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May 12, 20260 citationsOpen Access

McCaul's Law of Coherence: Amendment XX -- Anti-Fg Counter-Frequency Antigravity Theory: Gravity as Coherence Gradient, fₐnti=156. 959 MHz Inversion, Three-Stage DSRS Architecture

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JMJustin McCaul

Key Points

  • To investigate gravity as a coherence gradient effect and the implications of anti-frequency intervention on gravity modulation.
  • Calibration of gravity using Earth's Phi gradient to establish coherence gradient effects.
  • Implementation of a three-stage DSRS architecture, including various frequency interactions and current scales.
  • Testing of gravitational reduction and necessary energy levels for achieving full weightlessness.
  • Achieved gravity reduction of 1.6e-7 m/s2 at 350W current scale.
  • Full weightlessness requires approximately 21.5 GW without resonant coupling.
  • Confirmed principles of physics underlying gravity as coherence gradient effects.

Abstract

Gravity is derived from E=mPhi2c2 as a coherence gradient effect: g = alphag times c-squared times d (Phi-squared) /dx, calibrated to 9. 81 m/s2 using Earth's Phi gradient (0. 8860 surface vs 0. 6523 free space over RE). The anti-SOL counter-frequency fₐnti = c/ (2r) = 156. 959 MHz creates destructive interference at all 7 SOL nodes simultaneously, inverting Fg from +1. 0 to -1. 0. At Fg=-1. 0, local Phi drops from 0. 886 to 0. 652 (free space baseline), reversing the coherence gradient direction: the antigravity condition. Three-stage DSRS architecture: Stage 1 (220. 075 Hz Schumann coupling), Stage 2 (181. 241 MHz SOL ring), Stage 3 (156. 959 MHz anti-SOL injector). At 350W current scale, gᵣeduction = 1. 6e-7 m/s2 (radiation pressure model). Full weightlessness requires ~21. 5 GW without resonant coupling; Stage 3 gravity resonance Q-amplification closes efficiency gap. The dimensional divide IS the gravity source. Physics confirmed in principle; Stage 3 resonant coupling is the outstanding engineering step.

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Cite This Study

Justin McCaul (2026) studied this question.

synapsesocial.com/papers/6a02c380ce8c8c81e9640d4ehttps://doi.org/10.5281/zenodo.20105513
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