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Autore principale: Percudani, Miguel
Natura: Recurso digital
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Pubblicazione: Zenodo 2025
Accesso online:https://doi.org/10.5281/zenodo.17480469
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author Percudani, Miguel
author_facet Percudani, Miguel
contents <p> This document outlines the final, successful deterministic validation of the Unified Applied Time<br> (UAT) cosmological model, which sets H0 = 73.00 km/s/Mpc and kearly = 0.96734. The validation<br> process revealed that previous optimization difficulties were not due to flaws in UAT, but rather two critical<br> methodological errors inherent to the outdated ΛCDM evaluation environment: numerical instability in<br> the χ2<br> BAO integral calculation, and contamination by unmarginalized Supernova Ia data. By correcting<br> these issues, UAT is confirmed to provide an excellent fit (χ2 = 7.926) to the critical BAO+H(z) datasets,<br> resolving the Hubble Tension</p>
format Recurso digital
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spellingShingle Verification of the Unified Applied Time (UAT) Framework: Documenting and Resolving ΛCDM Methodological Pitfalls
Percudani, Miguel
<p> This document outlines the final, successful deterministic validation of the Unified Applied Time<br> (UAT) cosmological model, which sets H0 = 73.00 km/s/Mpc and kearly = 0.96734. The validation<br> process revealed that previous optimization difficulties were not due to flaws in UAT, but rather two critical<br> methodological errors inherent to the outdated ΛCDM evaluation environment: numerical instability in<br> the χ2<br> BAO integral calculation, and contamination by unmarginalized Supernova Ia data. By correcting<br> these issues, UAT is confirmed to provide an excellent fit (χ2 = 7.926) to the critical BAO+H(z) datasets,<br> resolving the Hubble Tension</p>
title Verification of the Unified Applied Time (UAT) Framework: Documenting and Resolving ΛCDM Methodological Pitfalls
url https://doi.org/10.5281/zenodo.17480469