Abstract:This monograph presents a comprehensive, independent research framework that unifies advanced mathematics, classical/quantum mechanics, and physical biology through the Sexagesimal Harmony Algorithm (SHA) — a proprietary base-60 mathematical system engineered to analyze geometric resonances in complex systems. Guided by the thermodynamic and geometric principle of global dynamic equilibrium known as the Balance of Maat (M), this work provides innovative analytical solutions and stabilization frameworks across multiple scientific disciplines. The treatise is structured into seven operational modules and appendices encompassing:1. Historical and Geometrical Foundations: Re-evaluating the mathematical principles of ancient structures, including the informational geometry of historical scripts and artifacts.2. Multiscale Tensegrity & Biophysics: Modeling cellular and nuclear membranes as elastodynamic tensegrity systems to prevent structural failure in progressive human pathologies.3. Biomedical Engineering & Phase-Transition Control: Formulating non-invasive therapeutic interventions utilizing a biomimetic Graphene-Quartz-Boron (GQB) composite matrix. The GQB patch projects phase-modulated micro-oscillations to reverse toxic liquid-to-solid phase separation and mechanical rigidification in critical disorders, specifically Hutchinson-Gilford Progeria Syndrome (HGPS), Spinal Muscular Atrophy (SMA), Huntington's Disease (HD), and Amyotrophic Lateral Sclerosis (ALS). By mapping localized continuous stressors into a discrete, 60-node complex Hilbert space, this framework demonstrates how harmonic physical coupling can effectively bypass transcendental truncation errors, restore structural compliance, and safeguard systemic cellular and mechanical networks.
Jorge Alexander López Miranda (Fri,) studied this question.
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