(45)
Voltage Surface Area
Also written surface area · Resonant Cavity Inner Surface · Electrical Voltage Zones · Resonant Cavity Assembly · voltage zone
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).
How it is written
- (44/45) 4× with (44) Resonant Cavity Outer Surface
- (45) 3×
Drawings 1
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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 · 7
SINGLE VOLTAGE RESONANT "Q" 7×
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Resonant Cavity Inner Surface (45)
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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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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voltage surface area (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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voltage zone (45)
Scientific Fact: Stainless Steel Material T304 forming said voltage zone (45) does "NOT" chemically interact with liberated hydrogen, oxygen, and ambient air gases in natural water when exposed to a voltage potential during amp restrictions.