(690)
VIC Matrix Circuit
Also written Voltage Intensifier Matrix Circuit · VIC Coil Matrix Circuit · VIC Circuit
Where it is first named
... allowing the dielectric value of Water (Re) to be a part of Voltage Intensifier Circuit (110) of Figure (4-9) capability of restricting amp flow during Voltage Pulsing Operation (49a xxx 49n) of (620) of Figure (7-1) as to VIC Matrix Circuit (690) of Figure (7-8)
How it is written
- (690) 39×
Drawings 38
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Carries this number · VIC Matrix Circuit
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(T2) of Figure (7-8) · Instant Explosion of Water
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Figure (7-8) · Resistance (Rs)
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(690) of Figure (7-8) · Resistance (Rs)
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(690) of Figure (7-8) · Inductance (FL)
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(750) of Figure (7-14) · Inductance (FL)
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(750) of Figure (7-14) · Capacitance (Cd)
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(690) of Figure (7-8) · Capacitance (Cd)
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(690) of Figure (7-8) · Inductance Reactance (Rs - Cd - FL)
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(750) of Figure (7-14) · Inductance Reactance (Rs - Cd - FL)
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Figure (7-8) · Inductance Reactance (Rs - Cd - FL)
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(690) of Figure (7-8) · Taper Resonant Capacitor (ERt)
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690 of Figure 7-8 · Circuit Resistance
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(52) of Figure (7-8) · Electron Bounce Phenomenon
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Voltage Graph (750) of Figure (7-14) · Electron Bounce Phenomenon
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Carries this number · WFC 426 - Illustrations
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(690) of Figure (7-8) · 8-2 - Traveling Voltage Wave-Guides
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(52) of Figure (7-8) · 8-3 - Electrical Voltage-Pulse Wave-Transmission
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(Cp) of Figure (7-8) · 8-4 - State Space (Sp)
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(690) of Figure (7-8) · 8-6 - VIC Voltage Sync-Pulse Circuit
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(Cp) of (7-8) · 8-6 - VIC Voltage Sync-Pulse Circuit
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(690) of Figure (7-8) · Propagating Electrical Stress
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Voltage Performance Graph (750) of Figure (7-14) · Voltage to Amp Differential Ratio
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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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The figure it sits on · 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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The figure it sits on · WFC 426 - Illustrations
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(780A) Figure (8-2) · 8-2 - Traveling Voltage Wave-Guides
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Figure (8-2) · 8-2 - Traveling Voltage Wave-Guides
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(780 B) of Figure (8-2) · 8-4 - State Space (Sp)
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(780 A/B/C) of Figure (8-2) · 8-4 - State Space (Sp)
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Clipped Voltage Wave-form (780C) of Figure (8-2) · 8-5 - Energy Vectoring (Ev)
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The figure it sits on · 8-6 - VIC Voltage Sync-Pulse Circuit
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The figure it sits on · WFC 427 Illustrations
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The figure it sits on · WFC 429 - Illustrations
Where it is named · 39
Resistance (Rs) 3×
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VIC Matrix Circuit (690)
... allowing the dielectric value of Water (Re) to be a part of Voltage Intensifier Circuit (110) of Figure (4-9) capability of restricting amp flow during Voltage Pulsing Operation (49a xxx 49n) of (620) of Figure (7-1) as to VIC Matrix Circuit (690) of Figure (7-8)
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(690) of Figure (7-8)
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VIC Matrix Circuit (690)
... allowing applied opposite Voltage potential (ST-ST' - RU-RU') to perform work without amp "influxing", as systematically depicted in VIC Matrix Circuit (690) below.
Inductance (FL) 2×
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… -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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(690) of Figure (7-8)
Capacitance (Cd) 4×
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The circular-spiral turns of wire (forming parallel electrical surfaces) is separated by an Insulated Dielectric Coating Material which forms a series of capacitors (Cda xxx Cdn) when magnetic flux-lines (619a xxx 619n) produce Electromagnetic Coupling Field (621) during pulse on-time (T1), as illustrated in (640) of Figure (7-3) as to (690) of Figure (7-8).
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(690) of Figure (7-8)
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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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(690) of Figure (7-8)
Inductance Reactance (Rs - Cd - FL) 3×
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Inductance Reactance occurs when resistance (Rs), capacitance (Cd), and Inductance (FL) interacts together during D.C. Pulsing (49a xxx 49n), as schematically depicted in (690) of Figure (7-8).
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(690) of Figure (7-8)
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… t 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).
Taper Resonant Capacitor (ERt) 3×
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Capacitance (Cp) of Figure (7-6) as to (690) of Figure (7-8) is determined by the surface area (A) of Electrical Voltage-Plates (E1/E2 - E9/E10), the distance (d) between the Electrical Plates (in inches), and the permittivity (Eo) of the dielectric property of water (85) and, is expressed in the following equation:
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(690) of Figure (7-8)
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VIC Circuit (690)
(Eo) is Free-Space Permittivity of Water established by VIC Circuit (690) of Figure (7-8) ability to restrict amp flow,
Capacitance Reactance 2×
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Plate Inductance (Lc) is Inductance Reactance of Inductor (L1 ) and Inductance Reactance of Inductor (L2) in series with Resonant Capacitor (140 -170) of Figure (7-6) as to (690) of Figure (7-8).
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(690) of Figure (7-8)
Transformer Action 6×
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… ux lines of forces (71a xxx 71n) emanating away from magnetic core material (53) and caused by Primary Coil (26) being electrically energized during pulsing operations (T1a xx T1n), as illustrated in (690) of Figure (7-8).
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(M) is the mutual inductance of each transformer coil (26/52) being in parallel relationship with fields aiding Coupling Inductance (Rp1) and (Rp2) in (690) of Figure (7-8) is further expressed in the following equation:
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VIC Coil Assembly (580) of Figure (6-1) as to (690) of Figure (7-8) in reference to Schematic Circuit (620) of Figure (7-1) is constructed in such a way as to rotate and position Inductor Coils (26 - 52 - 56 - 62) to be of the same electromagnetic polarity orientation, indicator mark (e)
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(690) of Figure (7-8)
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… uce ''Negative Voltage Potential" ( B- ) at one side of Water Gap (Cp) of Figure (7-8) is accomplished by low electrical power input (Tab 38) when Choke-Coil (62) of Figure (7-1) magnetic field (FL2) (690) of Figure (7-8) during pulse on-time (49) impede "Electron-Flow" since electron mass is composed of electromagnetic matter which interacts with magnetic field strength (FL2).
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''Negative Voltage Potential" ( B- ) at one side of Water Gap (Cp) of Figure (7-8) & magnetic field (FL2) (690) of Figure (7-8)
Electron Bounce Phenomenon 1×
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Coupling Inductance (Rp1) and (Rp2) in (690) of Figure (7-8) is further expressed in the following equation: Where, (Lt cc) is the total inductance of Choke Coils (FL1 - FL2), (L1) and (L2) are the inductance of each individual choke coil (56)( …
8-2 - Traveling Voltage Wave-Guides 4×
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VIC Coil Matrix Circuit (690)
The dielectric property of water (85) (resistance to electron flow) in conjunction with VIC Coil Matrix Circuit (690) of Figure (7-8) (WFC memo 426) as to VIC Coil Assembly (580) of Figure (6-1) (WFC memo 425) ability to inhibit amp "influxing" (Electron Bounce Phenomenon EbP) during pulsing operations (49a xx 49n) …
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(690) of Figure (7-8) (WFC memo 426)
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Voltage Intensifier Matrix Circuit (690)
Voltage Intensifier Matrix Circuit (690) of Figure (7-8) electrically connected with resistive liquid (85/Re) (forming Resonant Water Gap "Cp" of Figure 7-8) propagates the transmission of Traveling Voltage Wave-Form (57) of Figure (6-2) as to (770) of Figure(8-1) by the functional relationship of Circuit Resistance Equation (Eq 9) during programmable Voltage Pulsing operations (49a xxx 1'3 xxx 49n) of Figure (8-2).
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(690) of Figure (7-8)
8-3 - Electrical Voltage-Pulse Wave-Transmission 1×
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VIC Matrix Circuit (690)
Thereby, preventing coil-ringing during each pulse off-time ...allowing Electron Bounce Phenomenon (EbP) to occur without amp influxing within VIC Matrix Circuit (690) of Figure (7-8) as so governed by Circuit Resistance Equations (Eq. …
8-4 - State Space (Sp) 1×
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VIC Matrix Circuit (690)
… tial (Vpp) forming clipped Voltage Pulse Wave-form (Vcwf) during Voltage Pulse Shaping by way of Programmable Pulsing Circuit (WFC project 422DA/423DA) electrically interfaced with VIC Matrix Circuit (690), as illustrated in (780) of Figure (8-2).
8-6 - VIC Voltage Sync-Pulse Circuit 2×
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VIC Matrix Circuit (690)
… 860) (Amp Inhibiting Coil 617, Blocking Diode 618, and Magnetic Induction Core 619) between electrical ground (0V) and Center Tap of Dual Bifilar Secondary Pickup Coils (616A/B) of VIC Matrix Circuit (690) of Figure (7-8) as to VIC Impedance Network Circuit (620) of Figure (7-1) , as illustrated in (840) of Figure (8-10).
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(690) of Figure (7-8)
WFC Exhaust Air Reclaimer 1×
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… c properties of the airborne gas-molecule to not only activate Covalent Switch-Off phenomenon (550) of Figure (5-8) by restricting amp influxing to cause "Electrical Stress" across capacitor gap (Cp) (690) of Figure (7-6) but, also, elongates the electrically polarized Nitric Oxide NO molecule to change the time share-rate of covalent electron (s)
Propagating Electrical Stress 2×
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The Amp Inhibiting Circuit (970) of Figure (10-1) as to (690) of Figure (7-8) is composed of two copper wires "Bifilar" wound (wrapped) about a magnetic induction core to allow amp restriction (minimizing current leakage) while encouraging "Voltage Potential"(V …
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(690) of Figure (7-8)
Voltage to Amp Differential Ratio 3×
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… than the Stainless steel coil-wire length and magnet bifilar-coil (56/62) is placed on top of Stainless Steel bifilar-coil (SS56/62) to maximize mutual inductance coil-field (Rp2) (adding Rp1+Rp2) of (690) of Figure (7-8) to cause coil capacitance (Cda xxx Cdn) to help maintain and even increase pulse voltage amplitude (xxx Vn + Vn 1 + Vn2 + Vn .... …
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… etc.) while the resistive value (Rs2) of SS Coil-Wire (SS56/62) performs the work of further resisting the flow of amps not inhibited by both self-Inductance fields (Rpl + Rp2), as so illustrated in (690) of Figure (7-8).
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(690) of Figure (7-8)
Appendix B - Glossary of Applicaiton Notes 1×
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… roduce "Negative Voltage Potential" (B-) at one side of Water Gap (Cp) of Figure (7-8) is accomplished by low electrical power input (Tab 38) when Choke-Coil (62) of Figure (7-1) magnetic field (FL2) (690) of Figure (7-8) during pulse on-time (49) impede "Electron-Flow" since electron mass is composed of electromagnetic matter which interacts with magnetic field strength (FL2). …