(86) · also written as a run, 86a xxx 86n
Hydrogen
Also written two hydrogen atoms · hydrogen atoms · voltage wave-guide
Where it is first named
Repetitive duplication of voltage pulse (65a xxx 65n) continues to separate or split apart other water molecules (85a xxx 85n) which, in turns, forms hydrogen (86) and oxygen (87) gas-mixture (88) of Figure (3-24).
How it is written
- (86) 5×
- (86a / 86b) 2×
86a xxx 86n is Meyer's shorthand for a run of the same thing: 86a is the first, 86n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.
Drawings 27
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Stanley A. Meyer Page_7 of 28 · WFC 417 — WFC 417
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Carries this number · WFC 421 - Illustrations
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Figure (3-24) · Voltage Amplitude Control Circuit (50)
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Figure (3-25) · Voltage Intensifier Circuit (60)
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Figure (3-24) · Electrical Polarization process
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Figure (3-39) · Resonant Action
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"Gas Modulator Process" (320) of Figure (3-36) · Gas Modulator Process
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Carries this number · WFC 422DA - Illustrations
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Carries this number · WFC 422DA - Illustrations
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Carries this number · WFC 422DA - Illustrations
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Carries this number · WFC 422DA - Illustrations
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Carries this number · WFC 422DA - Illustrations
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Carries this number · Water Fuel Injector (Taper Resonant Cavity Chamber)
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Carries this number · Energy Pumping Action
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(57 of Figure 3- 25 ~35 of Figure 6-2) · Instant Explosion of Water
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Figure (3-24) · Inductance (FL)
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(650) of Figure (7-4) · Capacitance (Cd)
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(370) of Figure (3-40) · Taper Resonant Capacitor (ERt)
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(170) of Figure (3-25) · 8-4 - State Space (Sp)
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Carries this number · WFC 429 - Illustrations
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(340) of Figure (3-38) · Gas Modulator Process
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(340) of Figure (3-38) · Gas Modulator Process
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engine cylinder (102) of Figure (3-38) · Gas Processor
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Fuel Cell (120) of Figure (3-24) · Operational Parameters
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The figure it sits on · WFC 422DA - Illustrations
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The figure it sits on · Water Fuel Injection System
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The figure it sits on · Water Fuel Injection System - Page 1
Where it is named · 7
Electrical Polarization process 1×
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hydrogen (86)
Repetitive duplication of voltage pulse (65a xxx 65n) continues to separate or split apart other water molecules (85a xxx 85n) which, in turns, forms hydrogen (86) and oxygen (87) gas-mixture (88) of Figure (3-24).
Gas Modulator Process 5×
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hydrogen (86)
… ssolved air gases (97) of Figure (3-39) being uniformly released from water bath (85) via the Electrical Polarization Process (160) of Figure (3-26) is automatically intermixed with released hydrogen (86) and oxygen (87) gas atoms (also derived from water bath 85) to form Fuel-Gas mixture (88) of Figure (3-24) having a hydrogen gas burn-rate of approximately 47 centimeters per seconds (cm/see) in ambi …
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hydrogen atoms (86a / 86b)
The non-combustible gases (74) physically retards and slows down the speed by which oxygen atom (87) unites with (covalent link up) hydrogen atoms (86a / 86b) to bring on and support gas ignition process (gas combustion process) (98), as further illustrated in (340) of Figure (3-38).
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two hydrogen atoms (86a / 86b)
Water bath (68) of Figure (3-39) as to Figure (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 where two hydrogen atoms (86a / 86b) unite with oxygen atom (87).
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hydrogen (86)
… ly inert stainless steel (T304 material) voltage zones (E1 / E2) submerged in natural water (68) sustains and maintains gas mixing ratio (88) by simply preventing the consumption of both the hydrogen (86) and oxygen (87) gases by way of not encouraging "electrical heat" or "chemical interaction" associated with amp consumption.
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hydrogen (86)
As fuel-gas (88) enters into engine cylinder (102) and is exposed to thermal gas ignition process (98), the incoming and moving fuel-gases (88) are converted into non-combustible gases (99) (gases passing through the gas combustion process) since both the hydrogen (86) and oxygen (87) gas atoms are being consumed during the formation of superheated water mist (103)
Funneling Effect 1×
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voltage wave-guide (86)
causing Resonant Cavity Zone (35) to function and perform as a voltage wave-guide (86) of Figure (14) since the gradual decrease in cross-sectional circumference area (85) of Figure (14) is in linear progression ... reducing both voltage surfaces areas (83/84) in parallel space relationship from larger segmental area (85a) to smaller segmental area (85n).