Gas Resonant Cavity
As the sources put it
In terms of assembly, gas resonant cavity (410), electron extraction circuit (270), optical lens (121) forms gas processor (260) of Figure (3-31).
Where it appears · 35
Documents 9
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Gas Processor
5× · introduced
…device (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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CIRCUIT COMPONENT INTERACTION
2× · introduced
…or-array (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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Electron Extraction Process
2× · introduced
…ing 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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WFC Exhaust Air Reclaimer
1× · introduced
…xide 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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Thermal Explosive Energy
1× · introduced
…he expelling "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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Gas Destabilization Process
1× · introduced
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 (Ar)…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
2×
…ng the 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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RE: Electrical Particle Generator
1×
…ke (y) (Resistive Wire-Coil R6) Isolated Electrical Ground (w) Laser Energy Injection (v) Gas Resonant Cavity (t) Gas Input (z)…
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Electron Extraction Process
1×
…ustrated 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.…
Patents 3
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
15×
…LASER ASSY VARIABLE PULSE VOLTAGE | | FREQUENCY NC INPUT COMBUSTIBLE GAS INPUT Page 4 21 GAS RESONANT CAVITY PHOTON Ceseescens) THERMAL EXPLOSIVE VOLTAGE ABSORPTION ENERGY CHAMBER 3 Se eccecese) CHAMBER (gint) ADJUSTAB…
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Process & Apparatus For The Production Of Fuel Gas & The Enhanced Release Of Thermal Energy From Such Gas
11×
…n the production of thermal explosive energy. FIG. 5A shows a cross-section of a circular gas resonant cavity used in the final stage assembly of FIG. 4 FIG. 5B shows an alternative final stage injection system useful i…
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
10×
…Figure 4 - Staged Arrangement of Apparatus Figure 5A shows a cross-section of a circular gas resonant cavity used in the final stage assembly of Figure 4. Figure 5A - Gas Cavity Cross-Section Figure 5B shows an alterna…
Bench findings 23
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Gas Resonant Cavity applies Electrical Polarization Process to NO2
1×
…s Nitrogen 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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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 electrons…
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Ignited gas ions from Gas Resonant Cavity release thermal explosive energy beyond Gas-Flame Stage
1×
Exposing 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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Electron Extraction Circuit functions like the VIC but adds an amp-consuming device
1×
…e (390), 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×
…7,000 volts applied between voltage plates (E3) and (E4), which form the capacitor of the Gas Resonant Cavity (410).…
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Voltage plates E3/E4 are made of T304 stainless steel using skin effect configuration
1×
…es (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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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, de…
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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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Resonant Charging Choke and Excitor-Array form an LC circuit
1×
…ray (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×
…onstant 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 ion…
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Electron Extraction Process (BB) is also called the Gas Resonant Cavity
1×
…nd shown in Figure 1-7 (corresponding to Figure 20JX), is hereinafter referred to as 'The GAS RESONANT CAVITY.'…
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Electron Extractor Grid (51) placed above the Gas Resonant Cavity to capture liberated electrons
1×
…n Electron 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
1×
…e electrical 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
1×
…Hydrogen 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
1×
…58); 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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Electron extraction prevents spark-ignition in the gas resonant cavity
1×
…pplied voltage, and it prevents spark-ignition of combustible gases traveling through the gas resonant cavity by preventing electron build-up.…
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Electron extraction circuit draws liberated electrons to an electrical load via positive potential
1×
…as the 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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Gas resonant cavity uses lasers or photon source to promote gas ionization
1×
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 wave…
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Electron extractor grid circuit restricts electron replacement in the gas resonant cavity
1×
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 cavity…
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Electron extractor circuit routes liberated electrons to an electrical load as usable energy
1×
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 opposite…
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Electron extraction pulse train is gated alternately with the resonant cavity pulse train
1×
…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 train gates 'ON,' the other switches 'OFF.'…
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Electron extraction prevents spark-ignition by avoiding electron build-up in the gas resonant cavity
1×
…o applied voltage, and prevents spark-ignition of combustible gases traveling through the gas resonant cavity by preventing electron build-up and potential sparking.…