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Stan’s Legacy

(44)

Resonant Cavity Outer Surface

Also written Electrical Voltage Zones · Resonant Cavity Assembly · negative voltage zone · surface area

Where it is first named

Secondary Pickup Winding (resistive wire coil) (42), Blocking Diode (14), Resonant Charging Choke (resistive wire coil) (43), Resonant Cavity Inner Surface (45) (forming a Positive Electrical Voltage Zone), Resonant Cavity Outer Surface (44) (forming a Negative Voltage Zone).
SINGLE VOLTAGE RESONANT "Q"

How it is written

Drawings 1

  • Voltage zone surface area (44/45) form the capacitance value of said Resonant Cavity Assembly of Figure 12. · SINGLE VOLTAGE RESONANT "Q"

Where it is named · 6

SINGLE VOLTAGE RESONANT "Q"

  1. Resonant Cavity Outer Surface (44)

    Secondary Pickup Winding (resistive wire coil) (42), Blocking Diode (14), Resonant Charging Choke (resistive wire coil) (43), Resonant Cavity Inner Surface (45) (forming a Positive Electrical Voltage Zone), Resonant Cavity Outer Surface (44) (forming a Negative Voltage Zone).

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  2. surface area (44/45)

    Voltage zone surface area (44/45) form the capacitance value of said Resonant Cavity Assembly of Figure 12.

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  3. Resonant Cavity Assembly (44/45)

    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.

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  4. 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.

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  5. Electrical Voltage Zones (44/45)

    Electrical Voltage Zones (44/45): Said High Voltage Output from said Resonant Charging Choke (43) forms a Positive Electrical Voltage Pulse Potential (voltage zone) across said voltage surface area (45) immersed in natural water, see step-charging graph 16A as to 20YA Section AA again.

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  6. negative voltage zone (44)

    Amp Inhibitor Component (47): Another Resonant Charging Choke (47) is placed between said negative voltage zone (44) and said circuit electrical ground (48) to help maintain capacitance value (voltage level) within the Resonant Cavity during voltage pulsing.

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