(612) · also written as a run, 612a xxx 612n
Dynamic Electrical Charging Effect
Also written Dynamic
Where it is first named
… ed capacitance (Cda xxx Coo) and distributed inductance (Dla xxx Dln) of Figure (7-3) to intensify Inductance Field Strength (FLa xxx FLn) to function as a voltage multiplier in switch-off conditions (612a xxx 612n), as illustrated in (710) of ~ . Figure (7-10) as to VIC Coil Assembly (580) of Figure (6-1) and, is expressed:
How it is written
- (612) 7×
- (612a xxx 612n) 1×
612a xxx 612n is Meyer's shorthand for a run of the same thing: 612a is the first, 612n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.
Drawings 21
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(580) of Figure (6-1) · Multi-layer Coil
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(580) of Figure (6-1) (WFC memo 425) · 8-2 - Traveling Voltage Wave-Guides
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(770 B) of Figure (8-1) · 8-4 - State Space (Sp)
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(585) of Figure (8-1) · 8-4 - State Space (Sp)
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(612) of Figure (8-1) · 8-5 - Energy Vectoring (Ev)
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Carries this number · 8-6 - VIC Voltage Sync-Pulse Circuit
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Carries this number · WFC 427 Illustrations
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"Voltage Tickling of State Space" (770B) of Figure (8-1) · WFC Exhaust Air Reclaimer
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Dynamic Electrical Charging Effect (612) of Figure (8-1) · Propagating Electrical Stress
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Carries this number · Quartz Tube Configuration & Operational Parameters
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... establishing variable Dynamic Electrical Charging Effect (612). · Quartz Tube Configuration & Operational Parameters
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(710) of Figure (7-10) · Inductance (FL)
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(710) of Figure (7-10) · Capacitance (Cd)
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... each bobbin cavity adhering to equation (Eq 20), as illustrated in (710) of Figure (7-10). · Transformer Action
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(710) of Figure (7-10) · Transformer Action
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The figure it sits on · WFC 426 - Illustrations
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(770) of Figure(8-1) · 8-2 - Traveling Voltage Wave-Guides
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(770) of Figure (8-1) · 8-3 - Electrical Voltage-Pulse Wave-Transmission
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(770 A) of Figure (8-1) · 8-4 - State Space (Sp)
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(770A) of Figure (8-1) · 8-5 - Energy Vectoring (Ev)
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"Voltage Tickling of State Space" (770A) of Figure (8-1) · WFC Exhaust Air Reclaimer
Where it is named · 8
Multi-layer Coil 1×
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… ed capacitance (Cda xxx Coo) and distributed inductance (Dla xxx Dln) of Figure (7-3) to intensify Inductance Field Strength (FLa xxx FLn) to function as a voltage multiplier in switch-off conditions (612a xxx 612n), as illustrated in (710) of ~ . Figure (7-10) as to VIC Coil Assembly (580) of Figure (6-1) and, is expressed:
8-5 - Energy Vectoring (Ev) 2×
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Dynamic Electrical Charging Effect (612)
... producing Dynamic Electrical Charging Effect (612) of Figure (8-1) that increases Electrical Stress Pressure (Espa + Espb + Espc, and so on) continually during each gated voltage pulsing cycle (49a xxx T3 xxx 49n).
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(612) of Figure (8-1)
8-6 - VIC Voltage Sync-Pulse Circuit 1×
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Dynamic (612)
This non-voltage shift (Balanced Phasing of opposite Voltage Potential) helps prevents atom displacement during "Snapping-Action" by which "Resonant Electrical Stress" of opposite electrical polarity (RU/RU' - ST/ST') is applied equally across Water Molecule (s) (85) to propagate either Static (585) or Dynamic (612) Electrical Charging Effect (s) at elevated Voltage Peak Potential (s).
Propagating Electrical Stress 2×
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Dynamic Electrical Charging Effect (612)
The resultant Dynamic Electrical Charging Effect (612) of Figure (8-1) acts as a progressive energy enhancer (Energy Priming Stage) (500) of Figure (5-1)
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Dynamic Electrical Charging Effect (612)
Dynamic Electrical Charging Effect (612) of Figure (8-1)
Voltage to Amp Differential Ratio 1×
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Dynamic Electrical Charging Effect (612)
The resultant ever increasing pulsating opposite electrical voltage fields (603/604a xxx 603/604n) of Figure (8-1) having superimposed thereon counter opposing Rippling Voltage-Surfaces (64/B+a xxx 64/B-n) [Dynamic Electrical Charging Effect (612) of Figure (8-1B)], now, set ups, causes, and applies ever increasing (rubberbanding effect) Pulsating Opposite Electrical Stress (RU-RU' - ST-ST') across Water Gap (Cp)
Quartz Tube Configuration & Operational Parameters 1×
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Dynamic Electrical Charging Effect (612)
... establishing variable Dynamic Electrical Charging Effect (612).