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Stan’s Legacy

Figure (3-42)

Hydrogen Fracturing Process

How it is written

  • (3-42) 11×

Drawings 8

On this figure 7

Where it is named · 11

Hydrogen Fracturing Process

  1. These "'abnormal" and "unstable" conditions coupled with thermal interaction (gas ignition) under gas compression (137) of Figure (3-42) as to Figure (3-38) (fuel-gas 88 being compressed via piston-action 105) causes combustible gas atoms (129 and 128a/b) to decay ... releasing thermal explosive energy (gtnt) (127) under control means.

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Water Fuel Injector (Taper Resonant Cavity Chamber)

  1. To set up, trigger, and perform Hydrogen Fracturing Process (390) of Figure (3-42) (see WFC Memo 422 DA) gas ignition stage (100) of Figure (6) ...

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  2. (390) of Figure (3-42)

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Water Fuel Injection System - Page 1

  1. but, also, sets up and triggers Hydrogen Fracturing Process (390) of Figure (3-42) as to Figure (3-6) under control state (on demand) via electrical-static spark ignition (49/51) of Figure (4-5)

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  2. Hydrogen Fracturing Process (390) of Figure (3-42)

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In Application of Usage

  1. The Hydrogen Fracturing Process (390) of Figure (3-42) simply triggers and releases atomic energy (gtnt) from natural water (85) of Figure (3-26) by retarding and preventing the reformation of the water molecule being subjected to sub-critical state (520) of Figure (5-3) during thermal gas ignition (100) of Figure (4-8) as to (70) of Figure (4-5).

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  2. (390) of Figure (3-42)

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Resistance (Rs)

  1. ... causing and allowing the applied Electrical Stress of opposite voltage polarity (ST-ST' - RU-RU') to trigger Hydrogen Fracturing Process (390) of Figure (3-42) in an instant of time

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  2. (390) of Figure (3-42)

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Capacitance Reactance

  1. ... to bring-on and trigger Hydrogen Fracturing Process (390) of Figure (3-42) once liberated and expanding water gases (100) of Figure (4-8) passes beyond exit port (E9d)

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  2. (390) of Figure (3-42)

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