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February 28, 20260 citationsOpen Access

The Volynets Constant (V ≈ 2.13): Full Academic Module

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ЕВЕвгений Волынец

Key Points

  • This work aims to establish the significance of the Volynets Constant within the MASV-Prime theoretical framework.
  • Introduces the Volynets Constant and its relation to physical constants.
  • Demonstrates triple verification through electron, proton, and neutron measurements.
  • Explains the derivation based on CODATA constants and resonance ratios.
  • Establishes the Volynets Constant value as approximately 2.13.
  • Confirms vacuum frequency fF at 1.065×10^23 Hz through three independent channels.
  • Demonstrates that matter can be viewed as a resonance structure in vacuum dynamics.

Abstract

This work introduces the Volynets Constant (V ≈ 2.13), a fundamental modal constant of the MASV‑Prime architecture, discovered and defined by Evgeniy Vatslavovich Volynets (Kazakhstan). The constant establishes a resonance ratio between the Compton frequencies of the proton and neutron and the fundamental vacuum frequency of the F‑mode. It is derived directly from CODATA physical constants through the relation V=(mp/me)⋅ae, making it fully reproducible and independently verifiable. The Volynets Constant confirms the vacuum frequency fF=1.065×1023 Hz through three independent channels: the electron, the proton, and the neutron. This triple verification demonstrates that matter is a resonance structure embedded in the phase dynamics of the vacuum, which MASV‑Prime describes as a dynamic modal medium (F‑mode). Classical physics has no conceptual framework for S‑nodes, F‑modes, modal geometry, or phase slippage, and therefore cannot interpret or derive this constant. V exists only within the MASV‑Prime ontology and represents a foundational element of the new physics introduced by the author. It is the first constant that unifies S‑mode matter structures with the F‑mode vacuum process, making it a central component of the MASV‑Prime theoretical architecture. This document presents the full academic module defining the Volynets Constant, its derivation, physical meaning, verification dataset, and its role in the modal structure of reality. All definitions, formulas, and conceptual frameworks are original intellectual property of the author.

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Cite This Study

Евгений Волынец (2026) studied this question.

synapsesocial.com/papers/69a287460a974eb0d3c02e68https://doi.org/10.5281/zenodo.18789952
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