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Stan’s Legacy

(612) · also written as a run, 612a xxx 612n

Dynamic Electrical Charging Effect

Also written Dynamic

Where it is first named

… ed capacitance (Cda xxx Coo) and distributed inductance (Dla xxx Dln) of Figure (7-3) to intensify Inductance Field Strength (FLa xxx FLn) to function as a voltage multiplier in switch-off conditions (612a xxx 612n), as illustrated in (710) of ~ . Figure (7-10) as to VIC Coil Assembly (580) of Figure (6-1) and, is expressed:
Multi-layer Coil

How it is written

  • (612)
  • (612a xxx 612n)

612a xxx 612n is Meyer's shorthand for a run of the same thing: 612a is the first, 612n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.

Drawings 21

Where it is named · 8

Multi-layer Coil

  1. … ed capacitance (Cda xxx Coo) and distributed inductance (Dla xxx Dln) of Figure (7-3) to intensify Inductance Field Strength (FLa xxx FLn) to function as a voltage multiplier in switch-off conditions (612a xxx 612n), as illustrated in (710) of ~ . Figure (7-10) as to VIC Coil Assembly (580) of Figure (6-1) and, is expressed:

    Read it there → · on Figure (7-10)

8-5 - Energy Vectoring (Ev)

  1. Dynamic Electrical Charging Effect (612)

    ... producing Dynamic Electrical Charging Effect (612) of Figure (8-1) that increases Electrical Stress Pressure (Espa + Espb + Espc, and so on) continually during each gated voltage pulsing cycle (49a xxx T3 xxx 49n).

    Read it there → · on Figure (8-1)

  2. (612) of Figure (8-1)

    Read it there → · on Figure (8-1)

8-6 - VIC Voltage Sync-Pulse Circuit

  1. Dynamic (612)

    This non-voltage shift (Balanced Phasing of opposite Voltage Potential) helps prevents atom displacement during "Snapping-Action" by which "Resonant Electrical Stress" of opposite electrical polarity (RU/RU' - ST/ST') is applied equally across Water Molecule (s) (85) to propagate either Static (585) or Dynamic (612) Electrical Charging Effect (s) at elevated Voltage Peak Potential (s).

    Read it there →

Propagating Electrical Stress

  1. Dynamic Electrical Charging Effect (612)

    The resultant Dynamic Electrical Charging Effect (612) of Figure (8-1) acts as a progressive energy enhancer (Energy Priming Stage) (500) of Figure (5-1)

    Read it there → · on Figure (8-1)

  2. Dynamic Electrical Charging Effect (612)

    Dynamic Electrical Charging Effect (612) of Figure (8-1)

    Read it there → · on Figure (8-1)

Voltage to Amp Differential Ratio

  1. Dynamic Electrical Charging Effect (612)

    The resultant ever increasing pulsating opposite electrical voltage fields (603/604a xxx 603/604n) of Figure (8-1) having superimposed thereon counter opposing Rippling Voltage-Surfaces (64/B+a xxx 64/B-n) [Dynamic Electrical Charging Effect (612) of Figure (8-1B)], now, set ups, causes, and applies ever increasing (rubberbanding effect) Pulsating Opposite Electrical Stress (RU-RU' - ST-ST') across Water Gap (Cp)

    Read it there → · on Figure (8-1B)

Quartz Tube Configuration & Operational Parameters

  1. Dynamic Electrical Charging Effect (612)

    ... establishing variable Dynamic Electrical Charging Effect (612).

    Read it there →