Inductance Reactance
As the sources put it
Inductance Reactance directly determines "Stored" Energy (Wa) which is controlled by input Voltage Potential attenuated or varied by way of Voltage Amplitude (Vo xxx Va xxx V b - Vf xxx Vg xxx Vn) of Figure (7-13) and/or Gated Pulse-Frequency (49a xxx 49n - T3 - 49a xxx 49n), or both.
Where it appears · 14
Documents 4
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In-Line Circuit Components
3× · introduced
…an even higher Voltage Potential (66/67) across Resonant Capacitor (140 -170) (ER) since Inductance Reactance "Stores" Energy and, is expressed by: Where, (Wa) is the energy in Joules (Watt-seconds); (L) is the Inductan…
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Inductance Reactance (Rs - Cd - FL)
2× · introduced
Inductance Reactance occurs when resistance (Rs), capacitance (Cd), and Inductance (FL) interacts together during D.C. Pulsing (49a xxx 49n), as schematically depicted in (690) of Figure (7-8). (690) of Figure (7-8) Indu…
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Capacitance Reactance
2× · introduced
…o-the-touch) keeps (Re) constant since amp flow remains minimal. Plate Inductance (Lc) is Inductance Reactance of Inductor (L1 ) and Inductance Reactance of Inductor (L2) in series with Resonant Capacitor (140 -170) of F…
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Instant Explosion of Water
1× · introduced
…) ... outputting Voltage-wave signal (64a xxx 64n) being a pulse-frequency doubler due to Inductance Reactance (FL) of Inductor Coil (56) of Figure (3-22) when collapsing magnetic field (FL) of Figure (7-3b) re-cuts coil…
Bench findings 10
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Stored energy formula for inductance
1×
…uctance (L) in Henries and current (I) in amperes, per the stated energy relationship for Inductance Reactance.…
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Stored energy is controlled by input voltage amplitude and gated pulse frequency
1×
Inductance Reactance directly determines Stored Energy (Wa), which is controlled by the input Voltage Potential as attenuated or varied via Voltage Amplitude (Vo, Va, Vb-Vf, Vg-Vn, per Figure 7-13) and/or Gated Pulse-Fre…
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Inductance Reactance doubles input frequency at 50% duty cycle
1×
Inductance Reactance doubles the input frequency (64a * 64b) when a 50% Duty Cycle Pulse (T1 = T2) is inputted, while also increasing applied voltage amplitude (Vo-Vn).…
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Step Charging Effect occurs when pulse off-time is less than on-time
1×
Inductance Reactance effectuates the 'Step Charging Effect' (680, per Figure 7-7) when the Pulse off-time (T2) is less than the Pulse on-time (T1).…
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Inductance Reactance determines voltage swing and establishes impedance to minimize heat loss
1×
Inductance Reactance determines the voltage swing from the highest voltage level (Vn) to the volts switch-off point (Vff), and establishes Impedance (FL) which minimizes heat loss of electrical input power (49) by impair…
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Plate Inductance is L1 and L2 in series with the Resonant Capacitor
1×
Plate Inductance (Lc) is the Inductance Reactance of Inductor (L1) and Inductor (L2) in series with the Resonant Capacitor (140-170 of Figure 7-6, corresponding to 690 of Figure 7-8).…
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Inductor (c) uses resistive wire (R7) to restrict DC current beyond inductance reactance
1×
…) is composed of resistive wire (R7) which further restricts D.C. current flow beyond the inductance reactance (XL).…
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Output voltage waveform acts as a pulse-frequency doubler due to inductor coil's collapsing magnetic field
1×
The output voltage-wave signal (64a-64n) is a pulse-frequency doubler due to the Inductance Reactance (FL) of Inductor Coil (56, Figure 3-22): when the magnetic field (FL, Figure 7-3b) collapses, it re-cuts the coil-wrap…
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Inductance Reactance increases voltage across water-capacitor beyond applied voltage potential
1×
Inductance Reactance occurs when resistance (Rs), capacitance (Cd), and Inductance (FL) interact during D.C. Pulsing, increasing voltage across the water-capacitor (ER) beyond the applied Voltage Potential and establishi…
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Lengthening L1/L2 inductors raises voltage potential across Resonant Capacitor (ER)
1×
…er Voltage Potential (66/67) across the Resonant Capacitor (140-170, labeled ER), because Inductance Reactance stores energy.…