{"id":391,"date":"2025-08-26T12:10:58","date_gmt":"2025-08-26T10:10:58","guid":{"rendered":"https:\/\/qfunity.com\/?page_id=391"},"modified":"2025-12-29T13:25:09","modified_gmt":"2025-12-29T12:25:09","slug":"proof-requests","status":"publish","type":"page","link":"https:\/\/qfunity.com\/index.php\/proof-requests\/","title":{"rendered":""},"content":{"rendered":"\n<!DOCTYPE html>\n<html lang=\"en\">\n<head>\n    <meta charset=\"UTF-8\">\n    <meta name=\"viewport\" content=\"width=device-width, initial-scale=1.0\">\n    <title>QFunity &#8211; Complete List of Proof Requests<\/title>\n    <script src=\"https:\/\/polyfill.io\/v3\/polyfill.min.js?features=es6\"><\/script>\n    <script id=\"MathJax-script\" async src=\"https:\/\/cdn.jsdelivr.net\/npm\/mathjax@3\/es5\/tex-mml-chtml.js\"><\/script>\n    <style>\n        :root {\n            --primary-color: #1a237e;\n            --secondary-color: #0d47a1;\n            --accent-color: #b71c1c;\n            --light-color: #e8eaf6;\n            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var(--primary-color);\n            font-size: 1.8rem;\n            margin-bottom: 1.5rem;\n            text-align: center;\n            position: relative;\n            font-weight: 400;\n        }\n        .section-title:after {\n            content: \"\";\n            display: block;\n            width: 60px;\n            height: 2px;\n            background: var(--accent-color);\n            margin: 15px auto;\n        }\n        .theory-principle {\n            background-color: white;\n            border-radius: 4px;\n            box-shadow: 0 2px 5px rgba(0,0,0,0.1);\n            padding: 1.5rem;\n            margin-bottom: 1.5rem;\n        }\n        .step {\n            margin-bottom: 1.5rem;\n            padding: 1rem;\n            background-color: var(--light-color);\n            border-left: 4px solid var(--accent-color);\n        }\n        .equation-box {\n            background-color: var(--dark-color);\n            color: white;\n            padding: 1rem;\n            border-radius: 4px;\n            margin: 1rem 0;\n            text-align: center;\n            font-family: 'Courier New', monospace;\n        }\n        .experiment-group {\n            margin-bottom: 2rem;\n        }\n        .group-title {\n            color: var(--secondary-color);\n            font-size: 1.5rem;\n            margin-bottom: 1rem;\n            border-bottom: 2px solid var(--accent-color);\n            padding-bottom: 0.5rem;\n        }\n        .prediction-link {\n            color: var(--primary-color);\n            text-decoration: none;\n            font-weight: bold;\n        }\n        .prediction-link:hover {\n            text-decoration: underline;\n        }\n    <\/style>\n<\/head>\n<body>\n    <div class=\"container\">\n        <section class=\"hero\">\n            <h1>QFunity &#8211; Complete List of Proof Requests<\/h1>\n            <p>This page compiles all testable predictions and proof requests from the QFunity framework, grouped by experimental nature (e.g., LHC, LIGO).<\/p>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">LHC (Large Hadron Collider) Predictions<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">High-Energy Physics Tests<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <strong>Step 1: Muon g-2 Anomaly<\/strong>\n                        <p>Prediction: Muon g-2 anomaly from non-zero principle, matching Fermilab data: \\(\\Delta a_\\mu \\approx 2.5 \\times 10^{-9}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Delta a_\\mu = -2 \\cdot \\frac{\\epsilon^2_{\\text{weak}}}{\\ell_P^2} \\approx 2.5 \\times 10^{-9}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/zero\/\" class=\"prediction-link\">Link to Zero: The Forbidden Number<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 2: Non-Local Correlations<\/strong>\n                        <p>Prediction: Non-local correlations at \\(\\epsilon \\sim \\ell_P\\) in high-energy experiments, indicating EPT interactions.<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\lambda_{\\text{dB}} = \\frac{h}{p} \\left(1 + \\frac{\\ell_P^2}{\\epsilon^2}\\right)^{-1}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/wave-nature\/\" class=\"prediction-link\">Link to Wave Nature<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 3: MET and Soft Photons<\/strong>\n                        <p>Prediction: Missing transverse energy (MET) and soft photons (\u22653\u03c3 deviation) from micro-EPT nucleation.<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\nabla \\times \\Omega_{\\text{QF}} = \\kappa \\rho_{\\text{vac}} \\mathbf{v} \\times \\hat{\\mathbf{s}}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/micro-ept\/\" class=\"prediction-link\">Link to Micro EPTs<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 4: Vacuum Decay MET Signature<\/strong>\n                        <p>Prediction: MET signature in vacuum decay: \\(E_{\\text{MET}} = 100\u2013150 \\, \\text{GeV}\\), with \\(\\chi^2 < 7.81\\) (p=0.05).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\chi^2 = \\sum \\frac{(O_i &#8211; E_i)^2}{\\sigma_i^2} < 7.81 \\, (p = 0.05)\\]\n                        <\/div>\n                        <p><a href=\"index.php\/vacuum-decay\/\" class=\"prediction-link\">Link to Vacuum Decay<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 5: Gauge Unification Evidence<\/strong>\n                        <p>Prediction: Unification of forces at high energies, testable via extra-dimensional signatures at \\(\\epsilon \\sim 10^{16} \\, \\text{GeV}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[G_{\\text{unified}} = \\frac{\\hbar c}{M_{\\text{Planck}}^2} \\cdot \\left(1 + \\frac{\\epsilon_{\\text{extra}}}{\\ell_P}\\right)\\]\n                        <\/div>\n                        <p><a href=\"index.php\/gauge-unification\/\" class=\"prediction-link\">Link to Gauge Unification<\/a><\/p>\n                        <p><a href=\"https:\/\/home.cern\/science\/physics\/string-theory\" class=\"prediction-link\" target=\"_blank\">External: CERN String Theory<\/a><\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">LIGO\/Virgo (Gravitational Waves) Predictions<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">Gravitational Wave Anomalies<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <strong>Step 1: Black Hole EPT Frequency Shifts<\/strong>\n                        <p>Prediction: \\(\\epsilon\\)-dependent shifts in GW frequencies from black hole mergers.<\/p>\n                        <div class=\"equation-box\">\n                            \\[f_{\\text{GW}} \\propto \\frac{\\omega}{\\epsilon^2}, \\quad \\Delta f \\sim \\frac{\\partial f_{\\text{GW}}}{\\partial \\epsilon} \\Delta \\epsilon\\]\n                        <\/div>\n                        <p><a href=\"index.php\/black-hole-ept\/\" class=\"prediction-link\">Link to Black Hole EPT<\/a><\/p>\n                        <p><a href=\"https:\/\/eventhorizontelescope.org\/\" class=\"prediction-link\" target=\"_blank\">External: Event Horizon Telescope<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 2: White Dwarf Merger Torsion<\/strong>\n                        <p>Prediction: Torsion oscillations in white dwarf mergers, detectable with LISA.<\/p>\n                        <div class=\"equation-box\">\n                            \\[M_{\\text{eff}} = M_{\\text{Ch}} \\times (1 + \\alpha_{\\text{QF}} \\cdot \\omega^2)\\]\n                        <\/div>\n                        <p><a href=\"index.php\/white-dwarf\/\" class=\"prediction-link\">Link to White Dwarf Mergers<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 3: Neutron Star Reconfiguration<\/strong>\n                        <p>Prediction: GW anomalies from neutron star phases, detectable with LISA\/Chandra.<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\tau = \\hbar \/ \\Delta E_{\\text{QF}}\\]\n                        <\/div>\n                        <ul>\n                            <li>LISA: \\(\\delta v\/c \\sim 10^{-6}\\) for \\(\\kappa=10^{-3}\\)<\/li>\n                            <li>Chandra: \\(f_{\\text{QF}} = \\kappa c^3\/GM\\)<\/li>\n                        <\/ul>\n                        <p><a href=\"index.php\/neutron-star-reconfiguration\/\" class=\"prediction-link\">Link to Neutron Star Reconfiguration<\/a><\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">JWST (James Webb Space Telescope) Predictions<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">Cosmic Evolution and Spectral Analysis<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <strong>Step 1: Spectral Line Broadening<\/strong>\n                        <p>Prediction: Broadening based on observer-scale dependency.<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Delta \\lambda = \\lambda_0 \\cdot \\left( \\frac{\\epsilon_{\\text{obs}}}{\\lambda_0} \\right)^{1\/3}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/observer\/\" class=\"prediction-link\">Link to Observer-Scale Dependency<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 2: Early Universe Metals<\/strong>\n                        <p>Prediction: Metals at \\(z > 10\\) from micro-bangs, with Fe\/H \\(\\sim 10^{-4}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\frac{\\text{Fe}}{\\text{H}} \\sim \\exp\\left(-\\frac{\\epsilon_{\\text{hadron}}}{\\epsilon_{\\text{electroweak}}}\\right)\\]\n                        <\/div>\n                        <p><a href=\"index.php\/jwst\/\" class=\"prediction-link\">Link to JWST Discoveries<\/a><\/p>\n                        <p><a href=\"https:\/\/www.jwst.nasa.gov\/\" class=\"prediction-link\" target=\"_blank\">External: JWST Official Site<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 3: Vacuum Decay Spectral Shifts<\/strong>\n                        <p>Prediction: \\(\\epsilon\\)-dependent spectral shifts.<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Delta \\lambda \\propto \\epsilon^{1\/3}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/vacuum-decay\/\" class=\"prediction-link\">Link to Vacuum Decay<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 4: V883 Orionis Molecules<\/strong>\n                        <p>Prediction: 26 complex organic molecules with enhanced abundance.<\/p>\n                        <div class=\"equation-box\">\n                            \\[P_{\\text{COM}} \\sim \\epsilon^{1\/3} \\times \\exp(-E_{\\text{bind}}\/kT)\\]\n                        <\/div>\n                        <p>Spectral signatures at 230 GHz (ALMA) and 10-20 \\(\\mu\\text{m}\\) (JWST MIRI)<\/p>\n                        <p><a href=\"index.php\/v883-orionis\/\" class=\"prediction-link\">Link to V883 Orionis<\/a><\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">CMB (Cosmic Microwave Background) Predictions<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">Cosmic Background Signatures<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <strong>Step 1: B-Mode Polarization<\/strong>\n                        <p>Prediction: Rotational EPT signatures with \\(D_f \\approx 2.7\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[D_f \\approx 2.7\\]\n                        <\/div>\n                        <p><a href=\"index.php\/future\/\" class=\"prediction-link\">Link to The Fractal Multiverse<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 2: Holographic White Noise<\/strong>\n                        <p>Prediction: Low-\u2113 spectra with \\(\\mathcal{P} \\lesssim 9 \\times 10^{-14}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\mathcal{P} \\lesssim 9 \\times 10^{-14}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/zero-modes\/\" class=\"prediction-link\">Link to Zero Modes<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 3: Primordial Monopole<\/strong>\n                        <p>Prediction: Anisotropies with \\(d_{\\text{max}} \\propto Q^{1\/4}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[d_{\\text{max}} \\propto Q^{1\/4}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/zero-modes\/\" class=\"prediction-link\">Link to Zero Modes<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 4: Fractal Power Spectrum<\/strong>\n                        <p>Prediction: Spectrum with \\(\\mathcal{F}_{\\text{fractal}}(\\ell) \\propto \\ell^{-3\/2} \\cdot \\cos(2\\pi \\epsilon \\ell \/ r_H)\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\mathcal{F}_{\\text{fractal}}(\\ell) \\propto \\ell^{-3\/2} \\cdot \\cos\\left(2\\pi \\epsilon \\ell \/ r_H\\right)\\]\n                        <\/div>\n                        <p><a href=\"index.php\/zero-modes\/\" class=\"prediction-link\">Link to Zero Modes<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 5: Micro-Bang Fluctuations<\/strong>\n                        <p>Prediction: Fluctuations with \\(\\Delta T\/T \\sim \\epsilon^2\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Delta T\/T \\sim \\epsilon^2\\]\n                        <\/div>\n                        <p><a href=\"index.php\/micro-ept\/\" class=\"prediction-link\">Link to Micro EPTs<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 6: Echoes of Torsion<\/strong>\n                        <p>Prediction: Anisotropies as echoes of \\(\\hat{\\mathbb{B}}_\\epsilon \\Psi\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\hat{\\mathbb{B}}_\\epsilon \\Psi\\]\n                        <\/div>\n                        <p><a href=\"index.php\/jwst\/\" class=\"prediction-link\">Link to JWST Discoveries<\/a><\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">IceCube (Neutrino Observatory) Predictions<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">Neutrino Anomalies<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <strong>Step 1: Primordial Neutrino Spectra<\/strong>\n                        <p>Prediction: Anomalous energy spectra with \\(P(x \\in [-\\epsilon\/2, \\epsilon\/2]) = \\epsilon \\cdot \\rho(0)\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[P(x \\in [-\\epsilon\/2, \\epsilon\/2]) = \\epsilon \\cdot \\rho(0)\\]\n                        <\/div>\n                        <p><a href=\"index.php\/micro-ept\/\" class=\"prediction-link\">Link to Micro EPTs<\/a><\/p>\n                        <p><a href=\"https:\/\/icecube.wisc.edu\/\" class=\"prediction-link\" target=\"_blank\">External: IceCube Observatory<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 2: Supernova Neutrinos<\/strong>\n                        <p>Prediction: Neutrinos with near-pristine information, \\(c&rsquo; = \\frac{\\ell_P \\sqrt{\\omega_{\\text{eff}}&rsquo;}}{\\sqrt{\\Lambda}}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[c&rsquo; = \\frac{\\ell_P \\sqrt{\\omega_{\\text{eff}}&rsquo;}}{\\sqrt{\\Lambda}}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/qfunity-and-c\/\" class=\"prediction-link\">Link to Emergence of Causality<\/a><\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">Other Experiments (Fermilab, Casimir, Neutron Interferometry, etc.) Predictions<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">Diverse Experimental Tests<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <strong>Step 1: Fermilab Muon g-2<\/strong>\n                        <p>Prediction: Anomaly matching Fermilab data, \\(\\Delta a_\\mu \\approx 2.5 \\times 10^{-9}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Delta a_\\mu \\approx 2.5 \\times 10^{-9}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/zero\/\" class=\"prediction-link\">Link to Zero: The Forbidden Number<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 2: Casimir Polarization<\/strong>\n                        <p>Prediction: Spontaneous polarization from vacuum fluctuations, \\(\\Omega_{\\text{QF}} = \\frac{\\kappa E_{\\text{coll}}}{\\epsilon^2}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Omega_{\\text{QF}} = \\frac{\\kappa E_{\\text{coll}}}{\\epsilon^2}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/micro-ept\/\" class=\"prediction-link\">Link to Micro EPTs<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 3: Neutron Interferometry Torsion<\/strong>\n                        <p>Prediction: Torsion signatures, \\(\\lambda_{\\text{dB}} = \\frac{h}{p} \\left(1 + \\frac{\\ell_P^2}{\\epsilon^2}\\right)^{-1}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\lambda_{\\text{dB}} = \\frac{h}{p} \\left(1 + \\frac{\\ell_P^2}{\\epsilon^2}\\right)^{-1}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/wave-nature\/\" class=\"prediction-link\">Link to Wave Nature<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 4: DNA Raman Spectra<\/strong>\n                        <p>Prediction: Fractal spectra, \\(\\Delta \\lambda \\propto \\epsilon^{1\/3}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Delta \\lambda \\propto \\epsilon^{1\/3}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/gauge-unification\/\" class=\"prediction-link\">Link to Gauge Unification<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 5: X-Ray Pulsations<\/strong>\n                        <p>Prediction: Pulsations from neutron stars, \\(\\nu_{\\text{pulse}} \\sim 10^2 \\, \\text{Hz}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\nu_{\\text{pulse}} \\sim 10^2 \\, \\text{Hz}\\]\n                        <\/div>\n                        <p>Chandra: \\(f_{\\text{QF}} = \\kappa c^3\/GM\\)<\/p>\n                        <p><a href=\"index.php\/neutron-star-reconfiguration\/\" class=\"prediction-link\">Link to Neutron Star Reconfiguration<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 6: Nernst Theorem Vacuum Stability<\/strong>\n                        <p>Prediction: Vacuum decay stability via Nernst Theorem, \\(\\Delta S = 0\\) at absolute zero.<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\Delta S = 0\\]\n                        <\/div>\n                        <p><a href=\"index.php\/nernst-theorem\/\" class=\"prediction-link\">Link to Nernst Theorem<\/a><\/p>\n                        <p><a href=\"https:\/\/goldbook.iupac.org\/terms\/view\/N04148\" class=\"prediction-link\" target=\"_blank\">External: IUPAC Nernst Theorem<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 7: Ten Martini Proof<\/strong>\n                        <p>Prediction: Mathematical coherence of EPT, \\(\\int_{-\\infty}^{\\infty} \\psi_{\\text{EPT}}(x) dx = 1\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\int_{-\\infty}^{\\infty} \\psi_{\\text{EPT}}(x) dx = 1\\]\n                        <\/div>\n                        <p><a href=\"index.php\/ten-martini-proof\/\" class=\"prediction-link\">Link to Ten Martini Proof<\/a><\/p>\n                        <p><a href=\"https:\/\/arxiv.org\/\" class=\"prediction-link\" target=\"_blank\">External: arXiv Mathematical Models<\/a><\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">Additional Proof Requests<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">Theoretical and Observational Challenges<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <strong>Step 1: Cosmic River Validation<\/strong>\n                        <p>Prediction: Temporal flow structure pre-Big Bang, testable via cosmological simulations.<\/p>\n                        <div class=\"equation-box\">\n                            \\[v_{\\text{cosmic}} \\propto \\frac{\\epsilon}{\\ell_P}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/cosmic_river\/\" class=\"prediction-link\">Link to Cosmic River<\/a><\/p>\n                        <p><a href=\"https:\/\/en.wikipedia.org\/wiki\/Chaotic_inflation\" class=\"prediction-link\" target=\"_blank\">External: Chaotic Inflation Theory<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 2: Dark Matter Reinterpretation<\/strong>\n                        <p>Prediction: EPT-based dark matter, \\(\\rho_{\\text{DM}} \\propto \\epsilon^{-2}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\rho_{\\text{DM}} \\propto \\epsilon^{-2}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/dark-matter\/\" class=\"prediction-link\">Link to Dark Matter<\/a><\/p>\n                        <p><a href=\"https:\/\/arxiv.org\/\" class=\"prediction-link\" target=\"_blank\">External: SDSS Data<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 3: Superluminal Effects<\/strong>\n                        <p>Prediction: Superluminal phenomena, \\(v > c\\) in EPT limit.<\/p>\n                        <div class=\"equation-box\">\n                            \\[v = c \\cdot \\left(1 + \\frac{\\epsilon}{\\ell_P}\\right)\\]\n                        <\/div>\n                        <p><a href=\"index.php\/superluminal\/\" class=\"prediction-link\">Link to Superluminal<\/a><\/p>\n                    <\/div>\n                    <div class=\"step\">\n                        <strong>Step 4: Quantum Perception<\/strong>\n                        <p>Prediction: Observer effect on reality, \\(\\psi_{\\text{obs}} \\propto \\hat{O}_{\\text{QF}}\\).<\/p>\n                        <div class=\"equation-box\">\n                            \\[\\psi_{\\text{obs}} \\propto \\hat{O}_{\\text{QF}}\\]\n                        <\/div>\n                        <p><a href=\"index.php\/quantum-perception\/\" class=\"prediction-link\">Link to Quantum Perception<\/a><\/p>\n                        <p><a href=\"https:\/\/www.aps.org\/\" class=\"prediction-link\" target=\"_blank\">External: APS Double-Slit Experiment<\/a><\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n\n        <section class=\"content-section\">\n            <div class=\"section-title\">Call to Action<\/div>\n            <div class=\"experiment-group\">\n                <h2 class=\"group-title\">Engage with QFunity<\/h2>\n                <div class=\"theory-principle\">\n                    <div class=\"step\">\n                        <p>We invite physicists, cosmologists, and researchers to engage with these proof requests. Submit findings, critiques, or collaborations via our <a href=\"index.php\/about-us\/\" class=\"prediction-link\">contact page<\/a> or academic channels. Together, let us push the boundaries of scientific understanding.<\/p>\n                    <\/div>\n                <\/div>\n            <\/div>\n        <\/section>\n    <\/div>\n    <a href=\"\/index.php\/hypotheses\/\" class=\"return-btn\">Return to Hypotheses<\/a>\n<\/body>\n<\/html>\n","protected":false},"excerpt":{"rendered":"<p>QFunity &#8211; Complete List of Proof Requests QFunity &#8211; Complete List of Proof Requests This page compiles all testable predictions and proof requests from the QFunity framework, grouped by experimental nature (e.g., LHC, LIGO). LHC (Large Hadron Collider) Predictions High-Energy Physics Tests Step 1: Muon g-2 Anomaly Prediction: Muon g-2 anomaly from non-zero principle, matching [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-391","page","type-page","status-publish","hentry"],"jetpack_sharing_enabled":true,"_links":{"self":[{"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/pages\/391","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/comments?post=391"}],"version-history":[{"count":4,"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/pages\/391\/revisions"}],"predecessor-version":[{"id":977,"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/pages\/391\/revisions\/977"}],"wp:attachment":[{"href":"https:\/\/qfunity.com\/index.php\/wp-json\/wp\/v2\/media?parent=391"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}