Resonant Cavity
Also written resonant cavity
As the sources put it
causing Resonant Cavity Zone (35) to function and perform as a voltage wave-guide (86) of Figure (14) since the gradual decrease in cross-sectional circumference area (85) of Figure (14) is in linear progression ...
Where it appears · 160
Documents 36
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Funneling Effect
8× · introduced
…d when incoming Resonant voltage-wave (58) of Figure (18) electrically transmitted across Resonant Cavity Zone (35) during water injection cycle... causing Resonant Cavity Zone (35) to function and perform as a volt…
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Water Fuel Injector (Taper Resonant Cavity Chamber)
6× · introduced
Taper Resonant Cavity Chamber To set up, trigger, and perform Hydrogen Fracturing Process (390) of Figure (3-42) (see WFC Memo 422 DA) gas ignition stage (100) of Figure (6) ... (390) of Figure (3-42) (100) of Figur…
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Taper Resonant Capacitor (ERt)
6× · introduced
…n of usage: (35a) Traveling Constant Electrical Voltage Wave by way of linear cylindrical resonant cavity (Tubular Cavity 730A), (35b) Traveling Compressional (concentrating electrical intensity) Electrical Voltage…
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Instant Explosion of Water
4× · introduced
…on Bounce Phenomenon" to trigger Hydrogen Fracturing Process without amp influxing. Taper Resonant Cavity functions as a "Voltage Amplifier" when interlinked with VIC Circuit. Voltage Intensifier Circuit (60) of Fig…
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Capacitance (Cd)
3× · introduced
…s 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 (616) is occupied by a dielectric li…
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Voltage Intensifier Circuit (60)
3× · introduced
…-20) during Resonant Action (160) of Figure (3-26) when signal coupling is applied across Resonant Cavity (170) of Figure (3-24) via positive voltage zone (66). Figure (3-21) Figure (3-20) Figure (3-26) Figure (3-24…
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Resonant Action
2× · introduced
…sonant Action", as illustrated in (240) of Figure (3-25). To reach maximum gas-yield (88) resonant cavity (170) of Figure (3-25) is shaped into a tubular structure (typically 0.50 inch diameter tube inserted into 0.…
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Propagating Electrical Stress
2× · introduced
…Pulse-Voltage repetition rate sets up the step-up charging effect Figure (1-3) since the "Resonant Cavity" (Cp) functions as a "Capacitor" (ER) due to the dielectric value of the liquid (or gases) which becomes an i…
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8-5 - Energy Vectoring (Ev)
2× · introduced
…d Voltage Pulse Potential (Vpp) Wave-form (s) (Vpwt) and the geometrical configuration of Resonant Cavity (90) of Figure (4-7) as to (730) of Figure (7-12). Figure (4-5) (40) of Figure (4-2) Resonant Cavity (90) of…
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8-4 - State Space (Sp)
1× · introduced
…Tech-manual as "Resonant Action," as illustrated graphically in Figure (5-4 A,B,C) as to Resonant Cavity (170) of Figure (3-25) as to Figure (1-13). 5-4 A 5-4 B 5-4 C (170) of Figure (3-25) Figure (1-13)…
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Triggering Process
1× · introduced
As water mist (68a xxx 68n) is injected and metered into Resonant Cavity (180) of Figure (5-5) (Water Fuel Injector) under pressure, applied Resonant Pulse Voltage (46) performs several functions sequentially in a i…
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Inductance Reactance (Rs - Cd - FL)
1× · introduced
…l (xxx V g xxx Vh xxx Vn) of opposite voltage intensity of equal magnitude (66/67) across Resonant Cavity (140 -170) (Rp) of Figure (7-8) Inductance Pulsing-Core (190) of Figure (3-23) VIC Coil Assembly (580) of Fig…
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Mega Watt Gas Yield
11×
…gy production astronomically from natural water. This is simply done through the use of a Resonant Cavity Fuel Cell, as so illustrated in Figures 12, 17, 19 and 20. RESONANT ACTION AND THE PHENOMENA: The Resonant Ac…
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Gas Processor
7×
…ice (390) (such as a light bulb 11_2) placed between Resonant Charging Choke (56) and Gas Resonant Cavity (410) of Figure (3-34) is added to pulsing circuit (60) to cause and convert liberated electrons (117a xxx 11…
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A Perspective View on Water as Fuel: An Endless Source of Clean Energy
4×
…lsating opposite voltage fields, is design variable. The Injector is a variant of the WFC Resonant Cavity® which enhances the energy output of the WFC energy process. The WFC Resonant Cavity® takes on different phys…
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Deer Creek - Conference Center - Sterling, OH
4×
“The exact same phenomenon is happening with regards to the resonant cavity technology.” “..by giving a charge to the gas atoms, you can now manipulate the speed by which those liberated atoms, can now move within t…
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Electron Extraction Process
4×
…the displaced and moving combustible gas atoms (exiting waterbath and passing through Gas Resonant Cavity (T), Figure (1-17) as to Figure (1-18) to another or separate pulsating laser energy-source (V) at higher vol…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
3×
…he displaced and moving combustible gas atoms (exiting water-bath and passing through Gas Resonant Cavity (T), Figure 20JX as to Figure 20H to another or separate pulsing laser energy-source (V) at higher voltage le…
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8-7 - Application of Usage
3×
…lame-Front that can be utilized for a particular application of usage. For example, Taper Resonant Cavity (590) of Figure (6-2) as to (820B) of Figure (8-6) is ideally suited for internal combustion I. C. engines as…
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Spin Off Technology
2×
…f special connectors or other hardware. STEAM RESONATOR: In the realm of steam power, the resonant cavity technique (see Figures 12, 17, 19 and 20) can be combined with the electrical charging of a single atom (one…
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Introductory Section
2×
…1,234,774 Hydrogen generator system (USA) 3,970,070 Solar heating system (USA) 1,234,773 Resonant cavity hydrogen generator that operates with a pulse voltage electrical potential (CDA) 4,265,224 Multi-stage solar…
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Electron Bounce Phenomenon
2×
…g thermal explosive energy (gtnt) (16) from Water (85) on demand, as illustrated in Taper Resonant Cavity (590) of Figure (6-2) as to (70) of Figure (4-5). Hydrogen Fracturing Process (90) of Figure (5-5) (100) of F…
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CIRCUIT COMPONENT INTERACTION
2×
…rray (E3/E4) forms an inductor-capacitor circuit (LC) since the Excitor-Array (ER) of Gas Resonant Cavity (t) acts or performs as a capacitor during pulsing operations. The Dielectric Properties (insulator to the fl…
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Water Fuel Injector
2×
…rfacing voltage intensifier (VIC) circuit coil-assembly (580) of Figure (6-1) with 'Taper Resonant Cavity" (590) of Figure (6-2), as schematically illustrated in (60) of Figure (3-22) as to pulse core configuration…
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Using water as fuel nears completion
1×
…in the miniaturization phase of his work. He said it costs $1,000 to develop the original Resonant Cavity technology which converts water to gas and controls the rate of gas flow on acceleration. The system is too l…
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8-1 - Propagating "Resonant Action" By Voltage Tickling of State Space
1×
…d by simply changing or altering the physical configuration of the "Voltage Wave-guides" (Resonant Cavity structure of design) in direct reference to applied ever changing Unipolar Voltage Amplitude Pulse-Wave (see…
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Analog Voltage generator (40)
1×
…ltage valves or levels (22a xxx 22n) simply controls the applied voltage potential across Resonant Cavity Assembly (120) of Figure (3-22) through voltage amplitude control circuit (50) of Figure (3-5) which is is el…
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RE: Electrical Particle Generator
1×
…y) (Resistive Wire-Coil R6) Isolated Electrical Ground (w) Laser Energy Injection (v) Gas Resonant Cavity (t) Gas Input (z)…
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8-2 - Traveling Voltage Wave-Guides
1×
…drical axis of rotation having space-gap (35) there between and thus, fanning Cylindrical Resonant Cavity (730A) of Figure (7-12) as to (770A) of Figure (8-1) when space-gap (616) of Figure (720) exposes injected wa…
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VIC Switchover Circuit
1×
…itchover Firing Logic (B+/O - B-/O - O/B - O/B+). In like manner as to linear cylindrical resonant cavity (730) of Figure (7-12), the Differential Voltage Wave-Guide (1040) of (1010) of Figure (11-1) as to Figure (1…
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WFC Exhaust Air Reclaimer
1×
…N02 (940) of Figure (9-5) exposed to Electrical Polarization Process (160) utilizing Gas Resonant Cavity (140) undergoes the same molecule-to-atom separation ... thereby, reversing the degradation effect of burning…
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Amp Inhibiting Circuit Vs Voltage Enhancement
1×
…ge 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 to amp flow) of water which becomes an…
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Gas Destabilization Process
1×
Placement of a pulse-voltage potential across the Excitor-Array (ER) of Gas Resonant Cavity (t) while inhibiting or preventing electron flow within the Voltage Intensifier Circuit (AA) causes the Gas Atom of Argon (…
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Electron Extraction Process
1×
…ated in Figure 1-5. The Electron Extraction Process (BB) is, hereinafter, called "The GAS RESONANT CAVITY," as illustrated in Figure 1-7 as to Figure 20JX.…
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Thermal Explosive Energy
1×
…xpelling "laser-primed" and "electrically charged" combustible gas ions (exiting from Gas Resonant Cavity) to a thermal-spark or heat-zone causes thermal gas-ignition, releasing thermal explosive energy (gmt) beyond…
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In Summation
1×
…d May 2, 1989, Electrical Polarization ProcessU.S. Patent #4,936,961 issued Iune26, 1990, Resonant Cavity Voltage Intensifier Circuit (VIC)U.S. Patent 5,149,407 issued Sept 22, 1992, and other U.S. patents pending u…
Patents 14
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Resonant Cavity for a Hydrogen Generator
3× · introduced
…Wassmeier, Alfons, Dipl.-Ing. et alPostfach 382 Gräfingerstrasse 7D-8400 Regensburg (DE) Resonant cavity for a hydrogen generator. A direct current voltage exciter for utilization in a non-electrolysis process and…
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
25×
…nuation-in-part of Ser. No. 835,564, Mar. 3, 1986, vated state, and then passed through a resonant cavity, abandoned. where successively increasing energy levels are achieved, and finally passed to an outlet orifice…
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Resonant Cavity Hydrogen Generator That Operates with a Pulsed Voltage Electrical Potential
22×
…234 773(45) ISSUED 880405(52) CLASS 204-78 C.R. CL. 158-14 (51) INT. CL. ¢C25B 1/04)(54) Resonant Cavity Hydrogen Generator That Operates With a Pulsed Voltage Electrical Potential(72) Meyer, Stanley A., U.S.A. (21…
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Resonant Cavity for a Hydrogen Generator
22×
…assmiller, Alfons, Dipl.-Ing. et al.Postfach 322 Gräfingerstrasse 7D-8400 Regensburg (DE) Resonant cavity for a hydrogen generator A direct current voltage exciter for utilization in a non-electrolysis process and a…
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
19×
…derived from the fuel gas are stimulated to an activated state, and then passed through a resonant cavity, where successively increasing energy levels are achieved, and finally passed to an outlet orifice to produce…
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Process & Apparatus For The Production Of Fuel Gas & The Enhanced Release Of Thermal Energy From Such Gas
19×
…derived from the fuel gas are stimulated to an activated state, and then passed through a resonant cavity, where successively increasing energy levels are achieved, and finally passed to an outlet orifice to produce…
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A control and driver circuits for a hydrogen gas fuel producing cell
19×
…circuit systems useful in the operation of a water fuel cell including a water capacitor/resonant cavity for the production of a hydrogen containing fuel gas, such as that described in my United States Letter Paten…
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
14×
…gen in which charged ions are stimulated to an activated state, and then passed through a resonant cavity, where successively increasing energy levels are achieved, and finally passed to an outlet orifice to produce…
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Gas Generator Voltage Control Circuit
8×
…application, Ser. No. 422,594, filed Sept. 24, 1982, now abandoned for Hydrogen Generator Resonant Cavity, wherein the principle of physics that physical motion of an element between spatially positioned structures…
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Gas Generator Voltage Control Circuit
8×
…OTd HOS OVINL Page 9 Drawing sheet — no readable text. Page 10 HYDROGEN GAS L / GENERATED RESONANT CAVITY ( INTERFACING ) /V12. RESISTIVE VItN EXCITOR - PLATE NEGATIVE Ls ELECTRICAL Ts POTENTIAL von LVio INLINE RESI…
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A Hydrogen Gas Fuel And Management System For An Internal Combustion Engine Utilizing Hydrogen Gas Fuel
1×
…erated in accordance with the method of my U.S. Pat. No. 4,936,961. Shape and size of the resonant cavity such as described in my U.S. Pat. No. 4,936,961 may vary. Larger resonant cavities and higher rates of consum…
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Controlled Process for the Production of Thermal Energy from Gases and Apparatus Useful Therefor
1×
…gen in which charged ions are stimulated to an activated state, and then passed through a resonant cavity, where successively increasing energy levels are achieved, and finally passed to an outlet orifice to produce…
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Hydrogen Gas Fuel & Management System For An Internal Combustion Engine
1×
…e with the method of my United States Letters Patent No. 4,936,961. Shape and size of the resonant cavity such as described in my Letters Patent 4,936,961 may vary. Larger resonant cavities and higher rates of consu…
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Hydrogen Gas Fuel And Management System For An Internal Combustion Engine Utilizing Hydrogen Gas Fuel
1×
…erated in accordance with the method of my U.S. Pat. No. 4,936,961. Shape and size of the resonant cavity such as described in my U.S. Pat. No. 4,936,961 may vary. Larger resonant cavities and higher rates of consum…
Transcripts 3
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Deer Creek - Conference Center - Sterling, OH - Transcription - Part 2
15×
…on of hydrogen gas — then you go for controllability and develop for controllability. The Resonant Cavity Technology [34:34] Then you must develop the evolution of the technology. And in the development of the techn…
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Deer Creek - Conference Center - Sterling, OH - Transcription - Part 3
1×
…a closed-loop recycling system. Now because we're using high-pulse voltage frequency with resonant cavity technology, if there's only so much energy available to you when you burn hydrogen and oxygen in combustion,…
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Deer Creek - Conference Center - Sterling, OH - Transcription - Part 5
1×
…ger the atomic yield of water. One of the ways of doing it is that, as I mentioned, under resonant cavity activity, once you expose the water molecule to a high pulse voltage frequency and expose it to laser energy…
Bench findings 107
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Excitor Plates can be shaped into three resonant cavity geometries for different voltage wave effects
3×
Excitor Plates (E1/E2) can be configured as: linear cylindrical resonant cavity (Tubular Cavity 730A) producing a Traveling Constant Electrical Voltage Wave; taper cylindrical resonant cavity (730B) producing a Trav…
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Surface area of tapered resonant cavity computed from longitudinal length and circumference points
2×
Surface Area (A) of the Resonant Cavity is expressed via longitudinal length (h) of the tapered resonant cavity, exit pan circumference surface point (a = E9d), and cylindrical circumference surface point (b = E9a)…
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Voltage plates E3/E4 are made of T304 stainless steel using skin effect configuration
2×
…E3/E4), which are chemically inert to the gas ionization process and form the tubular Gas Resonant Cavity (410), sized/shaped similarly to the liquid resonant cavity (170).…
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Capacitor-Gap (Cp) width spacing in Tubular/Taper Resonant Cavity is typically .010–.060 inch
2×
…of Figure 3-25 ~ 35 of Figure 6-2), typically .060 to .010, as illustrated in the Tubular Resonant Cavity (170) versus the Taper Resonant Cavity (620).…
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Electron extractor grid circuit restricts electron replacement in the gas resonant cavity
2×
The electron extractor grid circuit (Figures 8A/8B) is applied to the gas resonant cavity of Figure 5A or 5B; extractor grid 56 is placed adjacent to electric field producing members 44 and 45 within the resonant ca…
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Electron extraction pulse train is gated alternately with the resonant cavity pulse train
2×
The incoming positive waveform applied to the resonant cavity voltage zone through a blocking diode is synchronized with the pulse train applied to the gas resonant cavity via an alternate gate circuit: as one pulse…
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Ignited gas is expelled through Gas Nozzle Port under dynamic pressure
2×
At the termination point of the Resonant Cavity Zone, combustible gas atoms undergo Gas Ignition and are expelled from Gas Nozzle Port (87), allowing thermal gas expansion and releasing thermal explosive energy beyo…
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VIC electronic interfacing circuit components identified
2×
…stive wire coil), Blocking Diode (14), Resonant Charging Choke (43, resistive wire coil), Resonant Cavity Inner Surface (45, Positive Electrical Voltage Zone), and Resonant Cavity Outer Surface (44, Negative Voltage…
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Linear Resonant Cavity suited for cutting-torch applications
1×
Linear Resonant Cavity (730A, Fig 7-12), corresponding to Figure (820A), is used for Cutting-Torch applications.…
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Resonant Pulse Voltage converts injected water mist into component gases
1×
As water mist (68a-68n) is injected and metered under pressure into the Resonant Cavity (180) of the Water Fuel Injector, the applied Resonant Pulse Voltage (46) converts the water mist into its component gases: hyd…
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Resonant Pulse Voltage ionizes liberated gases via electron ejection
1×
…zes the liberated gases by way of electron ejection (230), acting sequentially within the Resonant Cavity of the Water Fuel Injector.…
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VIC exploits Electron Bounce Phenomenon to trigger Hydrogen Fracturing without amp influx
1×
…enomenon' to trigger the Hydrogen Fracturing Process without amp influxing, and the Taper Resonant Cavity functions as a Voltage Amplifier when interlinked with the VIC Circuit.…
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VIC circuit (60) uses copper wire-wrap Resonant Charging Chokes with a Switching Diode to enable Electron Bounce and Step Charging
1×
…ting the Step Charging Effect (628, Figure 7-7) by preventing electrical discharge of the Resonant Cavity (140-170) since the Blocking Diode acts as an open switch during pulse off-time.…
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VIC patented as Resonant Cavity Voltage Intensifier Circuit under US #4,936,961
1×
U.S. Patent #4,936,961, issued June 26, 1990, covers the Resonant Cavity Voltage Intensifier Circuit (VIC).…
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WFC capacitor forms when water dielectric is placed between excitor plates under opposite polarity voltage
1×
The Resonant Cavity forms capacitor (ER) when the dielectric liquid of water (85) is placed or injected between electrical conducting plates (E9/E10) while applied voltage Potential of opposite polarity (66/67) is d…
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Higher amplitude pulses drive coupling field through both inductors, increasing opposite-polarity voltage across the Resonant Cavity
1×
…hokes and increasing voltage potential of opposite polarity of equal magnitude across the Resonant Cavity.…
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Resonant cavity gap-size must be sufficient to allow the Quenching Effect
1×
Each resonant cavity design functions as a Voltage Wave-guide (570) with a gap-size (35) sufficient enough to allow the 'Quenching Effect' to take place, as illustrated in Figure 7-12 (730) and Figure 3-40 (370).…
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Force-yield during gas-ignition is directly related to water volume per injection cycle and resonant voltage intensity
1×
…the applied Resonant Voltage Intensity (Vo-Vn), as illustrated relating Figure 6-2 (Taper Resonant Cavity) to Figure 5-5 (Hydrogen Fracturing Process).…
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Resonant Cavity (Cp) functions as a capacitor whose dielectric is the liquid/gas within it
1×
Pulse-Voltage repetition rate sets up a step-up charging effect (Fig 1-3) since the Resonant Cavity (Cp) functions as a Capacitor (ER) due to the dielectric value of the liquid (or gases) contained, which becomes an…
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Blocking Diode (52) prevents Resonant Cavity from discharging during pulse off-time
1×
…allows the unipolar pulse-wave to go more positive on each pulse cycle by preventing the Resonant Cavity (Cp) from discharging during pulse off-time (Fig 1-4, 60 of Fig 3-22), allowing developed Electrical Stress a…
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Differential Voltage Wave-Guide uses concentric tube construction like resonant cavity
1×
…en them to allow water to pass through, similar in construction to the linear cylindrical resonant cavity (730).…
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Gas Resonant Cavity applies Electrical Polarization Process to NO2
1×
…trogen Dioxide NO2 (940) exposed to the Electrical Polarization Process (160) via the Gas Resonant Cavity (140) undergo the same molecule-to-atom separation, liberating oxygen (O2) for reuse.…
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VIC coil-assembly interfaces with Taper Resonant Cavity
1×
…ier circuit (VIC) coil-assembly (580, Fig 6-1) is electrically interfaced with the 'Taper Resonant Cavity' (590, Fig 6-2), as schematically shown in Fig 3-22 relative to pulse core configuration (190, Fig 3-23).…
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Resonant frequency is determined by water's dielectric constant and cavity geometry
1×
…ency is determined by the dielectric value of natural water in direct relationship to the resonant cavity's geometrical configuration; water's dielectric value is stated as 78.54 because the water molecule's oxygen…
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Gas atoms pass through Gas Resonant Cavity to second laser energy source at higher voltage
1×
Displaced combustible gas atoms exit the waterbath and pass through the Gas Resonant Cavity (T), then are exposed to a separate pulsating laser energy-source (V) at higher voltage levels (E3/E4), causing more electr…
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Electron Extraction Process (BB) is called the Hydrogen Gas Gun, mounted on Resonant Cavity Assembly
1×
…ction Process (BB) is hereinafter called 'The Hydrogen Gas Gun' and is placed on top of a Resonant Cavity Assembly, as illustrated in Figure (1-17) as to Figure (1-18).…
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Ignited gas ions from Gas Resonant Cavity release thermal explosive energy beyond Gas-Flame Stage
1×
…sing expelling laser-primed and electrically charged combustible gas ions exiting the Gas Resonant Cavity to a thermal-spark or heat-zone causes thermal gas-ignition, releasing thermal explosive energy (gmt) beyond…
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Voltage levels control applied voltage across Resonant Cavity Assembly via amplitude control circuit and primary coil
1×
Voltage levels (22a...22n) control the applied voltage potential across Resonant Cavity Assembly (120) of Figure (3-22) through voltage amplitude control circuit (50), which is electrically linked to the primary coi…
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VIC formed by primary/secondary coils, diode, chokes, and resonant cavity
1×
…lsing core (53), secondary coil (52), switching diode (55), resonant charging choke (56), resonant cavity assembly (170), natural water (68), and variable resonant charging choke (62) together form the Voltage Inten…
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Resonant cavity encapsulated in delrin insulator to prevent amp leakage to water
1×
…age (electron coupling to water) to the water bath (68) is prevented by encapsulating the resonant cavity (57) in delrin material (72), an electrical insulator to high voltage that remains resilient to water absorpt…
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Resonant cavity tube geometry: 0.50 in tube inside 0.75 in tube, 0.0625 in gap, 3 in long
1×
To reach maximum gas-yield, the resonant cavity is shaped as a tubular structure — typically a 0.50 inch diameter tube inserted into a 0.75 inch diameter tube with a 0.0625 inch concentric air-gap, 3 inches long — f…
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Electron Extraction Circuit functions like the VIC but adds an amp-consuming device
1×
…90), such as a light bulb, is placed between the Resonant Charging Choke (56) and the Gas Resonant Cavity (410), converting liberated electrons into radiant heat/light energy.…
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Ambient air gas dielectric breakdown occurs around 17,000 volts across a one-inch gap
1×
…0 volts applied between voltage plates (E3) and (E4), which form the capacitor of the Gas Resonant Cavity (410).…
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Laser energy is injected into the Gas Resonant Cavity via an optical lens to further destabilize gas atoms
1×
Emitted laser energy (electromagnetic energy having zero mass) is injected into the Gas Resonant Cavity (410) via optical lens (121), superimposed onto the gas ionization process and absorbed by the gas atom nucleus…
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Gas Processor assembly consists of gas resonant cavity, electron extraction circuit, and optical lens
1×
In terms of assembly, the gas resonant cavity (410), electron extraction circuit (270), and optical lens (121) together form the gas processor (260).…
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Water fuel-droplets enter Taper Resonant Cavity around positive probe
1×
…rround the outer surface area of the exposed positive probe (33) while entering the Taper Resonant Cavity (180), as illustrated in Figure (3B) and Figure (14).…
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Electrical Polarization Process separates water molecule into oxygen and hydrogen
1×
Once water fuel-droplets fully occupy the Resonant Cavity Zone (35) and are exposed to pulsating opposite electrical voltage fields (49/51) per voltage waveform (280) of Figure (17), the Electrical Polarization Proc…
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Resonant Pulsing Circuit topology: capacitor (water cell) in series with chokes on opposite sides of cavity
1×
…r (E7/E8) in series with Resonant Charging Chokes (56/57) placed on opposite sides of the Resonant Cavity Zone (35), together forming the Resonant Pulsing Circuit (110) of Figure (7) with the step-up Pulsing Transfo…
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Resonant pulse frequency transmitted to cavity via electrical tabs 71 and 72
1×
…frequency (58) from being impaired or altered while being electrically transmitted to the Resonant Cavity (180) of Figure (14) via electrical tabs (71) and (72).…
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Resonant Cavity Zone tapers cross-section to create Funneling Effect
1×
The Resonant Cavity Zone (35) has a gradually decreasing cross-sectional circumference (85), acting as a voltage wave-guide (86) that reduces the parallel voltage surface areas (83/84) from a larger segment (85a) to…
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Cavity gap is sized ~0.010 inch to act as a Quenching Circuit and prevent pre-ignition
1×
To prevent pre-ignition of gases traveling toward the Exit-Port (87), the open resonant cavity's parallel dimension between the positive voltage surface (82) and negative voltage surface (83) is kept small, typicall…
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Shunting Effect compensates for water impurity and provides instant power boost
1×
The resultant Shunting Effect allows voltage intensity across the Resonant Cavity Zone (35) to compensate for water impurity that might alter operational parameters of the Hydrogen Fracturing Process, and also provi…
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Attenuated variable voltage amplitude expands gated pulse width, forming step-up voltage waveform
1×
…form (77), which combined with the Funneling Effect maximizes voltage dynamics across the Resonant Cavity (35).…
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Pulse-voltage repetition rate sets up step-up charging effect via Resonant Cavity capacitor
1×
…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 inte…
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Water acts as dielectric/resistance-to-amp-flow within the VIC resonant cavity capacitor
1×
…es resistance to amp flow, allowing it to function as an integral capacitive element (the Resonant Cavity) within the VIC Circuit.…
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Resonant Charging Choke and Excitor-Array form an LC circuit
1×
…(E3/E4) forms an inductor-capacitor (LC) circuit, since the Excitor-Array (ER) of the Gas Resonant Cavity (t) acts as a capacitor during pulsing operations.…
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Argon gas dielectric constant forms the Gas Resonant Cavity capacitor
1×
…ant 1.000545 @ 23°C) between electrical plates (E3/E4) form the capacitor (ER) of the Gas Resonant Cavity (t).…
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Pulse-voltage across Excitor-Array ionizes argon gas atom
1×
Placing a pulse-voltage potential across the Excitor-Array of the Gas Resonant Cavity, while inhibiting electron flow within the Voltage Intensifier Circuit, causes the argon gas atom to become a positively charged…
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Electron Extraction Process (BB) is also called the Gas Resonant Cavity
1×
…hown in Figure 1-7 (corresponding to Figure 20JX), is hereinafter referred to as 'The GAS RESONANT CAVITY.'…
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Ion particle collision with water molecules increases gas yield (compounding/resonant action)
1×
…nizes other liberated atoms beyond light absorption, liberating more electrons inside the resonant cavity (44).…
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Dual-pulsing circuit integrates with VIC to drive resonant cavity
1×
…ion beyond simple voltage attenuation via compounding-action (particle impact) within the resonant cavity.…
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Gated pulse on/off time adjustable 1% to 100% duty time
1×
…ated pulse (J) is proportionally changed to concentrate or expand applied voltages to the resonant cavity (44); the gated pulse train's on-time (53) versus off-time (54) is adjustable from 1% to 100% duty time. As o…
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Voltage amplitude (d) stepped up to range under 1V to 5,000V+ applied to cavity
1×
…tude (d) is varied to increase gas-yield; after step-up, the applied voltage range to the resonant cavity (44) is from less than one volt to 5,000 volts or more.…
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Voltage amplitude (f) sustains compounding-action and scales with cavity size
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Voltage amplitude (f) is varied to sustain compounding-action within the resonant cavity (44) and is adjusted according to cavity size; an increase in voltage amplitude (f) is required as cavity-size increases. Once…
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Voltage amplitude (d) must always exceed voltage amplitude (f)
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…er be less than voltage amplitude (f), in order to maintain compounding action within the resonant cavity.…
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Variable gate circuit (55) retrofits to extend gas production across multiple cavities
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…dual-pulsing circuit of Figure 20C to extend gas production beyond the limits of a single resonant cavity, minimizing power loading while adding another gas control feature.…
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Resonant cavity (44) is made of Stainless Steel T304
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The resonant cavity, identified as element 44, is formed using Stainless Steel T304 material.…
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Resonant cavity (44) shape/size varies to meet gas need, including spherical and longitudinal forms
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The resonant cavity (44) can take on different shapes and sizes to meet a predetermined gas need, with spherical and longitudinal resonant cavities given as examples.…
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A variable pulsing circuit is used to tune-in resonant action regardless of cavity shape/size
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…capable of tuning-in resonant action regardless of the shape and dimensional size of the resonant cavity (44).…
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Laser Injected Resonant Cavity enhances hydrogen gas yield before ignition
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The Laser Injected Resonant Cavity's purpose is to enhance hydrogen gas-yield beyond the voltage parameters and compounding-action (resonant-action) prior to gas ignition, helping liberated gas atoms reach the state…
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Semiconductor lasers used in packaged form to deliver light energy to resonant cavity
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…r lasers are used in packaged form to transmit the generated laser or light energy to the resonant cavity.…
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Geometrical gas rate plateaus when water flow into the resonant cavity becomes constant or reduced
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The geometrical gas production rate peaks out or stops when water flow rate into the resonant cavity becomes constant or reduced during gas production.…
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Accelerator tube (56) placed between resonant cavity stages increases particle collision
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To increase particle collision, accelerator tube (56) of Figure 20A is placed between resonant cavity stages (Figures 20 and 20D); expelled charged gases move through oppositely electrically charged plates/voltage z…
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Sequential gate circuit (58) increases gas particle velocity per attraction stage
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…raction stage (57); increasing particle velocity directly increases gas yield to the next resonant cavity stage.…
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Multiple accelerator tubes per stage and gate switching (58) control gas production on demand
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Adding more accelerator tubes (56a through 56n, Figure 20B) per resonant cavity stage increases gas yield further; varying the gate switch circuit (58) or sequentially switching accelerator tube arrays (parallel or…
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WFC housing uses electrically insulating material (plastic or spun glass) to prevent discharge underwater
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To prevent electrical discharge of gas particles when the resonant cavity (44) and gas attraction zones (57) are submerged in natural water, the fuel cell housing is composed of electrical insulating material such a…
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Resonant cavity fuel cell can produce over 115 cc/min of gas at 1 amp leakage current
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The resonant cavity fuel cell can produce more than 115-cc/min of gases at one amp leakage.…
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VIC Resonant Cavity forms opposite voltage zones using water as dielectric
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The Resonant Cavity Assembly (4) has an inner surface (45) forming a Positive Electrical Voltage Zone and an outer surface (44) forming a Negative Voltage Zone. Natural water inside the cavity provides the dielectri…
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Second Resonant Charging Choke (47) placed between negative voltage zone (44) and ground (48)
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…t electrical ground (48) to help maintain the resistance value (voltage level) within the Resonant Cavity during charging.…
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Resonant Cavity Structure shape varies with applied voltage amplitude vs pulse frequency, 0-5000V, 0-1MHz
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…plied voltage amplitude in direct relationship to a variable pulse voltage frequency, the Resonant Cavity Structure can take different shapes to maximize voltage stimulation of the water molecule to release hydrogen…
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Resonant Cavity surfaces 44/45 form the capacitance of the assembly
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The voltage zone surface areas (44/45) of the Resonant Cavity Assembly (Figure 12) form the capacitance value of the assembly, with natural water inside the cavity providing the dielectric between the two voltage zo…
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Choke (47) maintains cavity capacitance/voltage level as amp inhibitor
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…) and electrical ground (48), helps maintain capacitance value (voltage level) within the Resonant Cavity during voltage pulsing, with its resistive wire-coil value acting as a resistor similar to Choke (43).…
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Electron Extractor Grid (51) placed above the Gas Resonant Cavity to capture liberated electrons
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…ectron Extractor Grid (51) is positioned on top of and in spatial relationship to the Gas Resonant Cavity Structure (110) of the Hydrogen Gas Gun, per Figure 20YID/20JX, to capture electrons liberated during the Hyd…
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Electron Extraction Circuit routes liberated electrons to an electrical load via positive potential attraction
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…ectrical potential (54) is applied on the opposite side; electrons are drawn from the Gas Resonant Cavity (110) by opposite-polarity attraction and their interaction with the resistive wire causes amp consumption vi…
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Blocking diodes and gated pulse trains synchronize Electron Extraction with Hydrogen Fracturing
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…rogen Fracturing Process, the amp-consuming circuit (180) can connect directly to the Gas Resonant Cavity's positive voltage zone (45) through blocking diode (14), synchronized with pulse train (62) via alternate ga…
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Electron Extraction Process prevents spark-ignition by controlling electron build-up and gas flow-rate
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…this process also prevents spark-ignition of combustible gases traveling through the Gas Resonant Cavity (110) by preventing electron build-up.…
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Steam Resonator purpose: superheated steam via pulsating voltage fields with restricted amp flow
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The Steam Resonant Cavity produces superheated steam by applying pulsating voltage fields on opposite sides of a water molecule while restricting amp flow, using an alternate pulsing circuit (Q5/Q6) feeding a dual-p…
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Two VIC circuits (60) and (70) drive opposing Excitor Plates forming the Steam Resonant Cavity
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…m Voltage Intensifier Switching Circuit (AA), and Excitor Plates (61) and (69) form Steam Resonant Cavity (80) of Figure 32.…
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Water dielectric turns the Resonant Cavity into a capacitor within the VIC, enabling >40kV output
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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…
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VIC Diagram AA topology: gated pulse train through blocking diode into bifilar chokes forming resonant cavity capacitor
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…ctance core; the resulting coupling magnetic fields (Rp1/Rp2) act across the water-filled Resonant Cavity capacitor (ER) between positive (B+) and negative (B-) voltage zones separated by a water gap.…
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Voltage Chamber can be fully SELF-ENCLOSED OUTSIDE the water bath (dry gas-phase conditioning stage)
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…re-energizes / rarefies the gas passing through it downstream. Consistent with the taper resonant cavity and traveling voltage wave-guide being gas-phase (open-air conical cavity, not water-immersed). ENGINEERING R…
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Stainless steel voltage plates form voltage zones regardless of resonant cavity geometry
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…ally form voltage zones (66/67) regardless of the geometric shape or configuration of the resonant cavity.…
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Figure 8 of #4,798,661 IS a voltammogram — voltammetry formalizes my voltage-vs-leakage ladder
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…itor electrical isolation (L4), inline resistor (L5), resistive excitor-plate (L6). - Ln, resonant cavity interfacing: hydrogen gas generated at maximum potential with leakage still inhibited. The modern method make…
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WFC water gap dielectric is natural water with no electrolyte added
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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.…
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Variable circuit 30 controls rectified voltage amplitude tied to gas rate function
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…olled by the gas rate function, operating separately, sequentially, and together with the resonant cavity phenomena.…
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Hydrogen Resonant Cavity Furnace flame is pulsed between gradient levels, never fully off, to sustain resonance
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In the Hydrogen Resonant Cavity Furnace, pulse repetition rate is matched to the wavelength distance between the two exciter plates; the flame is pulsed from a higher gradient level to a lower one (Va) but not off,…
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Resonant cavity plates made of stainless steel T-304
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The conductive plates of opposite electrical polarity used in the resonant cavity are preferably constructed of stainless steel T-304, chosen because it is noncorrosive and reactive with water, hydrogen, or oxygen.…
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Resonant cavity progressively steps gas energy to higher levels via pulsed input
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Gas waves are repeatedly subjected to the resonant cavity (shown in FIG. 4 as a coil) while providing thermal explosive energy, where one pulse ignites the gases and changes them to successively higher energy levels…
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Two directional gas valves connect to plates leading into the resonant cavity
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…gas valves are connected to the plates, leading to destabilization of the gas within the resonant cavity.…
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Voltage Intensifier Circuit (FIG. 7) provides excitation voltage as current-restricting source
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…as a current-restricting voltage source to provide the excitation voltage applied to the resonant cavity, sustaining atomic elongation prior to gas ignition.…
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Ionization triggered at potential of approximately several thousand volts
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A potential of approximately several thousand volts applied to the gas ions in the resonant cavity/injector assembly triggers the ionization state; the pulsating voltage is repetitive without polarity change, so ato…
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Gas resonant cavity chamber formed by electrodes 12 and 13 (FIGS. 5A/5B)
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…. 5A, 5B) formed within electrodes 12 and 13 of opposite electrical polarity, producing a resonant cavity where gas ions reach a critical energy state.…
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Electron extractor grid restricts electron replacement in resonant cavity
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…r grid (56) is placed adjacent to electric field producing members (44 and 45) within the resonant cavity.…
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Electron extraction circuit draws liberated electrons to an electrical load via positive potential
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…he positive potential is pulse-applied, negatively charged electrons liberated in the gas resonant cavity are drawn into the resistive load and released as heat or light energy.…
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Electron extraction prevents spark-ignition in the gas resonant cavity
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…ed voltage, and it prevents spark-ignition of combustible gases traveling through the gas resonant cavity by preventing electron build-up.…
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Larger resonant cavities require higher pulsing frequencies up to 50 kHz and above
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Shape and size of the resonant cavity (per U.S. Pat. No. 4,936,961) may vary; larger resonant cavities and higher rates of consumption of water in the conversion process require higher operating frequencies, up to 5…
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VIC transformer secondary connects via diode and choke to water capacitor cell
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The secondary (TX2) transformer is connected to the resonant cavity water capacitor cell via a high speed switching diode and resonant charging chokes (TX4, TX5), forming a closed loop circuit that uses water's diel…
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Voltage Intensifier Circuit acts as current-restricting voltage source for resonant cavity excitation
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…e 7) is used as a current restricting voltage source to provide excitation voltage to the resonant cavity, sustaining atomic elongation of gas ions before ignition, while an interconnected electron extractor circuit…
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Electron sink/grid coordinated with resonant cavity pulsing via synchronization circuit
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…n configuration; this extraction is synchronized with the pulsing electrical field of the resonant cavity (Figure 7) via an interconnected synchronization circuit (Figure 8B), connecting point 'A' of each circuit.…
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Gas resonant cavity uses lasers or photon source to promote gas ionization
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In the gas resonant cavity (Figure 5A), semiconductor optical lasers 20a-20p surround the gas flow path, or in Figure 5B photon energy 20 is injected into a separate absorption chamber 21, directing electromagnetic…
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Electron extractor circuit routes liberated electrons to an electrical load as usable energy
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The extractor grid circuit allows electrons liberated in the gas resonant cavity to flow to an electrical load (55, e.g. a light bulb or resistive heater) when a positive electrical potential is applied on the oppos…
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Electron extraction prevents spark-ignition by avoiding electron build-up in the gas resonant cavity
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…plied voltage, and prevents spark-ignition of combustible gases traveling through the gas resonant cavity by preventing electron build-up and potential sparking.…
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Larger resonant cavities with higher water conversion rates require pulsing frequencies up to 50 kHz and above
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Shape and size of the resonant cavity (as described in US 4,936,961) may vary; larger cavities and higher rates of water conversion require higher operating frequencies, up to 50 kHz and above, with the pulsing rate…
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Voltage wave-guide formed by two parallel s/s tube surfaces with space-gap between
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…nship about a cylindrical axis of rotation, separated by a space-gap, forming Cylindrical Resonant Cavity (730A).…
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'Resonant Action' is voltage tickling of State Space via resonant electrical stress without current draw, tuned to water's dielectric properties
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…ric properties of water, is referred to as 'Resonant Action,' illustrated relative to the Resonant Cavity (170) of Figure 3-25.…
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Taper Resonant Cavity suited for I.C. engines and rocket engines
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Taper Resonant Cavity (590, Fig 6-2), corresponding to (820B, Fig 8-6), is ideally suited for internal combustion engines and rocket engines where high thrust-yield of explosive power (gtnt) is required.…
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Expanding Resonant Cavity suited for furnace applications
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Expanding Resonant Cavity (730C, Fig 7-12), corresponding to (820C, Fig 8-6), is best suited for furnace applications.…