(48) · also written as a run, 48a xxx 48n
Water-fuel mixture
Also written incoming gated pulse signal · primary electrical ground · input circuit ground · water fuel droplets · water fuel-droplets · opposite side
Where it is first named
In either case, the resultant or varied pulse train (47a xxx 47n) (calibration of 44a xxx 44n) becomes incoming gated pulse signal (48) of figure (3-5) to cell driver circuit (90) of Figure (3-5) which performs a switching function by switching "off' and "on" electric ground being applied to opposite side (48) of primary coil (26) of Figure (3-19).
How it is written
- (48) 19×
- (48a xxx 48n) 4×
- (xxx 48n) 1×
48a xxx 48n is Meyer's shorthand for a run of the same thing: 48a is the first, 48n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.
Drawings 41
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Figure (3-23) · Voltage Intensifier Circuit (60)
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(170) of Figure (13) · Water Fuel Injector (Taper Resonant Cavity Chamber)
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(170) of Figure (13) · Water Fuel Injector (Taper Resonant Cavity Chamber)
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Fluid Displacement Pump (170) of Figure (13) · Water Fuel Injector (Taper Resonant Cavity Chamber)
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(70) of Figure (3B) · Water Fuel Injector (Taper Resonant Cavity Chamber)
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Carries this number · Water Fuel Injector (Taper Resonant Cavity Chamber)
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Figure (4-5) · Water Fuel Injection System - Page 1
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but, also prevents electron flow into destabilizing gas process (180), as so illustrated in Figure (4-5). · Water Fuel Injection System - Page 3
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Carries this number · In Application of Usage
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Voltage Triggering Process (70) of Figure (4-5) · Voltage Intensifier Coil-Assembly
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(56/62) of Figure (3-22) · Instant Explosion of Water
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(56) of Figure (3-22) · Instant Explosion of Water
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(16) of Figure (4-5) · Resistance (Rs)
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(640) of Figure (7-3) · Capacitance (Cd)
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Figure (4-5) · Capacitance Reactance
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Figure (4-5) · 8-5 - Energy Vectoring (Ev)
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Oscillation (back and forth movement) of electrically charged particles by way of voltage deflection is hereinafter called "Resonant Action", as illustrated in Figure (1-10). · Voltage Dissociation of The Water Molecule
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The figure it sits on · Rocket Propulsion
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Figure (3-5) · Acceleration Control Circuit (30)
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Analog Voltage Circuit (40), as shown in Figure (3-5) · Acceleration Control Circuit (30)
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Figure (3-5) · Acceleration Control Circuit (30)
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Figure (3-22) · Analog Voltage generator (40)
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Figure (3-5) · Analog Voltage generator (40)
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Figure (3-22) · Voltage Amplitude Control Circuit (50)
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Figure (3-19) · Cell Driver Circuit (90)
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Figure (3-19) · Voltage Intensifier Circuit (60)
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Figure (3-22) · Voltage Intensifier Circuit (60)
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Figure (3-22) · Voltage Dynamics
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Voltage Intensifier Circuit (60) of Figure (3-22) · Gas Processor
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Figure (3-5) · Laser Distributor
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The figure it sits on · WFC 422DA - Illustrations
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The figure it sits on · WFC 422DA - Illustrations
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The figure it sits on · WFC 422DA - Illustrations
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3-5 Outer Core Bobbin · Voltage Intensifier Coil Assembly
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The figure it sits on · Electronic Circuit Design
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laser primed ionized liquid oxygen (68) of Figure (1-21) · Water Fuel Injection System - Page 3
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Voltage Intensifier Circuit (60) of Figure (3-22) · Instant Explosion of Water
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The figure it sits on · 8-1 - Propagating "Resonant Action" By Voltage Tickling of State Space
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The figure it sits on · WFC 427 Illustrations
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Voltage Intensifier Circuit (60) of Figure (3-22) · Propagating Electrical Stress
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(60) of Figure (3-22) · Propagating Electrical Stress
Where it is named · 24
Cell Driver Circuit (90) 2×
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incoming gated pulse signal (48)
In either case, the resultant or varied pulse train (47a xxx 47n) (calibration of 44a xxx 44n) becomes incoming gated pulse signal (48) of figure (3-5) to cell driver circuit (90) of Figure (3-5) which performs a switching function by switching "off' and "on" electric ground being applied to opposite side (48) of primary coil (26) of Figure (3-19).
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opposite side (48)
In either case, the resultant or varied pulse train (47a xxx 47n) (calibration of 44a xxx 44n) becomes incoming gated pulse signal (48) of figure (3-5) to cell driver circuit (90) of Figure (3-5) which performs a switching function by switching "off' and "on" electric ground being applied to opposite side (48) of primary coil (26) of Figure (3-19).
Voltage Intensifier Circuit (60) 2×
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primary electrical ground (48)
Negative electrical ground (61) of voltage Intensifier circuit (60) of Figure (3-22) is electrically isolated from primary electrical ground (48) of Figure (3-22).
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input circuit ground (48)
Isolated electrical ground (61) prevents electron flow from input circuit ground (48).
Water Fuel Injection System 6×
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Water-fuel mixture (48)
Secondly, ionized air gases (46a xxx 46n) of Figure (3A) (laser primed ambient air gases having missing electrons) produced by Ambient Air Ionizer (80) of Figure (4) as to Figure (1) and non-combustible gases (45) of Figure (3A) are intermixed with expelling water mist (47a xxx 47n) to form Water-fuel mixture (48) by way of gas mixing disc (34) of Figure (3B) as to (30) of Figure (2A);
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Water-Fuel mixture (48)
thirdly, the resultant moving Water-Fuel mixture (48) of Figure (3B) enters into Voltage Igniter Stage (180) of Figure (3B) and exposed to high intensity voltage fields (33 / 36) (typically 2,000 volts or above @ 10 Khz or above) opposite electrical polarity (E7 / E8)
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water-fuel mixture (48)
Energy-Flame density is enhanced and sustained by causing ionized gases (46a xxx 46n) of spray port (42) to be deflected into liquid spray path (41), together water mist (47) and ionized air (46) are, now, directed toward and deflected through non-combustible gas spray path producing uniformed water-fuel mixture (48), as illustrated in Figure (3B).
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In terms of performance reliability and safety, ionized air gases (46a xxx 46n) and liquid water (47a xxx 47n) do not become energy activated (volatile) until water-fuel mixture (48) reaches Voltage Igniter Stage (180).
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In other or alternate applications, laser primed ionized liquid oxygen (68) of Figure (1-10) CF* memo 420) and laser primed liquid hydrogen (69) of Figure (1-10) stored in separate fuel tanks can be used in place of fuel-mixture (48); or, liquefied ambient air gases (6) alone with source (8) can, also, be substituted as a fuel-source (48) to trigger Hydrogen Fracturing 10).
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In other or alternate applications, laser primed ionized liquid oxygen (68) of Figure (1-10) CF* memo 420) and laser primed liquid hydrogen (69) of Figure (1-10) stored in separate fuel tanks can be used in place of fuel-mixture (48); or, liquefied ambient air gases (6) alone with source (8) can, also, be substituted as a fuel-source (48) to trigger Hydrogen Fracturing 10).
Water Fuel Injector (Taper Resonant Cavity Chamber) 8×
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allowing water fuel mixture (47/45/46) (48) to be particle aligned by opposite electrostatically charged atoms
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The resultant water fuel-mixture (48) is, now, pressurized up to and beyond 125 lbs of fluid-pressure by Fluid Displacement Pump (170) of Figure (13), as before, to cause and form water fuel-droplets (48a xxx 48n) when water fuel (48) enters into, passes through and beyond spray ports (41a xxx 41n) forming Quenching Disc Structure (190) of Figure (15).
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The resultant water fuel-mixture (48) is, now, pressurized up to and beyond 125 lbs of fluid-pressure by Fluid Displacement Pump (170) of Figure (13), as before, to cause and form water fuel-droplets (48a xxx 48n) when water fuel (48) enters into, passes through and beyond spray ports (41a xxx 41n) forming Quenching Disc Structure (190) of Figure (15).
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The resultant water fuel-mixture (48) is, now, pressurized up to and beyond 125 lbs of fluid-pressure by Fluid Displacement Pump (170) of Figure (13), as before, to cause and form water fuel-droplets (48a xxx 48n) when water fuel (48) enters into, passes through and beyond spray ports (41a xxx 41n) forming Quenching Disc Structure (190) of Figure (15).
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water fuel-droplets (48a xxx 48n)
The injected water fuel-droplets (48a xxx 48n), now, surrounds outer surface area of exposed positive probe (33) while entering into Taper Resonant Cavity (180), as illustrated in (70) of Figure (3B) as to Figure (14).
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Once water fuel-droplets (xxx 48n) fully occupies open space cavity (Resonant Cavity Zone) (35) and then exposed to applied pulsating opposite electrical voltage fields (49/51) of voltage wave form (280) of Figure (17), the electrically stimulated water fuel droplets (48a xxx 48n) are subjected to release thermal explosive energy (gtnt) (16) undergoing Electrical-Resonant in a sequential manner:
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Once water fuel-droplets (xxx 48n) fully occupies open space cavity (Resonant Cavity Zone) (35) and then exposed to applied pulsating opposite electrical voltage fields (49/51) of voltage wave form (280) of Figure (17), the electrically stimulated water fuel droplets (48a xxx 48n) are subjected to release thermal explosive energy (gtnt) (16) undergoing Electrical-Resonant in a sequential manner:
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water fuel droplets (48a xxx 48n)
Subsequent and repetitive formation of applied gated electrical voltage pulse-train (210a xxx 210n) of Figure (17) to continued in-flow of water fuel droplets (48a xxx 48n) not only sustains and maintains Hydrogen Fracturing Process (100) of Figure (6) but, also, regulates Thermal Explosive Energy release (16a x 16n) of Figure (14) by attenuating applied voltage amplitu …
Water Fuel Injection System - Page 1 2×
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Secondly, ionized air gases (46a xxx 46n) of Figure (4-4) (laser primed ambient air gases having missing electrons) produced by Ambient Air Ionizer (80) of Figure (4-6) as to Figure (4-1) and non-combustible gases (45) of Figure (4-4) are intermixed with expelling water mist (47a xxx 47n) to form Water-fuel mixture (48) by way of gas mixing disc (34) of Figure (4-5) as to (30) of Figure (4-2);
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thirdly, the resultant moving Water-Fuel mixture (48) of Figure (4-5) enters into Voltage Igniter Stage (180) of Figure (4-5) and exposed to high intensity voltage fields (33/36) (typically 2,000 volts or above @ 10 Khz or above) of opposite electrical polarity (E7 / E8)
Water Fuel Injection System - Page 2 1×
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water-fuel mixture (48)
... producing uniformed water-fuel mixture (48), as illustrated in Figure (4-5).
Water Fuel Injection System - Page 3 3×
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water-fuel mixture (48)
In terms of performance reliability and safety, ionized air gases (46a xxx 46n) and liquid water (47a xxx 47n) do not become energy activated (volatile) until water-fuel mixture (48) reaches voltage Igniter Stage (180).
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In other or alternate applications, laser primed ionized liquid oxygen (68) of Figure (1-21) (see WFC memo 420) and laser primed liquid hydrogen (69) of Figure (1-21) stored in separate fuel-tanks can be used in place of fuel-mixture (48); or, liquefied ambient air gases (6) alone with water-source (8) can, also, be substituted as a fuel-source (48) to trigger Hydrogen Fracturing Process (100).
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In other or alternate applications, laser primed ionized liquid oxygen (68) of Figure (1-21) (see WFC memo 420) and laser primed liquid hydrogen (69) of Figure (1-21) stored in separate fuel-tanks can be used in place of fuel-mixture (48); or, liquefied ambient air gases (6) alone with water-source (8) can, also, be substituted as a fuel-source (48) to trigger Hydrogen Fracturing Process (100).