Water Gap
As the sources put it
Stainless Steel bifilarCoil-Stage Assembly (SS56/62a xxx SS56/62n) is electrically placed between Magnet Coil-Stage Assembly (56/62a xxx 56/62n) and Water Gap (Cp) to obtain optimum Voltage to Amp Differential Ratio (Vhighest:Alowest ratio).
Where it appears · 23
Documents 8
-
Voltage to Amp Differential Ratio
4× · introduced
…sing (rubberbanding effect) Pulsating Opposite Electrical Stress (RU-RU' - ST-ST') across Water Gap (Cp) ... encouraging "Particle Oscillation" as a "Energy Generator" by way of pulsating "Electrical Stress" a…
-
Transformer Action
4× · introduced
…int) (700) of Figure (7-9) to produce ''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…
-
Capacitance (Cd)
2× · introduced
…tor (E9/E10) of Figure (7-1) as to Figure (650) of Figure (7-4) in direct relationship to Water Gap (616) becomes Taper Resonant Cavity (720) of Figure (7-11) as shown in (590) of Figure (6-2) since Water Gap…
-
8-2 - Traveling Voltage Wave-Guides
2× · introduced
…ve-guide (s) (570) of Figure (7-12) that, now, becomes the same physical configuration of Water Gap (616), as illustrated in (720) of Figure (7-11). (690) of Figure (7-8) (WFC memo 426) (580) of Figure (6-1) (…
-
Propagating Electrical Stress
1× · introduced
…8-3) Dynamic State Space (800) of Figure (8-4) ... whereby, the Voltage Wave-Guides forms Water Gap (Cp).…
-
Appendix B - Glossary of Applicaiton Notes
3×
…point) (700) of Figure (7-9) to produce "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…
-
Mode of Operability
1×
…orce (55'-RR'a xxx SS'-RR'n) even further during each new pulse-cycle (T2 next T2) across water gap (616) ... increasing Thermal Explosive Energy-yield (gtnt) to higher energy-levels (gtnta xxx gtntn) beyond a…
-
Electron Bounce Phenomenon
1×
…g "electron flow" to maintain opposite voltage potential (66/E9 _ 67/E10) across Resonant Water Gap (616) during the process of converting water-fuel (85) into instant thermal explosive energy (gtnt) ... there…
Bench findings 15
-
Choke-Coil magnetic field impedes electron flow to create negative voltage potential at Water Gap
3×
…ng Electron Clustering that produces a Negative Voltage Potential (B-) at one side of the Water Gap (Cp, Fig 7-8), while Capacitance Charging Effect (628) prevents amp influx away from the Water Gap, and both…
-
Capacitance Charging Effect prevents amp influx away from water gap, producing electrical stress
2×
The Capacitance Charging Effect (628) prevents amperage from influxing away from the Water Gap (Cp), and together with both Choke-Coils (56/62) conducting positive/negative voltage potential during pulsing, pr…
-
WFC water gap dielectric is natural water with no electrolyte added
1×
The Water Gap (616), which forms the Taper Resonant Cavity, is occupied by a dielectric liquid identified as natural water (85) having no electrolyte added thereto.…
-
VIC Matrix Circuit connected to resistive water gap forms Resonant Water Gap 'Cp'
1×
…x Circuit, electrically connected with the resistive liquid (water, Re), forms a Resonant Water Gap referred to as 'Cp', and propagates the Traveling Voltage Wave-Form according to the Circuit Resistance Equat…
-
Choke coil field impedes electron flow to cluster electrons and produce negative voltage at water gap
1×
…ses 'Electron Clustering' to produce a Negative Voltage Potential (B-) at one side of the Water Gap (Cp); this occurs via low electrical power input when Choke-Coil (62) magnetic field (FL2) impedes electron f…
-
Electron clustering in copper wire maintains opposite voltage potential across the Resonant Water Gap during hydrogen fracturing
1×
…(52), inhibiting electron flow to maintain opposite voltage potential across the Resonant Water Gap (616), which is part of the process converting water-fuel (85) into instant thermal explosive energy.…
-
Voltage compressional and expanding waveforms increase attraction force intensity each pulse cycle
1×
…SS'-RR'a through SS'-RR'n) further during each new pulse-cycle (T2 to next T2) across the water gap (616).…
-
Voltage Wave-Guides forming Water Gap arise from Static-to-Dynamic State Space transition
1×
…figured to Dynamic State Space (800, Fig 8-4); the resulting Voltage Wave-Guides form the Water Gap (Cp).…
-
Pulsating opposite electrical stress across the Water Gap drives particle oscillation
1×
…g Voltage-Surfaces create a rubberbanding Pulsating Opposite Electrical Stress across the Water Gap (Cp), causing gas atom particles of the water molecule to deflect from equilibrium and snap back during pulse…
-
Greater electrical stress yields greater thermal explosive energy release from the Resonant Water Gap
1×
…') applied, the greater the amount of thermal explosive energy released from the Resonant Water Gap (Cp), as shown in Figure 4-5 and Figure 10-1.…
-
Energy yield increases by adding more Resonant Charging Choke Stages in sequential order
1×
…tainless Steel Resonant Coils, all energized in the same progressive direction toward the Water Gap and away from blocking diode (55).…
-
Stainless steel bifilar coil stage is placed between the magnet coil stage and the Water Gap
1×
…) is electrically placed between the Magnet Coil-Stage Assembly (56/62a...56/62n) and the Water Gap (Cp) to obtain the optimum Voltage to Amp Differential Ratio (Vhighest:Alowest).…
-
Resonant cavity forms oscillating voltage zone around opposite polarity zone with water gap between
1×
…ating voltage zone is formed around another voltage zone of opposite polarity, creating a water gap between them; the resulting voltage zones take on a cavity-design shape due to the skin effect phenomenon.…
-
VIC Diagram AA topology: gated pulse train through blocking diode into bifilar chokes forming resonant cavity capacitor
1×
…avity capacitor (ER) between positive (B+) and negative (B-) voltage zones separated by a water gap.…
-
DESIGN CONSTRAINT: cell geometry must use GENERALLY-AVAILABLE stock tube; lengths/diameters flexible (baseline 1/2" + 3/4" 304 SS x 3.00")
1×
…on set. Baseline/reference geometry stays 1/2" OD inner + 3/4" OD outer, ~1/16" (0.0625") water gap, 3.00" active length. Lengths AND diameters MAY vary as long as they are common stock sizes (standard SS tube…