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Stan’s Legacy The Stanley Meyer Archive

(Z3)

Resonant Choke Coils Electromagnetic Fields Intensity

Also written Resonant Charging Chokes

Where it is first named

Switching Diode (55) of Figure (3-22) prevents Bidirectional electron flow (current flow in one direction only) since Blocking Diode (55) only conducts "current flow" in the direction of schematic-arrow while being placed in-line with VIC Circuit impedance interaction (R1 + Z2 + Z3 + Re), as mathematically extrapolated in Circuit Equation (Eq 9)
— Instant Explosion of Water

How it is written

Drawings 32

Where it is named · 5

Instant Explosion of Water 1×

  1. Switching Diode (55) of Figure (3-22) prevents Bidirectional electron flow (current flow in one direction only) since Blocking Diode (55) only conducts "current flow" in the direction of schematic-arrow while being placed in-line with VIC Circuit impedance interaction (R1 + Z2 + Z3 + Re), as mathematically extrapolated in Circuit Equation (Eq 9)

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Circuit Resistance 1×

  1. (Z3) is determined by inductance field strength (FL2) and resistive value (RS2) (typically 11.6KQ) of stainless steel (sls) wire-coil (62) (L2) when being exposed to the same external magnetic coupling field strength (Rp)

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8-3 - Electrical Voltage-Pulse Wave-Transmission 1×

  1. Resonant Charging Chokes (56/Z2 – 62/Z3)

    The newly established leading voltage edge (Vpa) and trailing voltage edge (Vpb) being uniform in shape/configuration since both Resonant Charging Chokes (56/Z2 – 62/Z3) resistive values are the same (Typically 11.6 kΩ each) and incoming signal (49a xxx 49n) is electrically linked with Water-Gap Capacitor (Cp) of Figure (7-8) having dielectric liquid of Water (85) there between.

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8-6 - VIC Voltage Sync-Pulse Circuit 2×

  1. Resonant Choke Coils Electromagnetic Fields Intensity (+Z2 / -Z3)

    … allowing Inductor Resonant Choke Coils Electromagnetic Fields Intensity (+Z2 / -Z3) to be, in turn, free of Electromagnetic variances of intensity (Z2 - Z3).

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  2. … allowing Inductor Resonant Choke Coils Electromagnetic Fields Intensity (+Z2 / -Z3) to be, in turn, free of Electromagnetic variances of intensity (Z2 - Z3).

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