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Stan’s Legacy

(47) · also written as a run, 47a xxx 47n

Water Mist

Also written water · Dielectric Properties of Water · expelling water mist · liquid water · pulse train · proportional pulse train · fluid-displacement · water supply and 4 more

Where it is first named

In either case, the resultant or varied pulse train (47a xxx 47n) (calibration of 44a xxx 44n) becomes incoming gated pulse signal (48) of figure (3-5) to cell driver circuit (90) of Figure (3-5) which performs a switching function by switching "off' and "on" electric ground being applied to opposite side (48) of primary coil (26) of Figure (3-19).
Cell Driver Circuit (90)

How it is written

47a xxx 47n is Meyer's shorthand for a run of the same thing: 47a is the first, 47n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.

Drawings 78

Where it is named · 30

Cell Driver Circuit (90)

  1. pulse train (47a xxx 47n)

    In either case, the resultant or varied pulse train (47a xxx 47n) (calibration of 44a xxx 44n) becomes incoming gated pulse signal (48) of figure (3-5) to cell driver circuit (90) of Figure (3-5) which performs a switching function by switching "off' and "on" electric ground being applied to opposite side (48) of primary coil (26) of Figure (3-19).

    Read it there → · on Figure (3-5)

  2. proportional pulse train (47a xxx 47n)

    The resultant pulse wave form (49a xxx 49n) of Figure (3-18) superimposed onto primary coil (26) is exact duplicate of proportional pulse train (47a xxx 47n).

    Read it there → · on Figure (3-18)

  3. pulse train (47)

    However, each pulse train (47) (49) are electrically isolated from each other.

    Read it there →

Water Fuel Injection System 11×

  1. First water mist (47) of Figure (1-3A) is injected into fuel-mixing chamber (35) of Figure (3B) by way of water spray ports (41a xxx 41n) of Figure (3A);

    Read it there → · on Figure (1-3A)

  2. Secondly, ionized air gases (46a xxx 46n) of Figure (3A) (laser primed ambient air gases having missing electrons) produced by Ambient Air Ionizer (80) of Figure (4) as to Figure (1) and non-combustible gases (45) of Figure (3A) are intermixed with expelling water mist (47a xxx 47n) to form Water-fuel mixture (48) by way of gas mixing disc (34) of Figure (3B) as to (30) of Figure (2A);

    Read it there →

  3. water (47)

    To ensure proper energy-flame projection and subsequent energy-flame stability, constant placement water pump (170) causes and allows ionized ambient air gases (46), non-combustible gases (45), and water (47) to be displaced under static pressure up to and beyond 125 psi respectively.

    Read it there →

  4. water mist (47)

    Energy-Flame density is enhanced and sustained by causing ionized gases (46a xxx 46n) of spray port (42) to be deflected into liquid spray path (41), together water mist (47) and ionized air (46) are, now, directed toward and deflected through non-combustible gas spray path producing uniformed water-fuel mixture (48), as illustrated in Figure (3B).

    Read it there →

  5. Energy-Flame temperature is regulated by controlling the volume flow-rate of each fluid mediums (47 / 45/ 46) in direct relationship to applied voltage intensity (33 /36), as further stated in Figure (2B) as to Figure (3B).

    Read it there →

  6. fluid-displacement (46/47)

    To elevate Energy-flame-temperature still further, help increase fluid-displacement (46/47) while maintaining or reducing the volume flow rate of non-combustible gases (45) during an increase of applied voltage amplitude (Vo x Vn) of Figure (32) as to Voltage Intensifier Circuit (110) of Figure (7) and Electron Extraction Circuit (120) of Figure (8).

    Read it there →

  7. To lower Energy-flame temperature simply increase the amount of non-combustible gas (45a xxx) or reduced the fluid flow rate (45 / 46/ 47)) uniformly while lowering pulse voltage amplitude (xxx Vo).

    Read it there →

  8. To establish a predetermined or given Energy-flame temperature adjust fluid-medium (45 / 46 / 47)) and applied voltage amplitude (Vo xxx) independent of each other to obtain the desired results.

    Read it there →

  9. Water droplets (28a xxx 28n) escaping from spray-mist (47) and exposed to high intensity voltage fields of opposite polarity 33/ 36) are stimulated to undergo Electrical Polarization Process (160) of Figure (25)...which not only separates and splits the unli …

    Read it there →

  10. In terms of performance reliability and safety, ionized air gases (46a xxx 46n) and liquid water (47a xxx 47n) do not become energy activated (volatile) until water-fuel mixture (48) reaches Voltage Igniter Stage (180).

    Read it there →

  11. water supply (47)

    especially when ionized ambient air gases (46a xxx 46n) and non-combustible gases (45a xxx 45n) are intermixed with water supply (47) prior to entering.

    Read it there →

Water Fuel Injector (Taper Resonant Cavity Chamber)

  1. allowing water fuel mixture (47/45/46) (48) to be particle aligned by opposite electrostatically charged atoms

    Read it there →

  2. ...positive charged gas particles (81a xxx 81n) being directed to and attached to negative charged oxygen atom (76) of water molecule (47);

    Read it there →

  3. By first, separating water molecule (47) into its component gases (oxygen 76 / hydrogen 77a - 77b) by way of the Electrical Polarization Process (160) of Figure (25) (WFC Memo 422 DA);

    Read it there →

  4. Dielectric Properties of Water (47)

    Incoming pulse-train (210a xxx 210n) is adjusted to "tune-in" to the Dielectric Properties of Water (47) which allows Resonant Action (see WFC Memo 424, once again) to occur since the Dielectric property of water (78.54 value) becomes a integral part of Electronic Circuit (110) of Figure (7) as to (220) of Figure (18)

    Read it there →

Water Fuel Injection System - Page 1

  1. water mist (47)

    First water mist (47) of Figure (4-4) is injected into fuel-mixing chamber (35) of Figure (4-5) by way of water spray ports (41a xxx 41n) of Figure (4-4);

    Read it there → · on Figure (4-4)

  2. expelling water mist (47a xxx 47n)

    Secondly, ionized air gases (46a xxx 46n) of Figure (4-4) (laser primed ambient air gases having missing electrons) produced by Ambient Air Ionizer (80) of Figure (4-6) as to Figure (4-1) and non-combustible gases (45) of Figure (4-4) are intermixed with expelling water mist (47a xxx 47n) to form Water-fuel mixture (48) by way of gas mixing disc (34) of Figure (4-5) as to (30) of Figure (4-2);

    Read it there → · on Figure (4-5)

Water Fuel Injection System - Page 2

  1. water (47)

    To ensure proper energy-flame projection and subsequent energy-flame stability, constant displacement water pump (170) causes and allows ionized ambient air gases (46), noncombustible gases (45), and water (47) to be displaced under static pressure up to and beyond 125 lbs psi, respectively.

    Read it there →

  2. water mist (47)

    Energy-Flame density is enhanced and sustained by causing ionized gases (46a xxx 46n) of spray port (42) to be deflected into liquid spray path (41), together water mist (47) and ionized air gas (46) are, now, directed toward and deflected through non-combustible gas spray path (43)

    Read it there →

  3. fluid-mediums (47 / 45 / 46)

    Energy-Flame temperature is regulated by controlling the volume flow-rate of each fluid-mediums (47 / 45 / 46) in direct relationship to applied voltage intensity (33 / 36), as further illustrated in Figure (4-2) as to Figure (4-5).

    Read it there → · on Figure (4-2)

  4. fluid-displacement (46/47)

    To elevate Energy-flame-temperature still further, simply increase fluid-displacement (46/47) while maintaining or reducing the volume flow rate of non-combustible gases (45) during an increase of applied voltage amplitude (V0 xxx Vo) of Figure (4-2) as to Voltage Intensifier Circuit (110) of Figure (4-9) and Electron Extraction Circuit (120) of Figure (4-10).

    Read it there → · on Figure (4-2)

  5. fluid flow rate (45 / 46 / 47)

    To lower Energy-flame temperature simply increase the amount of non-combustible gases (45a xxx) or reduced the fluid flow rate (45 / 46 / 47) uniformly while lowering pulse voltage amplitude (xxx V0).

    Read it there →

  6. fluid-medium (45 / 46 / 47)

    To establish a predetermined or given Energy-flame temperature adjust fluid-medium (45 / 46 / 47) and applied voltage amplitude (V0 xxx) independent of each other to obtain the desired results.

    Read it there →

  7. spray-mist (47)

    Water droplets (28a xxx 28n) escaping from spray-mist (47) and exposed to high intensity voltage fields of opposite polarity 33/36) are stimulated to undergo Electrical Polarization Process (160) of Figure (3-26)

    Read it there → · on Figure (3-26)

Water Fuel Injection System - Page 3

  1. liquid water (47a xxx 47n)

    In terms of performance reliability and safety, ionized air gases (46a xxx 46n) and liquid water (47a xxx 47n) do not become energy activated (volatile) until water-fuel mixture (48) reaches voltage Igniter Stage (180).

    Read it there →

Water Fuel Injection System - Page 4

  1. water supply (47)

    ... especially when ionized ambient air gases (400 xxx 46n) and non-combustible gases (45a xxx 45n) are intermixed with water supply (47) prior to entering Water Fuel Injector Plug (20/30), as illustrated in (40) of Figure (4-2) as to (10) of Figure (4-1).

    Read it there → · on Figure (4-2)

Capacitance Reactance

  1. which, when occurring at gas exit port (32) of Figure (4-5), spark-ignites expanding water gas-fuel (45/46/47) of Figure (4-5) during water inject cycle (70) of Figure (4-5)

    Read it there → · on Figure (4-5)