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Stan’s Legacy

(15) · also written as a run, 15a xxx 15n

Variable Gated-Pulse

Also written gated pulse train · duty-cycle pulse · alternation · duration

Where it is first named

Once the gated pulse train (15) is set as to maximizing gas production, the duty-cycle pulse (15) is now varied from one duty-pulse per second alternation (15a) to one hundred duty-pulses per second duration (15n).
Voltage Attenuation Circuit

How it is written

  • (15)
  • (15a)
  • (15n)

15a xxx 15n is Meyer's shorthand for a run of the same thing: 15a is the first, 15n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.

Drawings 1

Where it is named · 5

Voltage Attenuation Circuit

  1. gated pulse train (15)

    Once the gated pulse train (15) is set as to maximizing gas production, the duty-cycle pulse (15) is now varied from one duty-pulse per second alternation (15a) to one hundred duty-pulses per second duration (15n).

    Read it there →

  2. duty-cycle pulse (15)

    Once the gated pulse train (15) is set as to maximizing gas production, the duty-cycle pulse (15) is now varied from one duty-pulse per second alternation (15a) to one hundred duty-pulses per second duration (15n).

    Read it there →

  3. alternation (15a)

    Once the gated pulse train (15) is set as to maximizing gas production, the duty-cycle pulse (15) is now varied from one duty-pulse per second alternation (15a) to one hundred duty-pulses per second duration (15n).

    Read it there →

  4. duration (15n)

    Once the gated pulse train (15) is set as to maximizing gas production, the duty-cycle pulse (15) is now varied from one duty-pulse per second alternation (15a) to one hundred duty-pulses per second duration (15n).

    Read it there →

  5. variable gated-pulse (15)

    The variable gated-pulse (15) is now adjusted to reduce amp flow further while allowing voltage amplitude (Va-Vn) and pulse voltage frequency (9A) to be adjusted to "tune-in" for higher gas-yields (second stage to voltage attenuation).

    Read it there →