established
Released energy exits through the gas exit port
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.
Bench
1,315 published findings from the ongoing work — what has been established, calculated and observed at the bench, each traceable to the session that produced it.
established
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.
established
Ionized air gases (46a-46n), laser-primed ambient air gases having missing electrons produced by the Ambient Air Ionizer (80) of Figure 4-6, and non-combustible gases (45) are intermixed with expellin...
established
Water mist (47) of Figure 4-4 is injected into the fuel-mixing chamber (35) of Figure 4-5 by way of water spray ports (41a-41n) of Figure 4-4.
established
The Water Fuel Injector Kit (10) of Figure 4-1 is a self-contained fuel unit with no pressurized vessel that converts water directly into thermal explosive energy (gtnt) on demand, as shown in Figures...
established
The electrical polarization and dielectric resonance also set up and trigger the Hydrogen Fracturing Process (390) of Figure 3-42 (as to Figure 3-6), controlled on demand via electrical-static spark i...
established
The high intensity voltage fields in the Voltage Igniter Stage perform an electrical polarization process (160) of Figure 3-26 while undergoing Dielectric Resonance (240) of Figure 3-31.
established
In the Voltage Igniter Stage (180) of Figure 4-5, the water-fuel mixture is exposed to high intensity voltage fields (33/36) typically 2,000 volts or above at 10 kHz or above, of opposite electrical p...
established VIC
U.S. Patent #4,826,581, issued May 2, 1989, covers the Electrical Polarization Process.
established VIC
U.S. Patent #4,936,961, issued June 26, 1990, covers the Resonant Cavity Voltage Intensifier Circuit (VIC).
established MISC
The Hydrogen Fracturing Process is design-variable to retrofit to any type of energy-consuming device since the Hydrogen Gas Gun can be reduced to the size of an auto spark plug or a gas injector pan...
established
The process 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....
established
The Hydrogen Fracturing Process triggers and releases atomic energy from natural water by allowing highly energized sub-critical combustible gas ions to come together during thermal gas ignition.
established GASPROC
The Electrical Extraction Circuit decreases the mass size of the combustible gas atoms while simultaneously producing 'electrical energy' when the liberated electrons are directed away from the Hydrog...
established VIC
The Voltage Intensifier Circuit brings on the 'Electrical Polarization Process' that switches off the covalent bond of the water molecule without consuming amps.
established MISC
Once gas-ignition occurs, rocket thrust is controlled by the flow rate of the combustible ionized gases entering the combustion chamber of the rocket engine.
established MISC
Prolonged-rocket-flights carrying heavier payloads is achieved by liquefying the specially treated combustible gas ions under pressure in separate fuel tanks affixed to a Rocket Engine, as illustrated...
established MISC
The 'specially treated' combustible gas ions used for prolonged rocket flight are laser primed oxygen gas atoms having missing electrons and laser primed hydrogen gas atoms.
established MISC
The Cluster-Assembly or Cluster-form of add-on Resonant Cavities beneath the Hydrogen Gas Gun is hereinafter called 'the water powered rocket engine'.
established MISC
Add-on Resonant Cavities placed beneath the Hydrogen Gas Gun Assembly, arranged in parallel to form a vertical Cluster-Array, increase the atomic Energy-Yield of the Hydrogen Fracturing Process during...
established
By simply attenuating or varying voltage amplitude in direct relationship to voltage pulse-rate, Atomic Power-Yield can be determined under a controlled state.
established
These abnormal or unstable conditions cause the combustible gas ions to over compensate and breakdown into thermal explosive energy (gmt); this atomic thermal-interaction between highly energized comb...
established
Absorbed Laser energy (Va, Vb, Vc) weakens the Electrical Bond between orbital electrons and the atomic nucleus; simultaneously, electrical attraction-force (qq'), stronger than normal due to lack of...
established GASPROC
The oxygen atom, having less than four covalent electrons due to the Electron Extraction Process, is unable to reach a Stable-State (which requires six to eight covalent electrons) when the two hydrog...
established
Thermal Atomic interaction (gmt) is caused when combustible gas ions from water fail to unite or form a Covalent Link-up or Covalent Bond between the water molecule atoms, as illustrated in Figure 1-1...
established MISC
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 e...
established MISC
The Electron Extraction 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).
established MISC confidence 0.80
Laser activated or laser primed gas ions repel the dislodged electrons being consumed, as illustrated in Figure (1-8) as to Figure (1-20).
established GASPROC
The dislodged negative charged electrons are destroyed or consumed in the form of heat when the Amp Consuming Device (S), such as a light bulb, is positively electrically energized during alternate pu...
established GASPROC
Resistive values R4, R6, R7, the dielectric constant of the gas (Rg), and an isolated electrical ground (W) prevent electron-flow or electron deflection within circuit (BB) during pulsing operations a...
established GASPROC
The Electron Extraction Circuit (BB), shown in Figure (1-14), removes, captures, and consumes the dislodged electrons from the gas atoms, causing the gas atoms to reach a 'Critical-State' — highly ene...