A Theoretical Model of Intrinsic Force as the Origin of Fundamental Interactions

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Autore principale: Ashourdan, Ali
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Ashourdan, Ali
author_facet Ashourdan, Ali
contents <p><strong>Abstract</strong></p> <p>This paper presents a theoretical model in which the fundamental forces of nature are interpreted as manifestations of a common force, termed the "intrinsic force." This fundamental force is defined based on the intrinsic properties of matter, including mass and characteristic length scale, and by applying appropriate dimensionless scaling coefficients, it enables the reconstruction of classical forces such as gravity and electromagnetism. Numerical analyses demonstrate that the model’s predictions align with known experimental values. Moreover, the order of magnitude of the strong nuclear force can be reproduced through straightforward scaling. Conceptually, this framework is consistent with theories such as general relativity, unified field theory, string theory, scale relativity, and background energy models. Additionally, an experimental test of the model at micrometer scales is proposed. This approach offers a promising step toward the simplification and unification of the description of natural forces based on the intrinsic properties of matter.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16740401
institution Zenodo
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publishDate 2025
publisher Zenodo
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spellingShingle A Theoretical Model of Intrinsic Force as the Origin of Fundamental Interactions
Ashourdan, Ali
intrinsic force, fundamental forces, theoretical model, force unification, energy density, scale invariance, theoretical physics, dimensionless coefficients, gravitational force, electromagnetic force
<p><strong>Abstract</strong></p> <p>This paper presents a theoretical model in which the fundamental forces of nature are interpreted as manifestations of a common force, termed the "intrinsic force." This fundamental force is defined based on the intrinsic properties of matter, including mass and characteristic length scale, and by applying appropriate dimensionless scaling coefficients, it enables the reconstruction of classical forces such as gravity and electromagnetism. Numerical analyses demonstrate that the model’s predictions align with known experimental values. Moreover, the order of magnitude of the strong nuclear force can be reproduced through straightforward scaling. Conceptually, this framework is consistent with theories such as general relativity, unified field theory, string theory, scale relativity, and background energy models. Additionally, an experimental test of the model at micrometer scales is proposed. This approach offers a promising step toward the simplification and unification of the description of natural forces based on the intrinsic properties of matter.</p>
title A Theoretical Model of Intrinsic Force as the Origin of Fundamental Interactions
topic intrinsic force, fundamental forces, theoretical model, force unification, energy density, scale invariance, theoretical physics, dimensionless coefficients, gravitational force, electromagnetic force
url https://doi.org/10.5281/zenodo.16740401