Figure 3
As the sources put it
Figure 3 is a schematic illustration of the utilization of the structure of Figure 1.
Where it appears · 55
Patents 18
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Resonant Cavity for a Hydrogen Generator
8× · introduced
…rate of the direct current to match the resonant frequency of the structure of Figure 1. Figure 3 is a schematic illustration of the utilization of the structure of Figure 1. Figure 4 is a first alternative…
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Hydrogen Gas Injection for Internal Combustion Engine
3× · introduced
…tic illustration of the preferred embodiment of the hydrogen injector system of Figure l. Figure 3 is the fine linear fuel flow control shown in Figure l. Figure 4 is cross-sectional illustration of the compl…
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A control and driver circuits for a hydrogen gas fuel producing cell
3× · introduced
…ator in an automobile or a building thermostat control.) Figure 2 - Digital Control Means Figure 3 shows an analog voltage generator. Figure 3 - Analog Voltage Generator Figure 4 is a voltage amplitude contro…
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Resonant Cavity Hydrogen Generator That Operates with a Pulsed Voltage Electrical Potential
8×
…rate of the direct current to’ match the resonant frequency of the structure of Figure 1. Figure 3 is a schematic illustration of the utilization of the structure of Figure 1. Figure 4 is a first alternative…
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ydrogen Gas Injection Apparatus for Internal Combustion Engine
4×
…sealed air/non-combustible gas, the engine's revolution rate is controlled. Referring to figure 3, the details of the control mechanism for regulating the combustion mixture is clearly demonstrated in paragr…
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Hydrogen Gas Fuel & Management System For An Internal Combustion Engine
3×
…owing the interrelationship of system Management controls with various engine parameters. Figure 3 illustrates the physical arrangement of a hydrogen fuel gas control means and injection system for the regula…
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Hydrogen Generator System
3×
…llustrates the coaxial cluster or array of plates utilized in the embodiment of Figure 1. Figure 3 is a first alternative plate arrangement, a concentric coaxial array. Figure 4 is another alternative plate a…
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Hydrogen Generator System
3×
…illustrates a coaxial cluster or array of plates utilized in the embodiment of Figure 1; Figure 3 is a first alternative plate arrangement, a concentric coaxial array; Figure 4 is another alternative plate a…
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
3×
…illustrates a circuit useful in the fuel gas generation process Figure 2 - Useful Circuit Figure 3 shows a perspective of a “water capacitor" element used in the fuel cell circuit. Figure 3 - Perspective Wate…
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Hydrogen Injection System
2×
…tion; Figure 2 is a block schematic illustration of the preferred embodiment of Figure 1; Figure 3 is an alternative gas system replacement for that shown in Figure 1; Figure 4 is a block schematic illustrati…
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Electrical Particle Generator
2×
…torially. Figure 2 is an electrical schematic illustration of the embodiment of Figure 1. Figure 3 is an illustration similar to Figure 2 but adaptable to 3 phase. Figure 4 is a first alternative arrangement…
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Hydrogen Air & Non-Combustible Gas Mixing Combustion System
2×
…ment; Figure 2 is a block schematic illustration of the preferred embodiment of Figure 1; Figure 3 is an alternative gas system for that shown in Figure i; Figure 4 is a block schematic illustration of a gas…
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Electrical Generator Utilizing Magnetized Particles
2×
…torially. Figure 2 is an electrical schematic illustration of the embodiment of Figure 1. Figure 3 is an illustration similar to Figure 2 but adaptable to 3 phase. Figure 4 is a first alternative arrangement…
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Hydrogen Aeration Injection System
2×
…e 2 is a block schematic illustration of the preferred 19 itembodiment of Figure 1. 20 4} Figure 3 is an alternative gas system replacement for that i 21 i;shown in Figure 1, 22 Figure 4 is a block schematic…
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Hydrogen Aeration Injection System
2×
…ment, Figure 2 is a block schematic illustration of the preferred embodiment of Figure 1. Figure 3 is an alternative gas system replacement for that shown in Figure 1. Page 7 Figure 4 is a block schematic ill…
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Water Fuel Injection System
1×
…n engines and the like. EXAMPLE II A flange mounted injector is shown in cross-section in Figure 3 which shows the fuel mixture inlets and illustrates an alternative three (3) nozzle configuration leading to…
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Electric Particle Generator
1×
…e 1 shows a typical three-phase system circuit configuration of the present invention. In Figure 3, another preferred embodiment of the invention is shown with an extended circuit design. This configuration i…
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Water Fuel Injection System
1×
…n engines and the like. EXAMPLE II A flange mounted injector is shown in cross-Section in Figure 3 which shows the fuel mixture inlets and illustrates an alternative three (3) nozzle configuration leading to…
Documents 6
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Voltage Intensifier Circuit (60)
3×
…de (V0 xxx Vn) of Figure (3-19) to vary from one up to twelve volts (battery supply 28 of Figure 3-6 by attenuating Laser Accelerator circuit (10) of Figure (3-5) via Hydrogen Gas Control Circuit (100). Figur…
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Instant Explosion of Water
2×
…allowing the reduction of Capacitor-Gap (Cp) (616) of Figure (7-11) width spacing (57 of Figure 3- 25 ~35 of Figure 6-2) (typically .060 - .010) respectively as illustrated in Tubular Resonant Cavity (170) a…
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The Principles of Discovery
2×
…ged voltage zone...satisfying the opposite polarity attraction law of physics as shown in Figure 3. ELECTRICAL POLARIZATION PROCESS: Simply, the electrical polarization of the water molecule is basically a fo…
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Voltage Amplitude Control Circuit (50)
1×
…ng injector off-time, gas pressure release valve (75) of Figure (3-24) (gas venting 37 of Figure 3-15) expels Fuel gases (88) until gas point (34) is either reached or a delay timing circuit activates Safety…
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Laser Distributor
1×
…ing Generator (440) of Figure (3-4) to produce a constant 50% Duty-cycle Pulse-Train (see Figure 3-16 once again) to Analog voltage Generator (40) of Hydrogen Gas Management System (200) of Figure (3-1) as to…
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Mega Watt Gas Yield
1×
…t parts... releasing energy in the form of hydrogen gas and oxygen gas, as illustrated in Figure 3. The opposite polarity attraction that now exists between the liberated electrically charged atoms and the st…
Bench findings 31
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Opposite-polarity electrical stress triggers instantaneous Hydrogen Fracturing Process
2×
…site voltage polarity (ST-ST' to RU-RU') triggers 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…
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High voltage fields trigger electrical polarization and dielectric resonance
2×
…e 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.…
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Polarization/resonance triggers Hydrogen Fracturing Process via spark ignition
2×
…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 ignition (49/51) of Figure 4-5.…
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Only voltage cross-over occurs between regulated power supply and battery supply
2×
…electrical connection point is a voltage cross-over from the regulated power supply (150, Figure 3-6) to the battery supply (28), as illustrated in Figure 3-6.…
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Steam Resonator (450) inserts into Fuel Cell (120) for cold-weather operation
2×
…operation during frigid or below-freezing conditions, the Steam Resonator assembly (450, Figure 3-46) is inserted into the Fuel Cell (120, Figure 3-24) and thermostatically activated.…
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WFC fuel-gas burn-rate adjusted from gasoline to diesel range enables diesel retrofit
2×
Adjusting the burn-rate (330, Figure 3-37) of Fuel-gases (88, Figure 3-38) from 43–37 cm/s (Gasoline burning level) to 40–35 cm/s (Diesel burning level) allows the WFC Hydrogen Gas Management System to be dir…
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Multi-nozzle flange-mounted injector configuration
1×
A flange mounted injector (Figure 3) uses a three-nozzle configuration (31a, 32a, 33a), one nozzle per gas mixture, connected to supply lines 31, 32, 33, leading to the polarization (voltage) and combustion z…
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Static State Space condition defined by constant gas pressure with unchanging opposite-polarity voltage pulse-wave
1×
…nstant while the electrical stress of opposite polarity Voltage Pulse-Wave (64), shown in Figure 3-20 of WFC memo 422DA, never changes.…
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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
1×
…is referred to as 'Resonant Action,' illustrated relative to the Resonant Cavity (170) of Figure 3-25.…
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Two VIC variants (60) and (620) both restrict amp flow during programmable pulsing but operate differently
1×
Voltage Intensifier Circuit (60) of Figure 3-22 (Memo WFC 422 DA / WFC 420) and Voltage Intensifier Circuit (620) of Figure 7-1 are both specifically designed to restrict amp flow during Programmable Pulsing…
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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×
…C voltage circuit (60) utilizes copper wire-wrap to form Resonant Charging Chokes (56/62, Figure 3-22) in conjunction with Switching Diode (55) to encourage the 'Electron Bounce' phenomenon (700, Figure 7-9),…
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Capacitor-Gap (Cp) width spacing in Tubular/Taper Resonant Cavity is typically .010–.060 inch
1×
…igure 7-1) allows reduction of Capacitor-Gap (Cp) (616, Figure 7-11) width spacing (57 of Figure 3-25 ~ 35 of Figure 6-2), typically .060 to .010, as illustrated in the Tubular Resonant Cavity (170) versus th…
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Switching Diode (55) prevents bidirectional electron flow, allowing current in one direction only
1×
Switching Diode (55, Figure 3-22) prevents bidirectional electron flow (current flow in one direction only) since the Blocking Diode only conducts current in the direction of the schematic arrow, placed in-li…
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Output voltage waveform acts as a pulse-frequency doubler due to inductor coil's collapsing magnetic field
1×
…) is a pulse-frequency doubler due to the Inductance Reactance (FL) of Inductor Coil (56, Figure 3-22): when the magnetic field (FL, Figure 7-3b) collapses, it re-cuts the coil-wrap (L1) during each pulse off…
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Rotating light-gate circuit (430) activates Pulse Shaping Generator to produce a 50% duty-cycle pulse train
1×
…Shaping Generator (440) of Figure (3-4) to produce a constant 50% Duty-cycle Pulse-Train (Figure 3-16) fed to Analog Voltage Generator (40) of the Hydrogen Gas Management System (200) of Figure (3-1), as show…
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Resonant cavity gap-size must be sufficient to allow the Quenching Effect
1×
…gh to allow the 'Quenching Effect' to take place, as illustrated in Figure 7-12 (730) and Figure 3-40 (370).…
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Capacitor ER should remain small due to water's dielectric value for max thermal explosive energy yield
1×
…Yield (16a...16n, Figure 4-5), which subsequently establishes the Quenching Circuit (370, Figure 3-40) to prevent gas ignition inside the traveling voltage wave-guide (590, Figure 6-2; 730, Figure 7-12).…
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Hydrogen Fracturing Process triggers as liberated water gases pass exit port E9d
1×
The Hydrogen Fracturing Process (390, Figure 3-42) is brought on and triggered once liberated and expanding water gases (100, Figure 4-8) pass beyond exit port (E9d).…
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Dual unipolar voltage pulse circuit deflects the bipolar water molecule
1×
…-1) is used to deflect (physically move) the bipolar electrically charged water molecule (Figure 3-46) while it undergoes both physical and electrical stress simultaneously.…
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Atomic flexing releases radiant thermal heat energy from the water molecule atom's energy aperture
1×
…radiant thermal heat energy (item 165) from the atom structure, as further illustrated in Figure 3-46 (item 450).…
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Resonant choke coils use 430F/430FR stainless steel wire, hi-K film coated
1×
Resonant Choke Coils (56/62) shown in Figure 3-23 (Memo WFC 422 DA) are composed of 430F or 430FR inductance stainless steel wire, film coated for high dielectric value, typically .004 gauge or smaller.…
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Secondary pickup coil uses .002 Ga. magnet wire, spiral wrapped and sequentially connected
1×
Secondary pickup coil (52) in Figure 3-23 is composed of individual spiral wrapped coils (505a...505n), typically .002 Ga. magnet wire, electrically connected in sequential order to form bobbin cavity (506).…
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Electrical steel core forms a closed-loop magnetic induction pathway through the VIC coil-assembly
1×
…through and around the VIC coil-assembly (530), as schematically illustrated at (190) of Figure 3-23 (Memo WFC 422 DA).…
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Natural water contains 20–40 ppm suspended/dissolved contaminates
1×
…released from and superimposed onto the water bath (68) during Resonant Action (170), per Figure 3-24.…
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Resonant Action carries contaminates through water inlet line to Electrostatic Filter Assembly
1×
…sembly (440), where they are exposed to opposite electrical voltage fields (148/152), per Figure 3-45.…
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Water droplets exposed to opposite-polarity high voltage fields undergo Electrical Polarization Process
1×
…age fields of opposite polarity (33/36) undergo the Electrical Polarization Process (160, Figure 3-26).…
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Electrical Polarization Process splits water molecule atoms causing electron ejection
1×
…gen atoms 77a/77b and oxygen atom 76), causing them to experience electron ejection (230, Figure 3-30), as related to (71) of Figure 4-10.…
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Cell driver circuit (90) switches ground to primary coil (26)
1×
…ground 'off' and 'on' as applied to the opposite side (48) of primary coil (26), shown in Figure 3-19.…
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Primary coil pulse waveform duplicates the incoming gated pulse train
1×
The resultant pulse waveform (49a...49n) superimposed onto primary coil (26) in Figure 3-18 is an exact duplicate of the proportional pulse train (47a...47n) driving the cell driver circuit.…
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Purified water is recycled back into the Fuel Cell
1×
…s produces a purified water bath (156) which is recycled back into the Fuel Cell (120) of Figure 3-24, since Resonant Action (170) also functions as a water-pump (causing gas rising).…
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Paired coil voltage potentials are equal since wire lengths are equal
1×
…negative electrical attraction force B-, called Electrical Stress SS'=RR' as to (160) of Figure 3-26) are always equal in electrical magnitude/intensity since the wire-length of each coil is the same.…