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Stan’s Legacy

(FL1) · also written as a run, FL1a xxx FL1n

Distributed Inductance

Also written Inductance Fields · Choke Coils · collapsing electromagnetic field · Coefficient of Inductance · Inductance Field

Where it is first named

… piral-wrapped coils being paired together, also, causes voltage level enhancement beyond applied voltage input since the "Distributed Capacitance" (Cl xxx Cln =C2a xxx C2n) / "Distributed Inductance" (FL1a xxx FL1n = FL2a xxx FL2n) of said "Bifilar" wrapped coils encourages the compounding effect (increasing magnetic field-strength during each pulsing cycle) of electromagnetic field-strength (Rpla xxx Rpin = Rp2a xxx Rp2n) (mut …
Amp Inhibiting Circuit Vs Voltage Enhancement

How it is written

FL1a xxx FL1n is Meyer's shorthand for a run of the same thing: FL1a is the first, FL1n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral. A pair before the letters, 583/602a, is a run of two things that go together, one of each per stage.

Drawings 34

Where it is named · 11

Amp Inhibiting Circuit Vs Voltage Enhancement

  1. Distributed Inductance (FL1a xxx FL1n = FL2a xxx FL2n)

    … piral-wrapped coils being paired together, also, causes voltage level enhancement beyond applied voltage input since the "Distributed Capacitance" (Cl xxx Cln =C2a xxx C2n) / "Distributed Inductance" (FL1a xxx FL1n = FL2a xxx FL2n) of said "Bifilar" wrapped coils encourages the compounding effect (increasing magnetic field-strength during each pulsing cycle) of electromagnetic field-strength (Rpla xxx Rpin = Rp2a xxx Rp2n) (mut …

    Read it there → · on Figure (1-19B)

Instant Explosion of Water

  1. collapsing electromagnetic field (FL1)

    ... Diode (55) being placed between Secondary Pickup Coil (52) and Resonant Charging Choke (56) to act as an electronic switch in open-position during pulse off-time (T2) of Figure (7-8) while preventing electron flow in reverse direction when Inductor (L1) collapsing electromagnetic field (FL1) produces another unipolar pulse wave-form (64a - 64b).

    Read it there → · on Figure (7-8)

Inductance Reactance (Rs - Cd - FL)

  1. Inductance Field (L1-FL1)

    Inductance Field (L1-FL1) performs "Capacitance Charging Effect" (628);

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  2. Inductance Fields (FL1/FL2)

    ... overcoming any potential loss of pulse signal due to resistive interaction (Rsl/Rs2) of either or both Inductor Cores (L1/L2) wire-material to the formation of Inductance Fields (FL1/FL2) during reoccurring pulse on-time (T1a xxx T1n).

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Circuit Resistance

  1. (Z2) is determined by inductance field strength (FL1) and resistive value (RS1) (typically 11.6 KQ) of stainless steel (s/s) wire-coil (56) (LI) when being exposed to external magnetic coupling field strength (Rp),

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Transformer Action

  1. Choke Coils (FL1 - FL2)

    (Lt cc) is the total inductance of Choke Coils (FL1 - FL2),

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  2. Inductance Fields (FL1 - FL2 - FL3 - FL4)

    ... thus, allowing Inductance Fields (FL1 - FL2 - FL3 - FL4) to be aiding one another during the same sequence of pulse-time (T1) ... …

    Read it there → · on Figure (7-5)

  3. … dielectric properties of water (Re) to cause and inhibit electron flow (IF) since "electrons" magnetic field (547) of Figure (5-9) locks onto the electromagnetic fields of each energized choke coils (FL1/FL2) during Voltage Excitation (Vo -Vn) which, now, brings on and allows "Electron Bounce Phenomenon" (700) of Figure (7-9) to take place.

    Read it there → · on Figure (7-9)

Electron Bounce Phenomenon

  1. Choke Coils (FL1 - FL2)

    Coupling Inductance (Rp1) and (Rp2) in (690) of Figure (7-8) is further expressed in the following equation: Where, (Lt cc) is the total inductance of Choke Coils (FL1 - FL2), (L1) and (L2) are the inductance of each individual choke coil (56)(62) in series with Secondary Coil (52) Electrical Voltage Potential (700) of Figure (7-9) and being exposed to the same Voltage Tr …

    Read it there → · on Figure (7-9)

  2. Coefficient of Inductance (FL1/FL2)

    … RR') is in balance phase of equal electrical intensity (66 = 67) of opposite polarity (positive electrical voltage potential _66 equals negative electrical Voltage potential 66 since the Voltage Coefficient of Inductance (FL1/FL2), Voltage Coefficient of Capacitance (Cd1/Cd2), and Voltage Coefficient of Resistance (Rs1/Rs2) across choke coils (L1/L2) are the same values

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Propagating Electrical Stress

  1. Distributed Inductance (FL1a xxx FL1n - FL2a xxx FL2n)

    … ing Chokes 56/62) being paired together, also, causes voltage level enhancement beyond applied voltage input since the "Distributed Capacitance" (C1a xxx C1n - C2a xxx C2n) / "Distributed Inductance" (FL1a xxx FL1n - FL2a xxx FL2n) of said "bifilar" wrapped coils (Figure 7-3) as to (990) of Figure (10-3) encourages the compounding effect (increasing magnetic field-strength during each pulsing cycle) of electromagnetic field-str …

    Read it there → · on Figure (7-3)