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Stan’s Legacy

(230)

Electron Ejection Process

Also written Gas Ionization Process · Liquid to Gas Ionization Stage · Electron Extraction Process · electron ejection

Where it is first named

… Figure (25)...which not only separates and splits the unlike atoms of the water molecule but also causes the unlike atoms (hydrogen atoms 77a / 77b and oxygen atom 76) to experience electron ejection (230) of Figure (29) as to (71) of Figure (8) since voltage intensifier circuit (110) of Figure (7) inhibits and prevents electron flow to enter into gas ignition process (180), as further illustrated in F …
Water Fuel Injection System

How it is written

  • (230) 10×

Drawings 15

Where it is named · 10

Water Fuel Injection System

  1. … Figure (25)...which not only separates and splits the unlike atoms of the water molecule but also causes the unlike atoms (hydrogen atoms 77a / 77b and oxygen atom 76) to experience electron ejection (230) of Figure (29) as to (71) of Figure (8) since voltage intensifier circuit (110) of Figure (7) inhibits and prevents electron flow to enter into gas ignition process (180), as further illustrated in F …

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Water Fuel Injector (Taper Resonant Cavity Chamber)

  1. Electron Ejection Process (230)

    thirdly, by ionizing the released combustible gases by way of Electron Ejection Process (230) of Figure (29) (WFC Memo 422 DA), as further illustrated in (80) of Figure (4);

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  2. Electron Ejection Process (230)

    Electron Ejection Process (230) of Figure (29)

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Funneling Effect

  1. Gas Ionization Process (230)

    At segmental point (85c) voltage intensity (VL x Va x Vb x Vc) is increased sufficiently enough to propagate Gas Ionization Process (230) of Figure (3-30) (WFC Memo 422 DA).

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Water Fuel Injection System - Page 2

  1. electron ejection (230)

    ... which not only separates and splits the unlike atoms of the water molecule but also causes the unlike atoms (hydrogen atoms 77a /77b and oxygen atom 76) to experience electron ejection (230) of Figure (3-30) as to (71) of Figure (4-10) since voltage intensifier circuit (110) of Figure (4-9) inhibits and prevents electron flow to enter into gas ignition process (180), as further illustrated in Figure (4-8).

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Triggering Process

  1. ...momentarily ionizes the liberated gases by way of electron ejection (230) , and thermally ignites ionized combustible gas-mixture under "Electrostatic Pressure" that directly attenuates Energy Apertures (7a xxx 7n) (520) .... releasing thermal explosive energy (gtnt) beyond normal gas burning levels on demand, as illustrated in Figure (5-5).

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In Application of Usage

  1. Electron Extraction Process (230)

    The Electron Extraction Process (230) of Figure (3-30) as to (270) of (3-34) ionizes the highly energized combustible gases to decrease atomic mass while applied traveling voltage wave-form (57) of Figure (6-2) of opposite electrical pol …

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  2. (230) of Figure (3-30)

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Water Fuel Injector

  1. Gas Ionization Process (230)

    once activation point (E9c) is reached Gas Ionization Process (230) of Figure (3-30) takes place;

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8-4 - State Space (Sp)

  1. Liquid to Gas Ionization Stage (230)

    Liquid to Gas Ionization Stage (230) (ejecting electrons from the atomic structure under divergent electrical stress); and

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