(E13)
Stationary Positive Voltage Plate
Also written stationary voltage fields · positive voltage zone
Where it is first named
... whichever the case may be, the applied stationary voltage fields (952/E13 – 953/E14) or (954/E15 – 956/E16) alternately switch over periodically superimposes electrical stress forces (S-S' and R - R') onto the energy spectrum of the water molecule atom (s )(210) while physical flexing (951) of Figure (11-5) of the water molecule atom (s) occurs
How it is written
- (952/E13 – 953/E14) 1× with (952) Stationary Voltage Fields, (953) Stationary Voltage Fields, (E14) Stationary Voltage Fields
- (E13) 1×
- (E13/952) 1× with (952) Stationary Voltage Fields
- (E13-EI4 - E15-EI6) 1× with (EI4), (E15) Electrical Voltage Fields, (EI6)
Drawings 4
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Carries this number · Dual Switchover Circuit
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dual unipolar voltage pulse circuit (1010) of Figure (11-1) · Voltage Flexing Process
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(1030) of figure (11-3) · Voltage Flexing Process
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Carries this number · WFC 430 - Illustrations
Where it is named · 4
Voltage Flexing Process 1×
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stationary voltage fields (952/E13 – 953/E14)
... whichever the case may be, the applied stationary voltage fields (952/E13 – 953/E14) or (954/E15 – 956/E16) alternately switch over periodically superimposes electrical stress forces (S-S' and R - R') onto the energy spectrum of the water molecule atom (s )(210) while physical flexing (951) of Figure (11-5) of the water molecule atom (s) occurs
VIC Switchover Circuit 3×
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VIC Switchover Circuit (1010) of Figure (11-1) is utilized to bring about Voltage Flexing Process (1050) by preventing amp influxing into and away from the separate and periodically spaced (-) voltage zones (E13-EI4 - E15-EI6) of diagram (1030) of Figure (11-3) as to (1010) of Figure (11-1);
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stationary positive voltage plate (E13)
… tive voltage field (952) across voltage zone (EI3), the bipolar electrical charged water molecule having a negative charged oxygen atom is deflected and moved toward stationary positive voltage plate (E13) due to the opposite electrical attraction force (S-S') that exists between both opposite electrically charged entities.
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positive voltage zone (E13/952)
Pairing together positive voltage zone (E13/952) with negative voltage zone (E16/956) and doing the same with voltage-surfaces (E14/953) to (E15/954) as so graphically shown in (1O1O) of Figure (11-1) and each having an longitudinal axis of identical length, now, individually forms what is called hereinafter a "Differential Voltage Wave-guide" (1040)