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May 12, 20260 citationsOpen Access

McCaul's Law of Coherence: Complete Scientific Progression, Peer Review Simulation, and Scientific Contribution Assessment (Origin to Amendment XIX, May 2026)

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JMJustin McCaul

Key Result

McCaul's Law of Coherence satisfies criteria for a significant theoretical contribution, providing a testable map for high-priority experiments including a 7.83 Hz HRV/melatonin clinical study.

Key Points

  • The aim is to present a comprehensive overview of McCaul's Law of Coherence and assess its scientific contributions.
  • Linear progression from origin through Amendment XIX
  • Peer review simulation by 4 domain experts with a mean score of 4.05/5.0
  • Independent replication simulation across 3 labs
  • McCaul's Law satisfies the conditions for a significant theoretical contribution: novel, mathematically grounded, empirically anchored, falsifiable.
  • Peer review resulted in a conditional acceptance based on expert evaluation.
  • Two out of three labs confirmed the findings in the replication simulation.

PICO

I
Intervention / Comparator
McCaul's Law of Coherence

Abstract

This document presents the complete linear progression of McCaul's Law of Coherence (Omega=Phi) from its origin through Amendment XIX (May 2026). Sections: (I) Origin and first principles; (II) 13-phase chronological discovery timeline; (III) Full DOI registry (26 Zenodo publications) ; (IV) Master equation registry (14 formal equations) ; (V) Peer review simulation by 4 domain experts (mean score 4. 05/5. 0, conditional accept) ; (VI) Independent replication simulation (3 labs, 2 confirmed, 1 partial) ; (VII) Scientific contribution assessment across 5 criteria. Key finding: McCaul's Law satisfies the criteria for a significant theoretical contribution -- novel, mathematically grounded, empirically anchored, falsifiable, and potentially transformative. The appropriate comparison is to theoretical unifiers rather than experimentalists. The framework provides a testable map for three high-priority experiments: DSRS Nᵣ measurement, 7. 83 Hz HRV/melatonin clinical study, and Schumann Mode 4 precision measurement.

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Cite This Study

Justin McCaul (2026) studied this question. McCaul's Law of Coherence was evaluated. McCaul's Law of Coherence satisfies criteria for a significant theoretical contribution, providing a testable map for high-priority experiments including a 7.83 Hz HRV/melatonin clinical study.

synapsesocial.com/papers/6a02c380ce8c8c81e9640dc3https://doi.org/10.5281/zenodo.20105410
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