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March 7, 20260 citationsOpen Access

Unifying Quantum Mechanics and Gravity via the Inverse Einstein Protocol- The Non-Local Potential as Pure Energy Substrate - Formal Disputatio.pdf

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DMDiego Jose Merizalde

Key Points

  • The aim is to unify quantum mechanics and general relativity by redefining core principles of both fields.
  • Introduced a deductive approach to unify quantum mechanics and general relativity.
  • Inverted Einstein's mass-energy equation to define c^2 as a Universal Deceleration Filter.
  • Analyzed the role of electromagnetic fields in localization and universe growth.
  • Explored gravity as an emergent property from a dynamo torque mechanism in spacetime.
  • Provided empirical predictions for the Event Horizon Telescope data.
  • Identified the electromagnetic substrate as key to localization within the universe.
  • Proposed that gravity arises from classical mechanical behaviors rather than a primary force.
  • Clarified the measurement problem in quantum mechanics through the non-local to localized mass transition.
  • Demonstrated a new framework for galaxy formation in the early universe through division processes.

Abstract

Title: Unifying Quantum Mechanics and Gravity via the Inverse Einstein Protocol Description / Abstract This formal disputatio provides a deductive unification of quantum mechanics and general relativity by shifting the cosmological paradigm from inductive field-mapping to a forensic mechanical framework. By inverting Einstein’s mass-energy equivalence to m = E/c², this paper identifies the constant c² as a Universal Deceleration Filter—a resistive membrane that precipitates non-local, pure energy (potential state) into discrete, localized mass. Key Theoretical Resolutions: The EM Womb: Identifies electromagnetic fields (the 99. 99% substrate) as the holding medium for localization, regulating the growth of the universe as a singular organism. Emergent Gravity: Proposes that gravity is not a primary force but an emergent classical-mechanical result of the Exitus-Reditus dynamo torque curving a toroidal spacetime manifold. Quantum Localization: Resolves the "measurement problem" by defining quantum collapse as the mechanical deceleration of non-local potential into finite mass via the c² filter. Galactic Meiosis: Accounts for the observed maturity of early-universe galaxies (e. g. , MACS0416Y1) through an organismic division process rather than chaotic accretion. Empirical Falsifiability: Provides testable predictions for upcoming Event Horizon Telescope (EHT) data, specifically regarding "photon ring fuzziness" due to the lack of a sharp physical singularity. This framework aligns with recent 2024–2025 theories on emergent gravity and quantum entanglement, moving physics away from ad-hoc fields and toward a logical, self-regulating "render".

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Cite This Study

Diego Jose Merizalde (2026) studied this question.

synapsesocial.com/papers/69abc1b45af8044f7a4eaa06https://doi.org/10.5281/zenodo.18875077
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The Inverse Einstein Protocol: A Universal Unified Theory (Updated Version)2026
  2. 2Quantum extensions of bi-conformal scalar-tensor gravity: particles as spacetime resonances, the Bernoulli mechanism for gravity, and falsifiable predictions2026
  3. 3The Inverse Einstein Protocol: A Universal Unified Theory2026
  4. 4A New Formulation of Gravity2026
  5. 5Quantized Proper Time and Gravity as Resynchronization: A Minimal Discrete-Time Framework for Singularities and Quantum Corrections2025