pulsation 6.4 THz Frequency
<p>Abstract:</p> <p>This thesis establishes the physical and mechanical origin of Planck's constant (h) within the framework of the V3 Architecture. While the Standard Model accepts h \approx 6.626 \times 10^{-34} \text{ J s} as an unexplained, fundamental "quantum of action" discovered through empirical observation, the V3 Model derives it from the first principles of H_3O_2 phase condensate dynamics.</p> <p>We demonstrate that Planck's constant represents the minimal rotational energy-momentum exchange (the "pulsation") of a phase vortex. By calculating the energy required to create the smallest stable displacement in the superfluid H_3O_2 substrate at the universal locking frequency, we derive the exact value of h. This work proves that quantum mechanics is not a separate realm of physics, but the result of discrete hydrodynamic events occurring within a continuous phase medium.</p> <p>Author:</p> <p>Dr. Benhadid Outail</p> <p>ORCID:</p> <p>0009-0003-3057-9543</p>
title Thesis V3 - Volume 1: Mechanical Derivation of Planck's Constant from H_3O_2 Phase Condensate Dynamics: From Quantum Mystery to Hydrodynamic Action
topic Planck's Constant (h) H_3O_2 Phase Condensate V3 Architecture Quantum of Action Hydrodynamic Derivation Superfluid Dynamics Phase Vortex Pulsation 6.4 THz Frequency
url https://doi.org/10.5281/zenodo.19428013