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Stan’s Legacy

(47)

Resonant Charging Choke

Also written capacitive reactance · Resistor Component · wire-coil

Where it is first named

Voltage zones surface area (44/45) form the Capacitance value of said Resonant Cavity Assembly (4) of Figure 12. Natural Water inside said Resonant Cavity Assembly (44/45) provides the dielectric value between said voltage zones (44/45), resonant charging choke (47) to electrical ground forms and completes the Voltage Intensifier Circuit 9XA as to 20YA.
DUAL VOLTAGE RESONANT "Q"

How it is written

Drawings 2

Where it is named · 5

DUAL VOLTAGE RESONANT "Q"

  1. resonant charging choke (47)

    Voltage zones surface area (44/45) form the Capacitance value of said Resonant Cavity Assembly (4) of Figure 12. Natural Water inside said Resonant Cavity Assembly (44/45) provides the dielectric value between said voltage zones (44/45), resonant charging choke (47) to electrical ground forms and completes the Voltage Intensifier Circuit 9XA as to 20YA.

    Read it there → · on Figure (12)

Dual Voltage Resonant "Q" - Part 2

  1. Resistor Component (47)

    Resistor Component (47)

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  2. Resonant Charging Choke (47)

    Another Resonant Charging Choke (47) is placed between said negative voltage zone (44) and said circuit electrical ground (48) to help maintain the resistance value (voltage level) within the Resonant Cavity during charging.

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  3. wire-coil (47)

    The resistive value of said wire-coil (47) prevents amp flow while performing in like manner as a Resonant Charging Choke.

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  4. capacitive reactance (44/47)

    Resonant Action occurs when the Voltage Intensifier Circuit 9XA as to 20YA set up a circuit condition whereby the inductive (43/45) and capacitive reactance (44/47) (or circuit impedance) components of said circuit have been balanced.

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