Validation of a Novel Relativistic Mass-Ratio Equation Against the Lorentz Factor: Precision Analysis and Practical Applications

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Main Author: Kumar, Arvind
Format: Recurso digital
Language:English
Published: Zenodo 2025
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author Kumar, Arvind
author_facet Kumar, Arvind
contents <p>This paper presents a novel mathematical formulation for the relativistic mass-energy relation, offering an alternative to the standard Lorentz factor. The proposed equation combines polynomial terms and an inverse cosine function, validated through numerical computations for velocities ranging from 0 to the speed of light (C). Results show negligible percentage errors .confirming consistency with Einstein’s theory. Potential applications in computational physics, education, and aerospace engineering are discussed. The work emphasizes both theoretical innovation and practical utility.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15327701
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Validation of a Novel Relativistic Mass-Ratio Equation Against the Lorentz Factor: Precision Analysis and Practical Applications
Kumar, Arvind
Relativistic mass energy relation
Lorentz factor
Alternative formulations
Numerical validation
Special relativity
Computational physics
Mathematical physics
<p>This paper presents a novel mathematical formulation for the relativistic mass-energy relation, offering an alternative to the standard Lorentz factor. The proposed equation combines polynomial terms and an inverse cosine function, validated through numerical computations for velocities ranging from 0 to the speed of light (C). Results show negligible percentage errors .confirming consistency with Einstein’s theory. Potential applications in computational physics, education, and aerospace engineering are discussed. The work emphasizes both theoretical innovation and practical utility.</p>
title Validation of a Novel Relativistic Mass-Ratio Equation Against the Lorentz Factor: Precision Analysis and Practical Applications
topic Relativistic mass energy relation
Lorentz factor
Alternative formulations
Numerical validation
Special relativity
Computational physics
Mathematical physics
url https://doi.org/10.5281/zenodo.15327701