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March 24, 20260 citationsOpen Access

A Universal Theory of Everything from the Pell-Chebyshev Wave Equation: Space, Time, Mass, Gravity, Dark Matter, and the Standard Model from p(λ) = λ2 −4λ+ 1

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SSS SchultzBEB ErranteJHJ Hosain

Key Points

  • This research aims to develop a parameter-free Theory of Everything using discrete number theory and polynomial structures.
  • Utilized a discrete number theory approach to derive fundamental observables.
  • Replaced continuous path integrals with a deterministic topological network.
  • Generated predictions for dark matter and cosmological fractions based on a single polynomial.
  • Unified the gauge symmetries of the Standard Model.
  • Predicted a confined dark matter sector.
  • Matched cosmological fractions with observational data without using arbitrary constants.

Abstract

This manuscript presents a completely parameter-free Theory of Everything derived entirely from discrete number theory. By replacing continuous path integrals with a deterministic, topological network, the framework natively generates the fundamental observables of physics—space, time, mass, and gravity—from the structural properties of a single polynomial. It successfully unifies the Standard Model gauge symmetries, predicts a confined dark matter sector, and yields cosmological fractions that precisely match observational data. Requiring no arbitrary constants, no renormalization, and utilizing only a single physical measurement to set the universe's energy scale, this paper offers a rigorously algebraic resolution to the foundational problems of modern quantum gravity and particle physics.

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Cite This Study

Schultz et al. (2026) studied this question.

synapsesocial.com/papers/69c229a5aeb5a845df0d4673https://doi.org/10.5281/zenodo.19169550
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