established VIC
VIC Primary Coil uses 22 AWG copper wire at 5.1933 ohms/lb
The Primary Coil (622) of the VIC uses 22 AWG (.028 in) copper wire equal to 5.1933 ohms per pound weight.
Bench
383 published findings from the ongoing work — what has been established, calculated and observed at the bench, each traceable to the session that produced it.
established VIC
The Primary Coil (622) of the VIC uses 22 AWG (.028 in) copper wire equal to 5.1933 ohms per pound weight.
established VIC
Resonant Charging Chokes (614/615) are made of 430F/FR 36 AWG (.006 in) stainless steel (s/s) wire, which equals 60 micro ohms per centimeter.
established VIC
The series resistance value (Rs) of the VIC choke/coil windings is determined by the composition of the wire material in terms of its ohmic value (electrical resistivity) per given length and diameter...
established VIC
The circular-spiral turns of wire in the VIC choke, forming parallel electrical surfaces, are separated by an Insulated Dielectric Coating Material which forms a series of capacitors (Cda-Cdn) when ma...
established VIC
Inductors (614) and (615) of the VIC are wound or coil-wrapped, per the multi-layer equation (Eq. 20), to increase magnetic flux intensity between the turns (618a-618n) of the coil-wrap (640).
established VIC
Distilled water is generally lab-tested at 1 ppm or less contamination, as illustrated in Figures (7-15) and (7-14).
established VIC
Electron interaction (movement of electrons through the liquid medium of water) is further inhibited since natural water contaminants (144a...144n) are normally less than 20 ppm.
established VIC confidence 0.80
The stabilized water molecule structure (85) maintains molecular stability by opposing the exchange of electrons from an external electron source (amp-inducing circuit) beyond its molecular structure.
established VIC
The established Dielectric Value of Water (85) is 78.54 ohms, attributed to the electron 'L' orbit of the water molecule occupying the maximum allowable eight electrons upon covalent linkup of one oxy...
established VIC
Distributed Capacitance (Cda...Cdn) and Distributed Inductance (D1a...D1n) of Inductor Coil (614) interact with the dielectric value of the water bath (85/Re), producing the 'Electrical Charging Effec...
established VIC
Component Reactance to D.C. pulsing transforms the Inductor (614)/Capacitor (E9/E10) LC circuit into a Resonant Charging Choke, which steps up a unipolar oscillation at a given charging frequency, usi...
established VIC
Capacitor (E9/E10) as to (720) of Figure (7-11) is formed when outer tapered surface (66) and inner tapered surface (67) create Water-Gap (616), with Dielectric Water Bath (85/Re) placed between them,...
established VIC
Inductor (614) is an insulated wire wound in a spiral pathway around Bobbin Cavity (580) of Figure (6-1) to form the Voltage Stepping Coil (710) of Figure (7-10).
established VIC
Resonant Charging Circuit (630) of Figure (7-2) is an LC circuit formed when Inductor (614) of Figure (7-1) is electrically linked in series with Taper Capacitor (720) of Figure (7-11).
established VIC
Applied opposite Voltage potential (ST-ST' to RU-RU') performs work without amp "influxing," as systematically depicted in the VIC Matrix Circuit (690).
established VIC confidence 0.80
The dielectric value of Water (Re) is a functional part of the Voltage Intensifier Circuit (110 of Figure 4-9), contributing to its capability of restricting amp flow during Voltage Pulsing Operation...
established VIC
While restricting current, the stainless steel coil-wrap simultaneously conducts and transmits Voltage Potential across its circumference surface area (skin effect) (66/67 of Figure 7-11, referencing...
established VIC
Because of the atomic composition of the stainless steel wire material (Rs1/Rs2), electron interaction/interchange between atomic structures is opposed, restricting current flow to the milliampere ran...
established VIC
The stainless steel (s/s) coil-wrap (614/615) resistive wire value (Rs1/Rs2) shown in Figure 7-8 is typically 11.6K ohms per coil, an amount sufficient to inhibit current flow oscillation in relation...
established VIC
The output voltage-wave signal (64a-64n) is a pulse-frequency doubler due to the Inductance Reactance (FL) of Inductor Coil (56, Figure 3-22): when the magnetic field (FL, Figure 7-3b) collapses, it r...
established VIC
A gated pulse-frequency pulse-train (64a/64b - T3 - 64a/64b) forms when pulse off-time (T3) is greater than time-period (T2); the input pulse-train (49a-49n) off-time (T2) is adjusted to allow the Uni...
established VIC
Diode (55) is placed between the Secondary Pickup Coil (52) and Resonant Charging Choke (56) to act as an electronic switch in the open position during pulse off-time (T2, Figure 7-8), preventing reve...
established VIC
Switching Diode (55, Figure 3-22) prevents bidirectional electron flow (current flow in one direction only) since the Blocking Diode only conducts current in the direction of the schematic arrow, plac...
established VIC
The VIC-VB circuit (620, Figure 7-1) allows reduction of Capacitor-Gap (Cp) (616, Figure 7-11) width spacing (57 of Figure 3-25 ~ 35 of Figure 6-2), typically .060 to .010, as illustrated in the Tubul...
established VIC
VIC Voltage Enhancement Circuit (VIC-VB) (620, Figure 7-1) incorporates stainless steel wire-wrap coils (614/615) to form a unipolar gated pulse-wave (64a...T3...64n) without signal distortion or degr...
established VIC
VIC voltage circuit (60) utilizes copper wire-wrap to form Resonant Charging Chokes (56/62, Figure 3-22) in conjunction with Switching Diode (55) to encourage the 'Electron Bounce' phenomenon (700, Fi...
established VIC
Voltage Intensifier Circuit (60) of Figure 3-22 (Memo WFC 422 DA / WFC 420) and Voltage Intensifier Circuit (620) of Figure 7-1 are both specifically designed to restrict amp flow during Programmable...
established VIC
The Voltage Intensifier Circuit takes advantage of the 'Electron Bounce Phenomenon' to trigger the Hydrogen Fracturing Process without amp influxing, and the Taper Resonant Cavity functions as a Volta...
established VIC confidence 0.80
The operational parameter of the VIC utilizes 'Opposite Electrical Attraction Force' of high voltage intensity to instantly release thermal explosive energy (gtnt) from natural water.
established VIC
The mode-of-operability of the VIC Coil Assembly allows voltage potential of opposite polarity to increase and be attenuated up to and beyond 20 kilovolts while inhibiting and restricting amp leakage...