(582)
Flame-Front
Where it is first named
whereas, Expanding Resonant Cavity (730C) of Figure (7-12) as to (820C) of Figure (8-6) is best suited for Furnace Applications. Linear Resonant Cavity (730A) of Figure (7-12) as to Figure (820A) is for Cutting-Torch applications (582) ... to mention a few.
How it is written
- (582) 1×
- (582 A,B,C) 1× with (582A) Flame-Front, (582B) Flame-Front, (582C) Flame-Front
Drawings 9
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(730) of Figure (7-12) · Taper Resonant Capacitor (ERt)
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Traveling Electrical Voltage Wave-forms (730a - b - c) of Figure (7-12) · Electron Bounce Phenomenon
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Compressional Wave-form (B) of Figure (7-12) · Voltage Amplitude Switch-Off
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The figure it sits on · Mode of Operability
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(730A) of Figure (7-12) · 8-2 - Traveling Voltage Wave-Guides
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(570) of Figure (7-12) · 8-2 - Traveling Voltage Wave-Guides
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(730) of Figure (7-12) · 8-5 - Energy Vectoring (Ev)
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(730C) of Figure (7-12) · 8-7 - Application of Usage
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(730A) of Figure (7-12) · 8-7 - Application of Usage
Where it is named · 2
8-7 - Application of Usage 2×
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whereas, Expanding Resonant Cavity (730C) of Figure (7-12) as to (820C) of Figure (8-6) is best suited for Furnace Applications. Linear Resonant Cavity (730A) of Figure (7-12) as to Figure (820A) is for Cutting-Torch applications (582) ... to mention a few.
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Flame-Front (582 A,B,C)
In each and all Flame-Front (582 A,B,C) Resonant Pulse Waves are produced to net higher energy-yield beyond normal gas burning levels. Laser Energy (588) being injected into Resonant Pulse Waves (16) by way of Laser Inject Tube-Port (589) helps maintain Plasma-temperatures at extremely elevated temperatures over the prior art.