Walking Through the Verification Resources
This framework has referenced specific simulations, datasets, and code deposits throughout, instead of asking any claim to be accepted on the strength of narrative description alone. This piece gathers those resources into a single, direct walkthrough, organized by what each one actually demonstrates, so that verifying any specific claim made across this framework means locating a specific, named resource instead of searching back through dozens of separate pieces.
The Six Core Simulations
The full universe simulation demonstrates pre-ignition gravitational sorting, the Big Flare-Up cascade, post-ignition thermal equilibrium, vortex formation, and continuous CMB temperature tracking within a single running model. The vortex formation simulation demonstrates that gravitational vortices form naturally from confirmed Newtonian and relativistic physics alone, across the three formation mechanisms established in Paper Six. The galaxy gravitational sorting simulation demonstrates the emergent Hubble Law directly, producing the Pearson correlation of 0.675 and the 84% recession figure referenced repeatedly throughout this framework's discussion of galactic recession, independently verified on Google Colab. The flat rotation curve simulation demonstrates vortex dynamics producing flat galaxy rotation without any dark matter component, the outer-to-inner velocity ratio of 0.71 to 0.85 established in Paper Six. The invisible loom simulation shows pre-ignition gravitational sorting producing the cosmic web's filament structure before the Big Flare-Up occurs. And the highway analogy simulation demonstrates gravitational sorting as the literal mechanism behind galactic recession, visually, without requiring expanding space.
The Cosmological Tension Simulations
Beyond the six core simulations, this framework has referenced dedicated simulation results for several of the tensions examined in later pieces: the S8 tension simulation, producing the tomographic redshift-bin results established in Paper Thirteen; the Gunn-Peterson percolation threshold simulation, producing the transmitted flux figures established in Paper Eleven; the Integrated Sachs-Wolfe simulation, producing the supercluster and supervoid signal amplitudes established in Paper Twelve; and the SPARC galaxy rotation curve validation, checked directly against all 175 galaxies in that survey, established in Paper Eighteen.
Zenodo: Where the Code Actually Lives
The complete simulation source code referenced throughout this framework is permanently archived with a citable DOI through Zenodo, the same archival platform used to preserve a specific, unalterable version of the code underlying every result discussed here, meaning the exact version of the code producing a given result remains available indefinitely, instead of being subject to later, undocumented revision. This archival step matters specifically because it closes a common objection to computational claims in general: that code referenced in a paper might be quietly updated or altered after publication in ways that change its results without a clear record of what changed. A Zenodo deposit, tied to a specific, permanent DOI, forecloses that possibility for every code deposit referenced throughout this framework.
What Verification Actually Requires
Genuine verification of the claims made throughout this framework doesn't require taking any single paper's word for a given result. It requires downloading the relevant code deposit, running it independently, and checking whether the same output figures examined in the corresponding piece, the 0.675 correlation, the 0.71 to 0.85 velocity ratio, the specific S8 deficit percentages, actually reproduce. Several of these results have already been independently reproduced by parties outside the original research, a fact noted directly wherever it applies, instead of left as an unverified claim resting solely on the original author's own reported figures.
All DOIs linked below.