(93) · also written as a run, 93a xxx 93n
Water Bath Atoms
Also written combustible gas atoms
Where it is first named
Subjecting and exposing water molecule (85) to even higher voltage levels (xxx Vn) (up to and beyond several thousand volts) causes water bath (91) of Figure (3-30) as to Figure (3-25) to go into a state of ionization by allowing opposite polarity forces (TT') and (UU') to eject one or more electrons (92a xxx 92n) from water bath atoms (93).
How it is written
- (93a xxx 93n) 6×
- (93) 1×
93a xxx 93n is Meyer's shorthand for a run of the same thing: 93a is the first, 93n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.
Drawings 20
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Figure (3-30) · Resonant Action
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Carries this number · WFC 422DA - Illustrations
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Electron Ejection Process (230) of Figure (29) · Water Fuel Injector (Taper Resonant Cavity Chamber)
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The forming Argon ion (Ar+) is now exposed to Iron ions (Fe+) (magnetic properties) experiencing and undergoing the same Electron Extraction Process. · Magnetic Gas Lattice
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Figure (1-8) · Atomic Interaction to Voltage Stimulation
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Figure (1-8) · Electron Extraction Process
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Laser activated or laser primed gas ions repel the "dislodged" electrons being consumed as illustrated in Figure (1-8) as to Figure (1-20). · Electron Extraction Process
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Figure (3-25) · Voltage Intensifier Circuit (60)
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The figure it sits on · WFC 422DA - Illustrations
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The figure it sits on · Electronic Circuit Design
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The figure it sits on · Electronic Circuit Design
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The figure it sits on · Funneling Effect
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Figure (4-10) · Water Fuel Injection System - Page 2
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Figure (4-9) · Water Fuel Injection System - Page 2
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The figure it sits on · Energy Pumping Action
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(110) of Figure (4-9) · In Application of Usage
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(110) of Figure (4-9) · Resistance (Rs)
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(170) of Figure (3-25) · 8-4 - State Space (Sp)
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Voltage Intensifier Circuit (110) of Figure (4-9) · WFC Exhaust Air Reclaimer
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Blocking Diode (52) of Figure (4-9) · Propagating Electrical Stress
Where it is named · 7
Resonant Action 3×
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water bath atoms (93)
Subjecting and exposing water molecule (85) to even higher voltage levels (xxx Vn) (up to and beyond several thousand volts) causes water bath (91) of Figure (3-30) as to Figure (3-25) to go into a state of ionization by allowing opposite polarity forces (TT') and (UU') to eject one or more electrons (92a xxx 92n) from water bath atoms (93).
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water bath atoms (93a xxx 93n)
Replication of higher voltage forces (TT') and (UU') during pulsing operations causes a continued release of other electrons (92a xxx 92n) from other water bath atoms (93a xxx 93n) which, in practice, increases electrical charges of water bath (91) since water bath (91) is a dielectric liquid.
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Water bath atoms (93a xxx 93n)
Water bath atoms (93a xxx 93n) having missing electrons (92) take-on a positive electrical charge (95) which is subject to and moved by negative electrical force (UU'); whereby, the liberated and free floating negative charge electrons (92) are subject to and moved by positive electrical force (TT').
Water Fuel Injection System 2×
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… 77b) immediately interact with laser primed ionized ambient air gases (7a xxx In of Figure 1-8) (see WFC memo 420) to cause the resultant highly energized and mass destabilized combustible gas atoms (93a xxx 93n) of Figure (8) to perform Hydrogen Fracturing Process (80) of Figure (7) when electrostatic force (14/16) thermally ignites (kinetic agitation) destabilized water-fuel mixture (93a xxx 93n) under gas compression... …
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… gas atoms (93a xxx 93n) of Figure (8) to perform Hydrogen Fracturing Process (80) of Figure (7) when electrostatic force (14/16) thermally ignites (kinetic agitation) destabilized water-fuel mixture (93a xxx 93n) under gas compression... preventing the formation of the water molecule during thermal gas ignition....satisfying Energy Gas Detonation Equation.
Water Fuel Injection System - Page 3 2×
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combustible gas atoms (93a xxx 93n)
… 77b) immediately interact with laser primed ionized ambient air gases (7a xxx 7n of Figure 1-15) (see WFC memo 420) to cause the resultant highly energized and mass destabilized combustible gas atoms (93a xxx 93n) of Figure (4-10) to perform Hydrogen Fracturing Process (80) of Figure (4-9) when electrostatic force (14/16) thermally ignites (kinetic agitation) destabilized water-fuel mixture (93a xxx 93n) under …
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… atoms (93a xxx 93n) of Figure (4-10) to perform Hydrogen Fracturing Process (80) of Figure (4-9) when electrostatic force (14/16) thermally ignites (kinetic agitation) destabilized water-fuel mixture (93a xxx 93n) under gas compression