(Yo)
Resonant Voltage Intensity
Also written voltage
Where it is first named
The value of inductor (56), value of capacitor (57), and the pulse-frequency (63) of voltage (Yo xxx Vn) being applied across the LC circuit determined the impedance of LC circuit (Figure 3-28).
How it is written
- (Yo -Vn) 1× with (Vn) Voltage Potential
- (Yo xxx Vn) 1× with (V) Voltage Amplitude
Drawings 8
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Figure (3-28) · Voltage Intensifier Circuit (60)
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Ohm's law of LC circuit (180) of Figure (3-28) in series is given by (Eq 5) · Voltage Intensifier Circuit (60)
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Voltage (Vc) of Figure (3-28) across the capacitor is given by (Eq 7) · Voltage Intensifier Circuit (60)
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The figure it sits on · WFC 422DA - Illustrations
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(57) of Figure (6-2) · In Application of Usage
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Activation Process (590) of Figure (6-2) · Voltage Intensifier Coil-Assembly
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(590) of Figure (6-2) · Capacitance (Cd)
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(E9/10) of Figure (6-2) · Voltage Amplitude Switch-Off
Where it is named · 2
Voltage Intensifier Circuit (60) 1×
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voltage (Yo xxx Vn)
The value of inductor (56), value of capacitor (57), and the pulse-frequency (63) of voltage (Yo xxx Vn) being applied across the LC circuit determined the impedance of LC circuit (Figure 3-28).
Electron Bounce Phenomenon 1×
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Resonant Voltage Intensity (Yo -Vn)
... therefore, producing a physical force-yield (Fy) during gas-ignition (70) of Figure (4-5) which is directly related to the liquid volume of water (85) per injection cycle and applied Resonant Voltage Intensity (Yo -Vn), as illustrated in (590) of Figure (6-2) as to (90) of Figure (5-5).