thermal explosive energy
Also written Thermal Explosive Energy
As the sources put it
Once triggered, the thermal explosive energy output is controllable by the attenuation of operational parameters.
Where it appears · 74
Documents 34
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A Perspective View on Water as Fuel: An Endless Source of Clean Energy
11× · introduced
…rator is by far the most economical way to tap into Zero Point Energy—instantly releasing thermal explosive energy (gtnt) up to and beyond 2.4 million barrels of oil per gallon of water—while being environmentally safe. Osci…
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Water Fuel Injector (Taper Resonant Cavity Chamber)
4× · introduced
…nition stage (100) of Figure (6) ... (390) of Figure (3-42) (100) of Figure (6) releasing thermal explosive energy (gtnt) via flame projection (16) of Figure (3B) as to Figure (14), Water Fuel Injection System (10) of Figure…
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Water Fuel Injection System - Page 1
3× · introduced
…self-contained Fuel-unit having no pressurized vessel which converts water directly into thermal explosive energy (gtnt) on demand, as illustrated (10) of Figure (4-1) as to Figure (40) of Figure (4-2). Figure (4-1) Figure…
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Thermal Explosive Energy
2× · introduced
…s Resonant Cavity) to a thermal-spark or heat-zone causes thermal gas-ignition, releasing thermal explosive energy (gmt) beyond the Gas-Flame Stage, as illustrated in Figure (1-19) as to (1-18). Figure (1-19) Figure (1-18) T…
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Gas Modulator Process
2× · introduced
…(3-24), now, becomes and functions as a "Gas Mixing Regulator" since the highest possible thermal explosive energy yield (gtnt) obtainable from hydrogen during "normal" gas ignition (98) is the exact composition of water whe…
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Hydrogen Fracturing Process
2× · introduced
…gen fuel gas (103) is, now, exposed to thermal spark ignition process (98) which triggers thermal explosive energy-yield (gtnt) (127) that causes piston-action (105) of Figure (3-38) to exceed normal gas combustion process a…
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In Summation
2× · introduced
…ydrogen Gas Gun Assembly. The Hydrogen Fracturing Process has the capability of releasing thermal explosive energy up to and beyond 2.5 million barrels of oil per gallon of water under controlled state …which simply prevents…
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Aviation Application
1× · introduced
…elf-contained Fuel-unit having no pre-pressurized vessel which converts water directly in thermal explosive energy (gtnt) on demand, as illustrated in WFC memo 423 DA. In terms of mechanical interfacing: Water Fuel Injector…
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Amp Inhibiting Circuit Vs Voltage Enhancement
1× · introduced
…nt (Voltage Amplitude) can exceed 40 kilovolts to instantly convert water (droplets) into thermal explosive energy (gtnt), as so illustrated in voltage Intensifier Circuit Diagram (Figure 1-18). Both VIC Dual Single-Coil (Fi…
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VIC Matrix Circuit
1× · introduced
…"opposite electrical attraction force" of High Voltage Intensity" to "instantly" release Thermal Explosive Energy (gtnt) from natural water. The Voltage Intensifier Circuit takes advantage of the "Electron Bounce Phenomenon…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
5×
…hen, prevents the formation of the water molecule during thermal gas ignition...releasing thermal explosive energy beyond "normal" gas burning levels under controlled state. Circuit Component Interaction: Pulsing Transformer…
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Water Fuel Injection System
5×
…self-contained Fuel-unit having no pressurized vessel which converts water directly into thermal explosive energy (gtnt) on demand, as illustrated (10) of Figure (1) as to Figure (40) of Figure (2B 1-2). Operationally, Wate…
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Mode of Operability
3×
…ectrical Attraction Force (SS' - RR') of high voltage intensity (Vn) to instantly release thermal explosive energy (gtnt) from natural water. Voltage Compressional Wave-form (35b) and Expanding Voltage Waveform (35c) increas…
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Triggering Process
2×
…atic Pressure" that directly attenuates Energy Apertures (7a xxx 7n) (520) .... releasing thermal explosive energy (gtnt) beyond normal gas burning levels on demand, as illustrated in Figure (5-5). Once a quantum amount of t…
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Electron Bounce Phenomenon
2×
…acturing Process (90) of Figure (5-5) as to (100) of Figure (4-8) ... instantly releasing thermal explosive energy (gtnt) (16) from Water (85) on demand, as illustrated in Taper Resonant Cavity (590) of Figure (6-2) as to (7…
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Mega Watt Gas Yield
2×
…ombustible gas ions to reach critical state... causing said gas ions to decay...releasing thermal explosive energy beyond the gas flame stage. The point of atomic energy-yield is simply reached when the electron deficient ox…
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Capacitance Reactance
2×
…ER) should remain relatively small due to the dielectric value of water to obtain maximum Thermal Explosive Energy-Yield (16a xxx 16n) of Figure (4-5) and subsequently establishing Quenching Circuit (370) of Figure (3-40) to…
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8-1 - Propagating "Resonant Action" By Voltage Tickling of State Space
2×
…Space The "mode-of-operability" of determining the "operational parameters" of releasing thermal explosive energy (gtnt) (flame force-yield) in direct relationship to thermal heat-yield (flame temperature) beyond applied vo…
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Hydrogen Fracturing Process
1×
…n, prevents the formation of the water molecule during thermal gas ignition ... releasing thermal explosive energy beyond "normal" gas burning levels under control state ... and the atomic energy process is environmentally s…
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Using Water as Fuel
1×
…nitiates the triggering process once maximum voltage deflection is achieved ... releasing thermal Explosive Energy (gtnt) beyond normal gas burning levels. The energy contained in a gallon of water exceeds 2.5 million barrel…
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Reclaiming Our Air ... For Healthy Living
1×
…l encouraging the use of "Water" as a new "Fuel" source since the by-product of releasing thermal explosive energy (gtnt) from water is simply "Water Mist" which is energy recyclable by absorbing solar-energy from the incomi…
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Instant Explosion of Water
1×
…Opposite Electrical Attraction Force" of "high voltage intensity" to "instantly" releases thermal explosive energy (gtnt) from natural water. The Voltage Intensifier Circuit takes advantage of the "Electron Bounce Phenomenon…
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Propagating Electrical Stress
1×
…nt (Voltage Amplitude) can exceed 40 kilovolts to instantly convert water (droplets) into thermal explosive energy (gtnt) on demand, as so illustrated in Voltage Intensifier Circuit Diagram (970) of Figure (10-1). Blocking D…
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Taper Water Fuel Injectors
1×
…c pressure) are exited out of and away from exit port (32) of Figure (6- 2) ... producing thermal explosive energy-yield (16), as further illustrated in (70) of Figure (4-5) titled "Voltage Triggering". Basically, then, acti…
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Resistance (Rs)
1×
…Process (390) of Figure (3-42) in an instant of time (390) of Figure (3-42) ... releasing thermal explosive energy (gtnt) (16) of Figure (4-5) on demand from natural water (85) of Figure (3-26) since the dielectric value (Re…
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Voltage to Amp Differential Ratio
1×
…Stress (RU-RU' a xxx ST -ST'n) applied (64B+/64B-a xxx 64B+/64B-), the greater amount of thermal explosive energy (16/gtnta xxx 16/gtntn) of Figure (6-2) as to (70) of Figure (4-5) is released from Resonant Water Gap (Cp) (…
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WFC Development Objectives
1×
…(6-2) "FullSystem" development (10) of Figure (4-1) ...since the by-product of releasing thermal explosive energy (gtnt) from water is simply 'Water Mist" which is "Energy Recyclable" by absorbing "Solar-Energy" from the in…
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8-5 - Energy Vectoring (Ev)
1×
The "mode of operability" of determining the "Operational Parameters" of adjusting the thermal explosive energy (gtnt) exiting from nozzle-port (32) of Figure (4-5) as to (40) of Figure (4-2) is directly related to the chara…
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In Application of Usage
1×
…- Vn) of Figure (6-4) is achieved at Activation-Point (E9d) of Figure (6-2) ... releasing thermal Explosive Energy (gtnt) from the atomic level of the water molecule. (230) of Figure (3-30) (270) of (3-34) (57) of Figure (6-…
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Water Fuel Injection System - Page 2
1×
…t (10) of Figure (4-10) performs several functions simultaneously to initiate and trigger thermal explosive energy-yield (gtnt) (16) beyond normal gas burning levels: Figure (4-9) Figure (4-10) Water droplets (28a xxx 28n) e…
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Water Fuel Injection System - Page 3
1×
…8) Which states That, whenever the mass-size of a combustible gas atom is decreased (Md), thermal explosive energy-yield (gtnt) is increased (Ein) during thermal gas combustion (Gas // Detonation), as so illustrated in (100)…
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Funneling Effect
1×
…) of Figure (14) under dynamic pressure to allow thermal gas expansion (16) ... releasing thermal explosive energy (gtnt) beyond and away from Resonant Cavity Chamber (180), as illustrated in Figure (14). To prevent pre-igni…
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In-Line Circuit Components
1×
…nner to Inductor (L2) since both Inductor (L1/L2) are physically the same size and shape. Thermal Explosive Energy-Yield (gtnt) (16a xxx 16n) instantly produced from water (85) is determined by: Voltage Amplitude ( xxx Vn) D…
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Resonant Action
1×
…combustion process, released Fuel-Gases (88) of Figure (3-39) as to Figure (3-24) nets a thermal explosive energy yield (gtnt) of approximately 2 1/2 rimes greater than gasoline. Figure (3-39) Figure (3-24)…
Patents 5
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
9× · introduced
…increasing energy levels are achieved, and finally passed to an outlet orifice to produce thermal explosive energy. Background of the Prior Art Numerous processes have been proposed for separating a water molecule into its e…
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
11×
…achieved, and finally passed to an outlet orifice to pro- (51] Int. Cl.4 C07G 13/00 duce thermal explosive energy. [58] Field of Search ............... 204/164, 157.41, 157.44 2 Claims, 7 Drawing Sheets HYDROGEN GAS GUN THE…
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
9×
…increasing energy levels are achieved, and finally passed to an outlet orifice to produce thermal explosive energy. CONTROLLED PROCESS FOR THE PRODUCTION OF THERMAL ENERGY FROM GASES AND APPARATUS USEFUL THEREFORE RELATED AP…
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Process & Apparatus For The Production Of Fuel Gas & The Enhanced Release Of Thermal Energy From Such Gas
9×
…increasing energy levels are achieved, and finally passed to an outlet orifice to produce thermal explosive energy. PRIOR ART: Numerous processes have been proposed for separating a water molecule into its elemental hydrogen…
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Controlled Process for the Production of Thermal Energy from Gases and Apparatus Useful Therefor
1×
…increasing energy levels are achieved, and finally passed to an outlet orifice to produce thermal explosive energy. (54)Title: CONTROLLED PROCESS FOR THE PRODUCTION OF THERMAL ENERGY FROM GASES AND ii. DOCUMENTS CONSIDERED T…
Bench findings 35
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Combustible gases return to stable state as de-energized water mist after energy release
1×
Once a quantum amount of thermal explosive energy (gtnta-gtntn) is released, the combustible gases return to a stable state by forming de-energized water mist (531), as shown in (530) of Figure 5-6.…
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Voltage-triggering process activates at maximum voltage deflection point E9d, releasing thermal explosive energy
1×
…at Activation-Point (E9d) of Figure (6-2), the voltage-triggering process (600) releases thermal Explosive Energy (gtnt) from the atomic level of the water molecule.…
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VIC Coil Assembly releases thermal explosive energy from water via opposite-polarity high voltage
1×
…of "opposite electrical attraction force" at high voltage intensity to instantly release thermal explosive energy (gtnt) from natural water.…
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VIC uses Opposite Electrical Attraction Force of high voltage intensity to instantly release explosive energy from water
1×
…zes 'Opposite Electrical Attraction Force' of high voltage intensity to instantly release thermal explosive energy (gtnt) from natural water.…
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Opposite-polarity electrical stress triggers instantaneous Hydrogen Fracturing Process
1×
…ers the Hydrogen Fracturing Process (390 of Figure 3-42) in an instant of time, releasing thermal explosive energy (gtnt, 16 of Figure 4-5) on demand from natural water (85 of Figure 3-26).…
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Thermal Explosive Energy-Yield from water depends on multiple stacked parameters
1×
Thermal Explosive Energy-Yield (gtnt, 16a-16n) instantly produced from water (85) is determined by Voltage Amplitude (Vn), Duty Cycle of Pulse Train (T1-T2a...T1-T2n), Gated Pulse-Frequency of applied Voltage Potential (49a-…
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Secondary Pickup Coil length is a designated parameter (FL3a-FL3n)
1×
…l (523) with a Length parameter denoted (FL3a xxx FL3n) as one of the factors influencing thermal explosive energy-yield from water.…
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Dielectric gap-spacing (Cp) affects energy yield from water dissociation
1×
…litude, duty cycle, gated pulse-frequency, and inductor/coil lengths) that determines the thermal explosive energy-yield instantly produced from water.…
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Capacitor ER should remain small due to water's dielectric value for max thermal explosive energy yield
1×
…remain relatively small due to the dielectric value of water, in order to obtain maximum Thermal Explosive Energy-Yield (16a...16n, Figure 4-5), which subsequently establishes the Quenching Circuit (370, Figure 3-40) to pre…
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Spark-ignition of expanding water gas-fuel occurs at gas exit port during water inject cycle
1×
…gas-fuel (45/46/47, Figure 4-5) during the water inject cycle (70, Figure 4-5), releasing thermal explosive energy (gtnt, 16) under control state.…
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Electron clustering in copper wire maintains opposite voltage potential across the Resonant Water Gap during hydrogen fracturing
1×
…ant Water Gap (616), which is part of the process converting water-fuel (85) into instant thermal explosive energy.…
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Altering voltage surface shape increases thermal explosive energy yield beyond applied excitation voltage
1×
Increasing Thermal Explosive Energy-yield (gtnt) to higher energy-levels (gtnta through gtntn) beyond the applied excitation voltage (Vn) is achieved by altering Voltage Surfaces (35b/35c) relative to Linear Voltage Surfaces…
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Voltage Intensifier Circuit output can exceed 40 kV to explosively convert water droplets
1×
…e Amplitude) of the VIC can exceed 40 kilovolts, instantly converting water droplets into thermal explosive energy on demand (Fig 10-1).…
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Greater electrical stress yields greater thermal explosive energy release from the Resonant Water Gap
1×
The greater the Electrical Stress (RU-RU' to ST-ST') 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.…
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Ignited gas ions from Gas Resonant Cavity release thermal explosive energy beyond Gas-Flame Stage
1×
…as Resonant Cavity to a thermal-spark or heat-zone causes thermal gas-ignition, releasing thermal explosive energy (gmt) beyond the Gas-Flame Stage, as illustrated in Figures 1-19 and 1-18.…
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Abnormal/unstable atomic conditions cause gas ions to overcompensate into thermal explosive energy
1×
…unstable conditions cause the combustible gas ions to over compensate and breakdown into thermal explosive energy (gmt); this atomic thermal-interaction between highly energized combustible gas ions is called 'The Hydrogen…
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Hydrogen Fracturing Process prevents water molecule reformation during ignition, releasing excess thermal energy
1×
…ocess prevents the formation of the water molecule during thermal gas ignition, releasing thermal explosive energy beyond the normal gas combustion process, up to and beyond the equivalent of 2.5 million barrels of oil per g…
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Water Fuel Injector Kit converts water directly to thermal explosive energy on demand
1×
…s a self-contained fuel unit with no pressurized vessel that converts water directly into thermal explosive energy (gtnt) on demand, as shown in Figures 4-1 and 4-2.…
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Released energy exits through the gas exit port
1×
Thermal explosive energy (gtnt) (16) passes beyond the gas exit port (32) of Figure 4-5 after ignition, as illustrated in Figures 4-2 and 4-1.…
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Voltage Igniter Stage works with VIC and Electron Extraction Circuit to trigger thermal explosive energy-yield
1×
…cuit (10, Figure 4-10), performs several functions simultaneously to initiate and trigger thermal explosive energy-yield (gtnt) (16) beyond normal gas burning levels.…
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Energy Gas Detonation Equation relates gas atom mass to explosive energy yield
1×
…tion, states that whenever the mass-size of a combustible gas atom is decreased (Md), the thermal explosive energy-yield (gtnt) is increased (Ein) during thermal gas combustion/detonation, as illustrated in Figures 4-7 and 4…
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Water bath functions as a 'Gas Mixing Regulator' via stoichiometric water composition
1×
Water bath (68) functions as a 'Gas Mixing Regulator' since the highest possible thermal explosive energy yield from hydrogen during normal gas ignition (98) occurs at the exact composition of water, where two hydrogen atoms…
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Fuel-gas combustion in engine cylinder converts hydrogen/oxygen into non-combustible exhaust gases and superheated water mist
1×
…ed forming superheated water mist (103) and non-combustible exhaust gases (99), releasing thermal explosive energy that drives piston action.…
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WFC Water Fuel Injector kit is self-contained with no pre-pressurized vessel
1×
…self-contained fuel-unit having no pre-pressurized vessel, converting water directly into thermal explosive energy (gtnt) on demand, as illustrated in WFC memo 423 DA.…
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High voltage field triggers Electrical Polarization Process and Dielectric Resonance
1×
…iggers the Hydrogen Fracturing Process (390) via electro-static spark ignition, releasing thermal explosive energy.…
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Voltage Igniter Stage and VIC/Extraction Circuit jointly initiate the Hydrogen Fracturing Process
1×
…ectron Extraction Circuit (120) performs functions simultaneously to initiate and trigger thermal explosive energy-yield beyond normal gas burning levels.…
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Energy Gas Detonation Equation: reduced combustible atom mass increases explosive energy yield
1×
Whenever the mass-size of a combustible gas atom is decreased (Md), thermal explosive energy-yield (gtnt) is increased (Ein) during thermal gas combustion/detonation, per the Energy Gas Detonation Equation.…
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Ignited gas is expelled through Gas Nozzle Port under dynamic pressure
1×
…and are expelled from Gas Nozzle Port (87), allowing thermal gas expansion and releasing thermal explosive energy beyond the Resonant Cavity Chamber (180).…
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Resultant voltage enhancement can exceed 40 kilovolts
1×
…de) produced by the VIC can exceed 40 kilovolts, instantly converting water droplets into thermal explosive energy (referred to as 'gtnt').…
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Fuel-gas yields ~2.5x greater explosive energy than gasoline
1×
Under normal gas ignition/combustion, the released fuel-gases net a thermal explosive energy yield of approximately 2.5 times greater than gasoline.…
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Water dielectric turns the Resonant Cavity into a capacitor within the VIC, enabling >40kV output
1×
…ant voltage enhancement can exceed 40 kilovolts, instantly converting water droplets into thermal explosive energy.…
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Opposite electrical attraction force at high voltage releases thermal explosive energy from water
1×
…ectrical Attraction Force (SS' - RR') at high voltage intensity (Vn) to instantly release Thermal Explosive Energy (gtnt) from natural water.…
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Resonant cavity progressively steps gas energy to higher levels via pulsed input
1×
…e 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; subsequent gas mole…
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Gas ions reach critical state after high-energy resonance, causing collapse and thermal energy release
1×
…alanced electrical field; the system collapses and energy is released as atoms decay into thermal explosive energy.…
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Electrostatic Pressure thermally ignites ionized gas mixture at Energy Apertures
1×
…rtures (7a-7n) (520), the ionized combustible gas-mixture is thermally ignited, releasing thermal explosive energy (gtnt) beyond normal gas burning levels on demand.…