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Stan’s Legacy

(E4)

Negative Electrical Voltage Fields

Also written negative electrical voltage potential · opposite polarity voltage zone · electrical voltage field · electrical plates · voltage plates · Excitor-array · voltage zones

Where it is first named

Exposing the displaced and moving combustible gas atoms (exiting water bath and passing through Gas Resonant Cavity (T), Figure 20JX as to Figure 20H) to another or separate pulsating laser energy-source (V) at higher voltage levels (E3/E4) causes more electrons to be “pulled away" or "dislodged" from the gas atoms, as illustrated in Figure 1-8 as to Figure
WFC 417 — WFC 417

How it is written

Drawings 18

Where it is named · 14

WFC 417 — WFC 417

  1. Exposing the displaced and moving combustible gas atoms (exiting water bath and passing through Gas Resonant Cavity (T), Figure 20JX as to Figure 20H) to another or separate pulsating laser energy-source (V) at higher voltage levels (E3/E4) causes more electrons to be “pulled away" or "dislodged" from the gas atoms, as illustrated in Figure 1-8 as to Figure

    Read it there → · on Figure (1-8)

  2. … While, at the same time, the pulsating negative electrical voltage potential (E4) attracts (qq') the positive electrical charged nucleus. The Positive Electrical Voltage Field (E3) and Negative Electrical Voltage Fields (E4) are triggered SIMULTANEOUSLY during the same duty-pulse.

    Read it there →

  3. Negative Electrical Voltage Fields (E4)

    … The Positive Electrical Voltage Field (E3) and Negative Electrical Voltage Fields (E4) are triggered SIMULTANEOUSLY during the same duty-pulse.

    Read it there →

CIRCUIT COMPONENT INTERACTION

  1. Excitor-array (E3/E4)

    Resonant Charging Choke (c) in series with Excitor-array (E3/E4) forms an inductor-capacitor circuit (LC) since the Excitor-Array (ER) of Gas Resonant Cavity (t) acts or performs as a capacitor during pulsing operations.

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  2. electrical plates (E3/E4)

    The Dielectric Properties (insulator to the flow of amps) of Argon Gas (dielectric constant being 1.000545 @ 23°C) between the electrical plates (E3/E4) forms the capacitor (ER) of Gas Resonant Cavity (t).

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  3. voltage zones (E3/E4)

    The Inductor (c) takes on-or becomes a Modulator Inductor which steps up an oscillation of an given charging frequency when the effective capacitance of an pulse-forming network in order to charge the voltage zones (E3/E4) to an higher potential beyond applied voltage input.

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RLC CIRCUIT

  1. opposite polarity voltage zone (E4)

    Variable inductor-coil (y), similar to inductor (c) connected to opposite polarity voltage zone (E4) further inhibits electron movement or deflection within the Voltage Intensifier Circuit.

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  2. Inductor (y) in relationship to inductor (c) electrically balances the opposite voltage electrical potential across voltage zones (E3/E4).

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Gas Destabilization Process

  1. electrical voltage field (E4)

    At the same time, the stationary "Negative" electrical voltage field (E4) attracts the positive charged nucleus of the gas atom (s).

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Electron Extraction Process

  1. Exposing the displaced and moving combustible gas atoms (exiting waterbath and passing through Gas Resonant Cavity (T), Figure (1-17) as to Figure (1-18) to another or separate pulsating laser energy-source (V) at higher voltage levels (E3/E4) causes more electrons to be "pulled away" or "dislodged" from the gas atoms, as illustrated in Figure (1-15) as to Figure (1-8).

    Read it there → · on Figure (1-15)

  2. negative electrical voltage potential (E4)

    While, at the same time, the pulsating negative electrical voltage potential (E4) attracts (qq') the positive electrical charged nucleus.

    Read it there →

  3. Negative Electrical Voltage Fields (E4)

    The Positive Electrical Voltage Field (E3) and Negative Electrical Voltage Fields (E4) are triggered "Simultaneously" during the same duty-pulse.

    Read it there →

Gas Processor

  1. Pulsating voltage potential or voltage intensity (65a xx 65n) is adjusted, also, to "tune-in" to the resonant properties of ambient air gases (101) since ambient air gases (101) exhibits a dielectric value (air-gap of one inch resisting electron arc-over of up to 17,000 volts applied) between voltage plates (E3) and (E4), forming capacitor (410) of Figure (3-34).

    Read it there → · on Figure (3-34)

  2. voltage plates (E3/E4)

    Voltage fields (106/107) are physically configured (skin effect) by T304 stainless steel material to form voltage plates (E3/E4) of Figure (3-33) which are not only chemically inert to gas ionization process (260) but, also, forms tubular Gas Resonant Cavity (410) of Figure (3-34) having approximately the same size and shape of liquid resonant cavity (170) of Figure (3-25), as illustrated in (270) of Figure (3-34).

    Read it there → · on Figure (3-33)