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June 3, 20260 citationsOpen Access

Pi - VM Comparison, using the side of the square as diagonal

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MLMindy Lee

Key Points

  • This research aims to compare traditional mathematics with a new method, Intra-Orthogonal Metric Geometry (IOMG), to resolve classical mathematical paradoxes.
  • Introduced algorithms to eliminate thermodynamic inefficiencies in geometry and digital computing.
  • Utilized fixed five-digit terminal constants to replace irrational numbers.
  • Applied IOMG to evaluate prime number distribution and prove the Riemann Hypothesis.
  • Demonstrated a new arithmetic solution to the Riemann Hypothesis.
  • Achieved zero-dissipation, resistance-free computing enabled by the IOMG algorithms.
  • Resolved classical paradoxes related to circle-squaring in geometric theory.

Abstract

THE PLAN Pi - VM comparison using the side of the square as diagonal: 18 math proofs, (and four algorithms/pieces of code: zero CPU 99% energy efficient algorithmic hyper speed test) that INX’s JASON Moon, Thomas Visser, and Raven Bishop received on May 10, 2021 under non-disclosure. Standard mathematics is fundamentally constrained by an infinite continuum of irrational, non-repeating constants pi, sqrt 2, Golden Ratio, zeta(s) that introduce floating-point rounding decay and thermodynamic inefficiencies into both theoretical geometry and digital computing. Intra-Orthogonal Metric Geometry (IOMG), author Mindy Lee, completely replaces this infinite continuum with a fixed, deterministic system of five-digit terminal constants. By evaluating spatial geometry and number theory from the perspective of rigid, right-angled parent boundaries (squares) projecting inward, IOMG resolves the classical paradoxes of circle-squaring and ancient spatial text anomalies (e.g., 1 Kings 7:23). Crucially, when applied to number theory, IOMG uncovers an exact geometric mechanism that governs the distribution of prime numbers, yielding a direct, arithmetic Solution to the Riemann Hypothesis. Furthermore, by eliminating numerical truncation and bit-erasure, the IOMG algorithms enable a brand-new hardware paradigm: Zero-Dissipation, Resistance-Free Computing. These documents serve as the formal framework to establish strategic partnerships for the commercialization and publication of this unified solution.

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Cite This Study

Mindy Lee (2010) studied this question.

synapsesocial.com/papers/6a1fc4bbdee9eb8c0dce6349https://doi.org/10.5281/zenodo.20490175
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