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Autore principale: Wolski, Jon
Natura: Recurso digital
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Pubblicazione: Zenodo 2026
Accesso online:https://doi.org/10.5281/zenodo.19689331
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author Wolski, Jon
author_facet Wolski, Jon
contents <p>This paper presents the <strong>Gravitational Resistance Model</strong>, a mechanical reinterpretation of planetary internal heat and time dilation. By analyzing the Earth's "unaccounted" <strong>20.3 TW</strong> heat budget, the author argues that terrestrial heat is not a primordial leftover, but an active, real-time "Gravity Tax" generated by atomic resistance to gravitational acceleration. Utilizing the <strong>Kelvin-Helmholtz Mechanism</strong> (the same math used to explain Jupiter’s heat), the theory establishes a direct mechanical link between planetary mass, thermal output, and the "system lag" commonly observed as gravitational time dilation.</p>
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institution Zenodo
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publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Gravity_is_Work_that_Planets_Resist
Wolski, Jon
<p>This paper presents the <strong>Gravitational Resistance Model</strong>, a mechanical reinterpretation of planetary internal heat and time dilation. By analyzing the Earth's "unaccounted" <strong>20.3 TW</strong> heat budget, the author argues that terrestrial heat is not a primordial leftover, but an active, real-time "Gravity Tax" generated by atomic resistance to gravitational acceleration. Utilizing the <strong>Kelvin-Helmholtz Mechanism</strong> (the same math used to explain Jupiter’s heat), the theory establishes a direct mechanical link between planetary mass, thermal output, and the "system lag" commonly observed as gravitational time dilation.</p>
title Gravity_is_Work_that_Planets_Resist
url https://doi.org/10.5281/zenodo.19689331