Resonant Water Gap
As the sources put it
During pulse on-time (T1), electron clustering occurs within the Copper Wire Zone (52), inhibiting electron flow to maintain opposite voltage potential across the Resonant Water Gap (616), which is part of the process converting water-fuel (85) into instant thermal explosive energy.
Where it appears · 6
Documents 3
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8-2 - Traveling Voltage Wave-Guides
1× · introduced
…rcuit (690) of Figure (7-8) electrically connected with resistive liquid (85/Re) (forming Resonant Water Gap "Cp" of Figure 7-8) propagates the transmission of Traveling Voltage Wave-Form (57) of Figure (6-2) as to (77…
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Voltage to Amp Differential Ratio
1× · introduced
…nergy (16/gtnta xxx 16/gtntn) of Figure (6-2) as to (70) of Figure (4-5) is released from Resonant Water Gap (Cp) (970) of Figure (10-1), as further illustrated in (70) of Figure (4-5). Increasing energy-yield (16/gtnt…
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Electron Bounce Phenomenon
1× · introduced
…inhibiting "electron flow" to maintain opposite voltage potential (66/E9 _ 67/E10) across Resonant Water Gap (616) during the process of converting water-fuel (85) into instant thermal explosive energy (gtnt) ... there…
Bench findings 3
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VIC Matrix Circuit connected to resistive water gap forms Resonant Water Gap 'Cp'
1×
…ier Matrix Circuit, electrically connected with the resistive liquid (water, Re), forms a Resonant Water Gap referred to as 'Cp', and propagates the Traveling Voltage Wave-Form according to the Circuit Resistance Equat…
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Electron clustering in copper wire maintains opposite voltage potential across the Resonant Water Gap during hydrogen fracturing
1×
…ire Zone (52), inhibiting electron flow to maintain opposite voltage potential across the Resonant Water Gap (616), which is part of the process converting water-fuel (85) into instant thermal explosive energy.…
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Greater electrical stress yields greater thermal explosive energy release from the Resonant Water Gap
1×
…to ST-ST') applied, the greater the amount of thermal explosive energy released from the Resonant Water Gap (Cp), as shown in Figure 4-5 and Figure 10-1.…