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Stan’s Legacy

(VL)

Voltage Intensity

Also written constant voltage level

Where it is first named

The voltage (VL) across the inductor (C) is given by the equation (Eq 6)
LC Voltage

How it is written

Drawings 3

Where it is named · 9

LC Voltage

  1. The voltage (VL) across the inductor (C) is given by the equation (Eq 6)

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Water Fuel Injector (Taper Resonant Cavity Chamber)

  1. … t only sustains and maintains Hydrogen Fracturing Process (100) of Figure (6) but, also, regulates Thermal Explosive Energy release (16a x 16n) of Figure (14) by attenuating applied voltage amplitude (xxx VL xxx), as graphically shown in Figure (20F) (WFC Memo 420).

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  2. This further increase in voltage amplitude (xxxx VL) simply exerts a greater magnitude of opposite Electrical-Stress (SS'-RR') of Figure (25) (TT' - UU') of Figure (29) (WFC Memo 422 DA) across combustible gas atoms (76, 77a - 77b)

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  3. constant voltage level (xxx VL xxx)

    Pulse on-time (T1) having a predetermined constant voltage level (xxx VL xxx) is adjusted to maximize transference of electromagnetic energy to Secondary Coil (53) during pulsing operations.

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Funneling Effect

  1. This resultant "Funneling Effect" (260), now, allows voltage amplitude (Vn) wave-form (58) to travel the length of Resonant Cavity Zone (35) from Start-Point (85a) to End-Point (85n) increasing voltage intensity (xxx VL = Vn) as parallel voltage surfaces (83/84) diminishes in size relationship (85a ~ 85n), as illustrated in (210) of Figure (17).

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  2. Voltage amplitude level VL of Pulse-wave (58) is predetermined (20,000 V.D.C. typically) to start and cause Electrical Polarization Process (160) at a relative rapid rate of gas production at segmental point (85a) when voltage point (VL xx Va) is reached.

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  3. In alternate form, Core-Slug (73) is replaced by a series of Choke Coils (77a xxx 77n) arranged in such a way as to increase voltage Intensity (Voltage Pulse Amplitude) (VL ~ Vn xxx) digitally by sequentially switching-on / switching -off Choke Coils (77a xxx 77n) to allow applied Voltage Intensity (VL ~ Vn xxx) to be placed across Voltage Expander Coils (78a xxx 78n) in direct r …

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  4. Voltage Intensity (VL ~ Vn xxx)

    … uch a way as to increase voltage Intensity (Voltage Pulse Amplitude) (VL ~ Vn xxx) digitally by sequentially switching-on / switching -off Choke Coils (77a xxx 77n) to allow applied Voltage Intensity (VL ~ Vn xxx) to be placed across Voltage Expander Coils (78a xxx 78n) in direct relationship to electrically energized shunt-coil (76).

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  5. Voltage Intensity (VL ~ Vn xxx)

    For example, as adjacent Shunt-Coil (76b) is switch-on while, simultaneously, Choke Coil (76a) is switch-off by Electronic Switch Circuit (79), Voltage Intensity (VL ~ Vn xxx) is increased due to inductance / capacitance of Voltage Expander Coil (78a) which is, now, added to Electrical Circuit (250) by electrical pathway (82a) since electromagnetic coupling field (76b) pre …

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