(121)
Optical Lens
Where it is first named
To further destabilize gas atom (104), emitted laser energy (electromagnetic energy having zero mass) (116) is, now, injected into Gas Resonant Cavity (410) via optical lens (121) and superimposed onto gas ionized process (260) and subsequently absorbed by gas atom nucleus (108), as illustrated in (260) of Figure (3-33) as to (270) of Figure (3-34).
How it is written
- (121) 2×
Drawings 9
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Figure (3-33) · Gas Processor
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In terms of assembly, gas resonant cavity (410), electron extraction circuit (270), optical lens (121) forms gas processor (260) of Figure (3-31). · Gas Processor
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In terms of assembly, gas resonant cavity (410), electron extraction circuit (270), optical lens (121) forms gas processor (260) of Figure (3-31). · Gas Processor
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Carries this number · WFC 422DA - Illustrations
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(80) of Figure (4) · Water Fuel Injector (Taper Resonant Cavity Chamber)
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Ambient Air Ionizer (Gas Processor) (80) of Figure (4-6) · Water Fuel Injection System - Page 3
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(Light Emitting Diodes) (1100 xxx 116n) of Figure (3-33) · WFC Exhaust Air Reclaimer
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(240) of Figure (3-31) · Gas Processor
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Figure (3-31) · Water Fuel Injection System - Page 1
Where it is named · 2
Gas Processor 2×
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To further destabilize gas atom (104), emitted laser energy (electromagnetic energy having zero mass) (116) is, now, injected into Gas Resonant Cavity (410) via optical lens (121) and superimposed onto gas ionized process (260) and subsequently absorbed by gas atom nucleus (108), as illustrated in (260) of Figure (3-33) as to (270) of Figure (3-34).
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optical lens (121)
In terms of assembly, gas resonant cavity (410), electron extraction circuit (270), optical lens (121) forms gas processor (260) of Figure (3-31).