(Vpb)
Voltage Amplitude Burst-Time
Also written Voltage Pulsing Cycle · Voltage Pulse Burst · trailing edge
Where it is first named
During the electrical-formation (66- Vpa/Vpb - 67- Vpa/Vpb) of each opposite Electrical Voltage-Wave (66-583 - 67-602), opposite electrical attraction force (RR' - SS') of Figure (7-4) is produced across water cap (Cp) of Figure (7-8) which, now, sets up and defines the conditions of “State Space," as illustrated in (770 A/B) of Figure (8-1) as to (650) of Figure (7-4).
How it is written
- (Vpa/Vpb) 2× with (Vpa) Voltage Amplitude Burst-Time
- (Vpb) 2×
- (66- Vpa/Vpb - 67- Vpa/Vpb) 1× with (66) Positive Voltage Potential, (Vpa) Voltage Amplitude Burst-Time, (67) Opposite Polarity
- (Vpa - Vn -Vpb) 1× with (Vpa) Voltage Amplitude Burst-Time, (Vn) Voltage Potential
- (Vpf + Vpb) 1× with (Vpf) Voltage Pulsing Cycle
Drawings 25
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(650) of Figure (7-4) · Amp Inhibiting Circuit Vs Voltage Enhancement
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(650) of Figure (7-4) · Resistance (Rs)
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The figure it sits on · Inductance (FL)
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(650) of Figure (7-4) · Inductance (FL)
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(650) of Figure (7-4) · Capacitance (Cd)
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"Voltage Deflection" of Figure (7-4) · Capacitance Reactance
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Opposite Electrical Attraction Force (SS' ~ 617 ~ RR' - T3 - SS' ~ 617 - RR') of Figure (7-4) · Electron Bounce Phenomenon
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The figure it sits on · WFC 426 - Illustrations
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The figure it sits on · 8-2 - Traveling Voltage Wave-Guides
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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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(650) of Figure (7-4) · 8-4 - State Space (Sp)
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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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(770A) of Figure (8-1) · 8-5 - Energy Vectoring (Ev)
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(612) of Figure (8-1) · 8-5 - Energy Vectoring (Ev)
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(650) of Figure (7-4) · 8-6 - VIC Voltage Sync-Pulse Circuit
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The figure it sits on · WFC 427 Illustrations
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"Voltage Tickling of State Space" (770A) of Figure (8-1) · WFC Exhaust Air Reclaimer
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"Voltage Tickling of State Space" (770B) of Figure (8-1) · WFC Exhaust Air Reclaimer
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The figure it sits on · Propagating Electrical Stress
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Dynamic Electrical Charging Effect (612) of Figure (8-1) · Propagating Electrical Stress
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The figure it sits on · Quartz Tube Configuration & Operational Parameters
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... establishing variable Dynamic Electrical Charging Effect (612). · Quartz Tube Configuration & Operational Parameters
Where it is named · 7
8-4 - State Space (Sp) 4×
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During the electrical-formation (66- Vpa/Vpb - 67- Vpa/Vpb) of each opposite Electrical Voltage-Wave (66-583 - 67-602), opposite electrical attraction force (RR' - SS') of Figure (7-4) is produced across water cap (Cp) of Figure (7-8) which, now, sets up and defines the conditions of “State Space," as illustrated in (770 A/B) of Figure (8-1) as to (650) of Figure (7-4).
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Voltage Amplitude Burst-Time (Vpa - Vn -Vpb)
The newly formed Opposite Electrical Attraction Force (RR' - SS') intensity is directly related to the applied Voltage Amplitude Burst-Time (Vpa - Vn -Vpb) as to the Voltage Burst-Frequency (49a xxx 49n) as to Voltage Peak Excursion Point "P" at the height of Unipolar Voltage Pulse Wave (583/602) which, in turns, determines maximum Voltage Peak-Potentia …
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Voltage Pulsing Cycle (Vpa/Vpb)
… ge Peak Excursion Point "P" at the height of Unipolar Voltage Pulse Wave (583/602) which, in turns, determines maximum Voltage Peak-Potential (Vpp) at any given time during each Voltage Pulsing Cycle (Vpa/Vpb).
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Clipped Unipolar Pulse Train (780C) is used to encourage further increase in atomic dwell-time capable of raising Atomic Energy Level (AEI) of the Water Atoms to even a higher energy-state before Snapping-Action occurs when Unipolar Pulse Wave (Upw) returns to ground state (Vo) after voltage propagation (Vpa/Vpb).
8-5 - Energy Vectoring (Ev) 2×
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Voltage Pulse Burst (Vpb)
… U' - ST/ST') from low stress intensity (S-low) to high stress intensity (S- high) and back to low stress point (S-low) as to Arc Curve (Vac) forming Voltage Pulse Field (Vpt) atop Voltage Pulse Burst (Vpb) ... …
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… which combined together (Vpf + Vpb) Electrical Stress (Es) variances corresponds to the Voltage Pulse Shape of each synchronized opposite Voltage Pulse Wave (583 - 602) of (770A) of Figure (8-1) being produced during applied Voltage Pu …
8-6 - VIC Voltage Sync-Pulse Circuit 1×
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trailing edge (Vpb)
… ng Convergent Point "Q" of Figure (780B) to reach Electrical Ground Point (0V) when each Unipolar Voltage Pulse (Vpp) is electrical energized in phase-distance relationship to cause the trailing edge (Vpb) of the first Voltage-Pulse (Vppl) to meet the uprising leading edge (Vpa) of the second Voltage Pulse Wave (Vpp2) at a distance above ground state (OV) determined by the Space-movement of the reformi …