Preprint / Version 1

Exploration of the π-basis as a tool for solving mathematical paradoxes in theoretical physic

Applications in cosmology and quantum gravity

Authors

DOI:

https://doi.org/10.62059/LatArXiv.preprints.303

Keywords:

Physics, Universe, Pi, Cosmology, Paradoxes, Mathematics

Abstract

This article presents an innovative proposal to address fundamental paradoxes in theoretical physics in theoretical physics-especially in the fields of cosmology and quantum gravity-by adopting the numerical cosmology and quantum gravity-by adopting the numerical base π instead of the traditional decimal base. Through computational simulations, mathematical formulations, and back-of-the-envelope calculations, it is shown that incorporating π into key equations (describing phenomena such as black holes, vacuum fluctuations, the expansion of the universe, and Hawking radiation) provides results that more accurately match experimental observations. Quantitative and qualitative differences between models formulated in base 10 and those in base π are discussed, presenting numerical and graphical evidence supporting the feasibility of this new approach.

References

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Posted

2025-03-01

Data Availability Statement

Declaro que soy el autor, mi nombre es Marcelo Gallardo y dispongo la obra al público.