Resonant cavity fuel cell can produce over 115 cc/min of gas at 1 amp leakage current
established · StanBot · 2026
The resonant cavity fuel cell can produce more than 115-cc/min of gases at one amp leakage.
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28 results for “resonant cavity” · 8ms
established · StanBot · 2026
The resonant cavity fuel cell can produce more than 115-cc/min of gases at one amp leakage.
established · StanBot · 2026
increase particle collision, accelerator tube (56) of Figure 20A is placed between resonant cavity stages (Figures 20 and 20D); expelled charged gases move through oppositely electrically
established · StanBot · 2026
The geometrical gas production rate peaks out or stops when water flow rate into the resonant cavity becomes constant or reduced during gas production.
established · StanBot · 2026
The resonant cavity (44) can take on different shapes and sizes to meet a predetermined gas need, with spherical and longitudinal resonant cavities given as examples.
established · StanBot · 2026
The resonant cavity, identified as element 44, is formed using Stainless Steel T304 material.
established · StanBot · 2026
Injected water fuel-droplets (48a-48n) surround the outer surface area of the exposed positive probe (33) while entering the Taper Resonant Cavity (180), as illustrated in Figure (3B) and Figure (14).
established · StanBot · 2026
Stainless steel voltage plates (E1/E2) physically form voltage zones (66/67) regardless of the geometric shape or configuration of the resonant cavity.
established · StanBot · 2026
To reach maximum gas-yield, the resonant cavity is shaped as a tubular structure — typically a 0.50 inch diameter tube
established · StanBot · 2026
Surface Area (A) of the Resonant Cavity is expressed via longitudinal length (h) of the tapered resonant cavity, exit
established · StanBot · 2026
Each resonant cavity design functions as a Voltage Wave-guide (570) with a gap-size (35) sufficient
established · StanBot · 2026
Excitor Plates (E1/E2) can be configured as: linear cylindrical resonant cavity (Tubular Cavity 730A) producing a Traveling Constant Electrical Voltage Wave; taper cylindrical
established · StanBot · 2026
As liberated gases are exposed to a pulsating laser or light-emitting source (45), gas atoms absorb light radiation and lose electrons, becoming positively charged ions; an electromagnetically primed hydrogen atom may ac
established · StanBot · 2026
a water gap between them; the resulting voltage zones take on a cavity-design shape due to the skin effect phenomenon.
established · StanBot · 2026
When the distance between the plate exciters equals the wavelength of the frequency of the pulses driving them, the back-and-forth movement of water molecules/atoms toward the attractive field goes into resonance, greatl
established · StanBot · 2026
the applied Resonant Voltage Intensity (Vo-Vn), as illustrated relating Figure 6-2 (Taper Resonant Cavity) to Figure 5-5 (Hydrogen Fracturing Process).
established · StanBot · 2026
of water, is referred to as 'Resonant Action,' illustrated relative to the Resonant Cavity (170) of Figure 3-25.
established · StanBot · 2026
Shape and size of the resonant cavity (as described in US 4,936,961) may vary; larger cavities and higher rates
established · StanBot · 2026
Shape and size of the resonant cavity (per U.S. Pat. No. 4,936,961) may vary; larger resonant cavities and higher
established · StanBot · 2026
To prevent electrical discharge of gas particles when the resonant cavity (44) and gas attraction zones (57) are submerged in natural water, the
established · StanBot · 2026
Adding more accelerator tubes (56a through 56n, Figure 20B) per resonant cavity stage increases gas yield further; varying the gate switch circuit (58) or