The ReactiveCosmoMapper is a computational engine designed to verify the Entropic Gravity hypothesis (Erik Verlinde) against observational data.
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Updated
Dec 30, 2025 - Python
The ReactiveCosmoMapper is a computational engine designed to verify the Entropic Gravity hypothesis (Erik Verlinde) against observational data.
The EntropicGravity-Py library implements a high-performance N-Body simulation engine that replaces the standard Newtonian potential with Erik Verlinde's Entropic Force model. The goal is to audit whether the observed "mass discrepancies" in galaxies can be naturally explained by the thermodynamics of spacetime info-dynamics.
The PlanckDynamics project (v1.0.0-reactive) represents a paradigm shift in cosmological modeling. By freezing the entropic coupling constant ( α = 0.47 ) and the metric compression factor ( Γ = 117.038 ), we have computationally verified a universe where the "Dark Sector" (Dark Matter and Dark Energy) is not composed of invisible particles, but is
The TARDIS/PlanckDynamics framework demonstrates that all fundamental properties of matter (mass, charge, spin) and all fundamental forces (gravitational, electromagnetic, strong) emerge from holographic thermodynamics and topological constraints.
To derive the mysterious mass hierarchy of quarks (e.g., Why is Top quark so heavy?) by mapping particle generations to Prime Knots of increasing crossing number.
First Complete Geometric Derivation of Electron Mass, Charge, and Spin from Cosmological Parameters
A computational framework for modeling and simulating epigenetic memory inheritance in bacteria using regulatory gene networks. It leverages open-source tools to explore stable, heritable states arising from transient perturbations without requiring wet-lab experiments.
This repository contains the source code, derivations, and manuscripts for the TARDIS (Topological Analysis of Recursive Dimensional Information Systems) framework. This work proposes a phenomenological extension to the Standard Model of particle physics and Cosmology, based on a single Postulate of Holographic Compression. We explore the hypothes
To explain the origin of Neutrino Mass and their huge separation from charged leptons ( 10 6 times lighter).
To synthesize the findings of the TARDIS Framework into a single, cohesive Theory of Everything. Throughout this research program, we have systematically replaced abstract "forces" and "parameters" with geometric and topological principles.
To unify Electromagnetism ($U(1)$) and the Weak Force ($SU(2)$) through Riemann-Cartan Geometry. We hypothesize that the Weinberg Angle ( sin 2 θ W ) is a geometric constant of the vacuum lattice.
To simulate and validate the existence of a universal critical mass scale ( M c ) where quantum superpositions naturally collapse due to entropic gravity / information horizon fluctuations.
To derive the spin-1/2 angular momentum of fermions ( s = ℏ / 2 ) as an emergent property of a genus-1 (toroidal) wormhole topology connecting the particle's event horizon.
A fundamental mass scale where quantum unitarity spontaneously breaks down due to interaction with the cosmological acceleration horizon.
Este repositório contém a validação computacional da hipótese de Viagem no Tempo baseada em Topologia Möbius, integrada ao framework da Física Unificada (TARDIS).
Original dataset for the article Solstitial arrangements of the precolumbian petroglyph complex of Támesis, Colombia, by Pablo Cuartas and Leidy Y. Arango and Manuel A. Izquierdo
A Hipótese de Riemann (HR) afirma que todos os zeros não triviais de $\zeta(s)$ têm parte real $\Re(s) = 1/2$. A matemática pura não conseguiu provar isso em 165 anos.
Wide binary stars at large separations show 27.7% higher orbital velocities than Newtonian prediction — exactly as MOND predicts.
To resolve the Black Hole Information Paradox by demonstrating that the event horizon acts as a unitary "Holographic Scrambler". We deduce that if the horizon dynamics are unitary, the emitted radiation (Hawking radiation) eventualy recovers all initial information, following the Page Curve.
This project generates the largest and most detailed dark matter map from the Cosmic Microwave Background (CMB) using data from the Atacama Cosmology Telescope (ACT). It leverages advanced gravitational lensing reconstruction algorithms and high-performance computing to visualize the invisible mass distribution across the universe.
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