Positive Voltage Potential
No passage in the archive defines this term plainly. It appears 15 times in the records below.
Where it appears · 15
Documents 7
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Inductance Reactance (Rs - Cd - FL)
2× · introduced
…ctrons Magnetic Field (547) of Figure (5-9) to block the movement of electron flow toward Positive Voltage Potential (66) (620) of Figure (7-1) (547) of Figure (5-9) (This reference was incorrect. 647 mentioned, but 547 was de…
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Electron Bounce Phenomenon
1× · introduced
…resultant positive electrical charged copper ions (642a xxx 642n) added together produces Positive Voltage Potential (629) being electrically applied to choke-coil (56); whereas, the "Liberated" negative electrical charged ele…
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Electrical Crossover Switching Circuit
1× · introduced
…gure (11-7). The Electrical Crossover Switching Circuit (1060) singularly places either a Positive Voltage Potential (1014) across both Voltage Zones (E18/E14) and/or a Negative Voltage Potential across Voltage Zones (E17/E16)…
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Voltage Intensifier Circuit (60)
1×
…gure (3-21). Figure (3-21) Voltage intensity increases from zero "ground-state" to a high positive voltage potential in an progressive function. Once voltage-pulse (64) is terminated or switch-off, voltage potential returns to…
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A Perspective View on Water as Fuel: An Endless Source of Clean Energy
1×
…r molecule (hydrogen atoms B– and oxygen atoms B+), and the equally intense but opposite, positive voltage potential (B+) overcomes the electrovalent bonding force holding the hydrogen and oxygen atoms together in the water mo…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
1×
…gure (9BB) and Figure 16A. Voltage intensity increased from zero "ground-state" to a high positive voltage potential in a progressive function. Once the voltage-pulse is terminated or switched-off, voltage potential returns to…
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LC Voltage
1×
…Figure (1-3) Figure (1-4) Voltage intensity increases from zero 'ground-state' to a high positive voltage potential in an progressive function. Once the voltage-pulse is terminated or switched-off, voltage potential returns t…
Bench findings 8
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L1's field performs Capacitance Charging Effect while L2's field restricts electron flow
1×
…k Circuit by locking onto the Electrons Magnetic Field, blocking electron flow toward the Positive Voltage Potential.…
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Voltage Inducement Process occurs without amp influx between positive and negative voltage potentials across Resonant Cavities
1×
…Impedance Network Circuit without amp 'influxing' (i.e., inhibiting amp flow) between the Positive Voltage Potential and Negative Voltage Potential applied across the Resonant Cavities.…
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Electron Bounce Phenomenon: magnetic field coupling into the secondary coil creates copper ion charge separation without net electron flow
1×
…lectrons from copper atoms in the copper wire, producing positive copper ions that create positive voltage potential (629) applied to choke coil 56, while the liberated electrons create negative voltage potential (631) applied…
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Crossover circuit singularly applies positive or negative voltage potential across paired voltage zones
1×
The Electrical Crossover Switching Circuit (1060) singularly places either a Positive Voltage Potential (1014) across Voltage Zones E18/E14 and/or a Negative Voltage Potential across Voltage Zones E17/E16, or vice versa.…
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Voltage across Excitor-Array rises progressively from ground-state then resets
1×
Voltage intensity across the Excitor-Array increases from zero 'ground-state' to a high positive voltage potential in a progressive function; once the voltage pulse is terminated or switched off, the voltage potential returns…
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Blocking Diode (14) conducts in one direction only, preventing electron flow toward pickup coil
1×
…ow), preventing electron flow or movement toward the Secondary Pickup Winding (42) during Positive Voltage Potential formation.…
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Blocking Diode (14) prevents reverse electron flow to pickup coil
1×
…y one direction, preventing electron flow toward the Secondary Pickup Winding (42) during Positive Voltage Potential formation.…
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Water molecule deflects toward energized Excitor Plate due to opposite-charge attraction
1×
Applying positive voltage potential (62) across Excitor Plate (61) deflects the water molecule (72) toward that voltage zone due to attraction between the negative-charged oxygen atom and the positive voltage field; switching…