Foundation Drawing - Deriving the Standard Model from Pure Geometry

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Autor principal: Peck, Sally
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2025
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author Peck, Sally
author_facet Peck, Sally
contents <div dir="auto"> <h2>Brief Overview</h2> </div> <p dir="auto"><strong>Foundation Drawing</strong> is a scientific software repository that accompanies the research paper <em>"The Fine Structure Constant from Planck-Scale Geometry."</em></p> <p dir="auto">It implements a novel framework based on geometry that derives the fundamental parameters of the Standard Model (couplings, masses, mixing angles) and uses absolutely <strong>zero free parameters</strong>.</p> <p dir="auto">It is called <strong>FoundationDrawing</strong>, a play on words referencing the foundational geometry of the universe and simple structures that look as if they were merely "hand-drawn."</p> <div dir="auto"> <h2>Key Achievements</h2> </div> <p dir="auto">This code verifies 32 physical quantities (covering the complete set of <strong>26 Standard Model fundamental parameters, including 6 derived physical quantities such as - specific masses of the Proton and W boson)</strong>. <strong>27 of the 32 predictions</strong> match experimental consensus to within 0.01% error.</p> <p dir="auto">Prior calculations for α relied on running differential equations from high energy to low energy, AdS/CFT methods, or unexplained numbers. Almost no one has a closed-form geometric derivation for sin2⁡θW or the Cabibbo angle that matches experimental values.</p> <p dir="auto">Unlike standard numerical fits or ad hoc justifications, this code computes physical constants exclusively from the combinatorial geometry of a single primitive shape: <strong>an equilateral triangle sharing vertices with a semicircular arc.</strong></p>
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language eng
publishDate 2025
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spellingShingle Foundation Drawing - Deriving the Standard Model from Pure Geometry
Peck, Sally
Theoretical physics
Fine structure constant
Planck scale
Geometric unification
Alpha
Weinberg angle
Cabibbo angle
Proton-electron mass ratio
Lattice geometry
Particle physics
Quantum physics
Mathematical physics
Geometry
Physics
<div dir="auto"> <h2>Brief Overview</h2> </div> <p dir="auto"><strong>Foundation Drawing</strong> is a scientific software repository that accompanies the research paper <em>"The Fine Structure Constant from Planck-Scale Geometry."</em></p> <p dir="auto">It implements a novel framework based on geometry that derives the fundamental parameters of the Standard Model (couplings, masses, mixing angles) and uses absolutely <strong>zero free parameters</strong>.</p> <p dir="auto">It is called <strong>FoundationDrawing</strong>, a play on words referencing the foundational geometry of the universe and simple structures that look as if they were merely "hand-drawn."</p> <div dir="auto"> <h2>Key Achievements</h2> </div> <p dir="auto">This code verifies 32 physical quantities (covering the complete set of <strong>26 Standard Model fundamental parameters, including 6 derived physical quantities such as - specific masses of the Proton and W boson)</strong>. <strong>27 of the 32 predictions</strong> match experimental consensus to within 0.01% error.</p> <p dir="auto">Prior calculations for α relied on running differential equations from high energy to low energy, AdS/CFT methods, or unexplained numbers. Almost no one has a closed-form geometric derivation for sin2⁡θW or the Cabibbo angle that matches experimental values.</p> <p dir="auto">Unlike standard numerical fits or ad hoc justifications, this code computes physical constants exclusively from the combinatorial geometry of a single primitive shape: <strong>an equilateral triangle sharing vertices with a semicircular arc.</strong></p>
title Foundation Drawing - Deriving the Standard Model from Pure Geometry
topic Theoretical physics
Fine structure constant
Planck scale
Geometric unification
Alpha
Weinberg angle
Cabibbo angle
Proton-electron mass ratio
Lattice geometry
Particle physics
Quantum physics
Mathematical physics
Geometry
Physics
url https://doi.org/10.5281/zenodo.17922227