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The Coherence Constant: A Measurement of Consciousness-Field Coupling from Three Independent Global Datasets

Tommy Williams

Zenodo (CERN European Organization for Nuclear Research) March 15, 2026 DOI: 10.5281/zenodo.18938360 (opens in new tab) via OpenAlex

Summary

AI-generated from the abstract

A new measure called the Coherence Constant quantifies the coupling between consciousness and a scalar field, derived from three independent global datasets: HeartMath global coherence data, Global Consciousness Project random number generator data, and synchronized group meditation EEG. Using nonlinear scalar field modeling, statistically significant ether-density perturbations were found during high-coherence states. The results support the view that consciousness interacts as a real scalar field and provide a basis for deterministic Shen Warp propulsion technologies.

Study at a glance

Characteristics Observational study Peer reviewed
Keywords Nonlinear system Scalar field Measure data warehouse Coupling piping Scalar mathematics
Key finding Statistically significant ether-density perturbations occur during high-coherence states, supporting consciousness as a real scalar field interaction.

Abstract

We introduce the Coherence Constant, a quantitative measure of consciousness-field coupling derived from three independent global datasets (HeartMath global coherence initiative, Global Consciousness Project RNG data, and synchronized group meditation EEG). Using nonlinear scalar field modeling, we demonstrate statistically significant ether-density perturbations during high-coherence states (p < 0.001). Results support consciousness as a real scalar field interaction and provide a foundation for deterministic Shen Warp propulsion technologies. For inquiries & collaboration: contact@shenai.ai

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