(670)
Resonant Voltage Effect
Also written Resonant voltage Effect Circuit
Where it is first named
… red surface (67) forms Water-Gap (616) of Figure (7-11) as to Figure (590) of Figure (6-2) having placed there between Dielectric Water Bath (85/Re), as schematically illustrated in matrix outline in (670) of Figure (7-6) as to (690) of Figure (7-8) and further detailed in Electrical Charging Effect (650) of Figure (7-4).
How it is written
- (670) 13×
Drawings 7
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(670) of Figure (7-6) · Inductance (FL)
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(670) of Figure (7-6) · Capacitance (Cd)
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(670) of Figure (7-6) · Capacitance (Cd)
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Carries this number · Taper Resonant Capacitor (ERt)
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Resonant Capacitor (140 -170) of Figure (7-6) · Capacitance Reactance
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Resonant Voltage Effect (670) of Figure (7-6) · Transformer Action
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Carries this number · WFC 426 - Illustrations
Where it is named · 13
Inductance (FL) 2×
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… red surface (67) forms Water-Gap (616) of Figure (7-11) as to Figure (590) of Figure (6-2) having placed there between Dielectric Water Bath (85/Re), as schematically illustrated in matrix outline in (670) of Figure (7-6) as to (690) of Figure (7-8) and further detailed in Electrical Charging Effect (650) of Figure (7-4).
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(670) of Figure (7-6)
Capacitance (Cd) 5×
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Inductor (614) and Inductor (615) of Figure (7-1) as to (670) of Figure (7-6) is wound or coil-wrapped (see multi-layer equation Eq. 20) in such a manner as to increase the magnetic flux intensity (D1a xxx D1n) of Figure (7-3) as to (580) as to Figure (6-1) in reference to (710) of Figure (7-10) between the turns (618a xxx 618n) of coil-wrap (640).
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(670) of Figure (7-6)
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The series resistance value (Rs) in (670) of Figure (7-6) as to (690) of Figure (7-8) and (670) of Figure (7-6) is determined by the composition of the wire material in terms of its ohmic value (electrical resistivity) per given length and diameter cross-section:
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The series resistance value (Rs) in (670) of Figure (7-6) as to (690) of Figure (7-8) and (670) of Figure (7-6) is determined by the composition of the wire material in terms of its ohmic value (electrical resistivity) per given length and diameter cross-section:
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(670) of Figure (7-6)
Inductance Reactance (Rs - Cd - FL) 4×
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Resonant voltage Effect Circuit (670)
… Inductors (L1-L2) of Figure (7-6) which acts and performs as Resonant Charging Chokes (614/615) of Figure (7-1) once placed on opposite side of capacitor (ER) forming Resonant voltage Effect Circuit (670) of Figure (7-6), as illustrated in (620) of Figure (7-1) as to (690) of Figure (7-8).
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(670) of Figure (7-6)
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... thereby preventing and inhibiting electron-flow to pass through or arc-over capacitor water-gap (Cp) of Figure (7-8) such electron blocking action is herein called "Electron Inhibiting Effect" (631), as denoted in (670) of Figure (7-6) as to (750) of Figure (7-14).
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(670) of Figure (7-6)
Transformer Action 2×
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Resonant Voltage Effect (670)
… thereby, allowing Inductance Charging Effect (660) of Figure (7-5) and Resonant Voltage Effect (670) of Figure (7-6) to interact with the dielectric properties of water (Re) to cause and inhibit electron flow (IF) since "electrons" magnetic field (547) of Figure (5-9) locks onto the electromagnetic …
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Resonant Voltage Effect (670)
Resonant Voltage Effect (670) of Figure (7-6)