Chronos Theoretic Prediction of Novel Elemental Masses via Temporal Curvature Clustering

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Autore principale: Hall, Matthew
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Hall, Matthew
author_facet Hall, Matthew
contents <p>This paper expands the Chronos Sphere framework into the domain of atomic nuclei and elemental mass prediction. By leveraging the Chronos Mass Scaling Law and recursive temporal curvature quantization, the study forecasts a set of stable and quasi-stable elemental mass configurations beyond the known periodic table. These predicted masses are not constrained by traditional proton-neutron shell models but instead emerge from curvature minima—stable points in the temporal field gradient. Among the key forecasts are ultra-dense nuclei and superheavy elements, potentially stable due to their time-locked mass clustering. The work outlines methods for experimental synthesis, possible detection pathways, and the implications for transuranic research and cosmological nucleosynthesis.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16416799
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Chronos Theoretic Prediction of Novel Elemental Masses via Temporal Curvature Clustering
Hall, Matthew
Chronos Theory
elemental mass prediction
temporal curvature
superheavy elements
ultra-dense nuclei
time-locked stability
transuranic synthesis
curvature clustering
periodic table extension
isotopic prediction
Chronos Sphere
recursive dimensional shells
curvature minima
novel elements
nuclear stability forecasting
quantum time field
<p>This paper expands the Chronos Sphere framework into the domain of atomic nuclei and elemental mass prediction. By leveraging the Chronos Mass Scaling Law and recursive temporal curvature quantization, the study forecasts a set of stable and quasi-stable elemental mass configurations beyond the known periodic table. These predicted masses are not constrained by traditional proton-neutron shell models but instead emerge from curvature minima—stable points in the temporal field gradient. Among the key forecasts are ultra-dense nuclei and superheavy elements, potentially stable due to their time-locked mass clustering. The work outlines methods for experimental synthesis, possible detection pathways, and the implications for transuranic research and cosmological nucleosynthesis.</p>
title Chronos Theoretic Prediction of Novel Elemental Masses via Temporal Curvature Clustering
topic Chronos Theory
elemental mass prediction
temporal curvature
superheavy elements
ultra-dense nuclei
time-locked stability
transuranic synthesis
curvature clustering
periodic table extension
isotopic prediction
Chronos Sphere
recursive dimensional shells
curvature minima
novel elements
nuclear stability forecasting
quantum time field
url https://doi.org/10.5281/zenodo.16416799