Electrical Charging Effect
As the sources put it
Electrical Charging Effect (q -g') is Electrical Attraction Force (q - q') of opposite electrical polarity between the established positive (B+) electrically charged atom (s) and the negative (B-) electrical charged atom (s).
Where it appears · 27
Documents 11
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Inductance (FL)
2× · introduced
…trix 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). (E9/E10 & 590) of figure (6-2) (720, 616) of Figure (7-11) (650) of Figure (7-4) (670)…
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Electrovalent Bonding
2× · introduced
…Identical gas-atoms of Oxygen Atoms (905a / 905b 1905c) of Figure (9-4) further exhibits Electrical Charging Effect (q - q') since in all cases the second Electron Shell (L-orbit) can accept up to eight (8) electrons to cause…
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Amp Inhibiting Circuit Vs Voltage Enhancement
1× · introduced
…wire-length of each coil are the same. Pulse-Voltage repetition rate sets up the step-up electrical charging effect (Figure 1-3) since the "Resonant Cavity" functions as a Capacitor ER) due to the dielectric value (Resistance…
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8-6 - VIC Voltage Sync-Pulse Circuit
1× · introduced
…equally across Water Molecule (s) (85) to propagate either Static (585) or Dynamic (612) Electrical Charging Effect (s) at elevated Voltage Peak Potential (s). Amp Inhibiting Coil-Assembly (617) is made up of magnetic inducta…
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8-2 - Traveling Voltage Wave-Guides
1× · introduced
…tage surfaces (E9 / EI0) further aids the transmission of voltage potential (66/67) since Electrical Charging Effect (585) of Figure (7-4) does not change or alter the dielectric value of water (Re). Together, the Voltage Coef…
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Quartz Tube Configuration & Operational Parameters
4×
…rogen atoms to applied Static Voltage Stimulation (770) of Figure (8-1) causes the Static Electrical Charging Effect (585) to set up "Voltage Tickling of State Space" which takes the hydrogen atom (s) from "Quiescent State" (Q…
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Propagating Electrical Stress
2×
…justed to tune-in to the dielectric property of the Water Molecule. 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) Dyna…
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8-5 - Energy Vectoring (Ev)
2×
…Train (607/608a xxx 607/608n) brings-on Static Voltage Stimulation (Vsvs) by which Static Electrical Charging Effect (585) is being held constant since Electrical Stress Force (Est) averages out either Dynamic State Space (Dss…
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Voltage to Amp Differential Ratio
1×
…erimposed 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 O…
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Optical Thermal Lens
1×
…/602n) of Figure (8-1A) to travel the linear length of the Voltage Wave-Guide. The Static Electrical Charging Effect ( -) (585) is set up when applied Electrical Stress Wave-form (RD / RD' - ST / ST') is simultaneously applied…
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8-4 - State Space (Sp)
1×
…ccurring per unit of space-time) directly determines the resultant energy level of Static Electrical Charging Effect (585) of Figure (8-1) since “Particle Oscillation" is being used as a “Energy Generator" (EGpo), as so subscr…
Patents 3
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
2×
…ULAR ELONGATION Gas Ionization ATOM LIBERATION 3rd Stage LIQUID TO GAS IONIZATION Priming ELECTRICAL CHARGING EFFECT Final Stage PARTICLE IMPACT Tgnition ELECTROMAGNETIC WAVE, LASER OR PHOTON INJECTION ELECTRON EXTRACTION ATOM…
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
2×
…KDOWN OF COVALENT BOND RELEASE OF GASES 2nd Stage Gas Ionization LIQUID TO GAS IONIZATION ELECTRICAL CHARGING EFFECT PARTICLE IMPACT ELECTROMAGNETIC WAVE, LASER OR PHOTON INJECTION 3rd Stage Priming ELECTRON EXTRACTION ATOMIC…
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Process & Apparatus For The Production Of Fuel Gas & The Enhanced Release Of Thermal Energy From Such Gas
1×
…iggers the ionization state. As the ionized particles accumulate within said chamber, the electrical charging effect is again an incremental stepping effect that produces an accumulative in- creased potential while, at the sam…
Bench findings 13
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Flex-Density of hydrogen atoms is directly related to applied Voltage Amplitude
1×
…pplied Voltage Amplitude, which directly determines the Field Strength (Fs) of the Static Electrical Charging Effect (Sece).…
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Voltage Pulse Field leading/trailing edges set duration of Static Electrical Charging Effect
1×
…leading and trailing edges of each Voltage Pulse, determines the duration that the Static Electrical Charging Effect is superimposed onto the hydrogen atom(s) during each Voltage Pulsing Cycle.…
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The L-orbit (second electron shell) accepts up to 8 electrons for molecule stabilization
1×
Identical gas atoms of Oxygen exhibit the Electrical Charging Effect (q - q') because in all cases the second Electron Shell (L-orbit) can accept up to eight (8) electrons to achieve molecule stabilization.…
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Electrical Charging Effect is defined as the attraction force between opposite charged atoms
1×
Electrical Charging Effect (q - q') is defined as the Electrical Attraction Force between an established positively charged atom (B+) and a negatively charged atom (B-); the total electrovalent bonding force between two opposi…
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Pulse-voltage repetition rate sets up step-up charging effect via Resonant Cavity capacitor
1×
The Pulse-Voltage repetition rate sets up the step-up electrical charging effect because the Resonant Cavity functions as a capacitor due to the dielectric value (resistance to amp flow) of water, which becomes an integral par…
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Electrical charging effect from accumulated ionized gas can exceed applied voltage
1×
As ionized gases accumulate inside the Fuel Cell, the resulting electrical charging effect (G) can become greater than the applied voltage itself, further accelerating the Electrical Polarization Process.…
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Water dielectric turns the Resonant Cavity into a capacitor within the VIC, enabling >40kV output
1×
Pulse-voltage repetition rate sets up a step-up electrical charging effect since the Resonant Cavity functions as a Capacitor (ER) due to the dielectric value of water (78.542), which becomes an integral part of the VIC circui…
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Water surface tension aids voltage transmission without altering dielectric value
1×
…djacent to both voltage surfaces (E9/E10) aids transmission of voltage potential, and the Electrical Charging Effect does not change or alter the dielectric value of water (Re).…
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Atomic Snapping Action repetition-rate determines energy level of Static Electrical Charging Effect
1×
…ing per unit of space-time — directly determines the resultant energy level of the Static Electrical Charging Effect (Figure 8-1, item 585), since Particle Oscillation is used as an 'Energy Generator' (EGpo).…
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Distributed capacitance and inductance of the coil interact with water's dielectric to produce the Electrical Charging Effect
1×
…r Coil (614) interact with the dielectric value of the water bath (85/Re), producing the 'Electrical Charging Effect' illustrated in Figure (7-4).…
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Voltage Wave-Guides forming Water Gap arise from Static-to-Dynamic State Space transition
1×
The Dynamic Electrical Charging Effect (612, Fig 8-1) acts as a progressive Energy Priming Stage (500, Fig 5-1) when Static State Space (790, Fig 8-3) is configured to Dynamic State Space (800, Fig 8-4); the resulting Voltage…
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Static Electrical Charging Effect set up by simultaneous opposite-side Electrical Stress waveform on hydrogen atoms
1×
The Static Electrical Charging Effect (585) is set up when an applied Electrical Stress Wave-form (RD/RD' - ST/ST') is simultaneously applied on opposite sides of the hydrogen atoms, propagating 'Particle Oscillation' as an 'E…
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Dynamic Voltage Stimulation progressively drives further from equilibrium each pulse cycle
1×
…e State of Equilibrium during each Voltage Pulsing Cycle, establishing a variable Dynamic Electrical Charging Effect.…