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Stan’s Legacy

report

Electrical polarization process: energy calculations

1 January 1995

Page 59

Electrical Polarization Process (EPP) - Voltage Dissociation of the Water Molecule

Open Gap

Position

Voltage Electrical

Attraction Force

Tap Water Gases

Amp

Restriction

Threshold Start-Point

Variable Flat-Plate (Water Fuel Cell) (E1A) Solid State Amp Inhibiting Circuit (8XA)

Test Equipment:

TIF Instruments: 1000 DC Digital Clamp-on Connectionless Ammeter Micronta Model! 22-210 - DC Volt Meter

Page 59 of the original patent document

Page 60

Rotary Pulse-Voltage Alternator

Voltage Electrical

Attraction Force

Tap Water Gases Amp

Restriction

Single Tubular Voltage Wave-Guide

Voltage Dissociation of the Water Molecule

Tubular-Array (Water Fuel Cell) (E2A)

1) Tested Electrical Power Loading: 12.5VDC @ 40 amps = 500 watts

2) Tested Gas Rate: 1 liter cavity @ 7lbs / min Gas Production Rate

1 Liter Cavity = 1,000 cc of Gas Volume = 1lb Gas Pressure

5) 7,000 cc / min X 60 minutes = 420,000 cc / hr. Gas Production Rate

6) 420,000 cc/ hr. +9 Tubular Voltage Wave-Guides = 46,666 cc / hr/ tube 7) Electrical Watts per tube: 12.5V x 4.4 amps / hr = 55 watts / hr

Prior Art “Electrolysis”: Electrolyte 20% per liquid volume; Dead Short Condition 8) 10cc Gas Production Rate per (1) amp / hr @ 2 Volts Electrical Power Loading

9) Electrical Watts: 4.4 amps / hr x 2 Volts Potential = 8.8 Watts / hr 10) Total Gas-Yield: 1cc x 4.4 amps / hr = 4.4 cc / hr Gas Production Rate

Electrical Polarization Process (EPP) Vs Prior Art Electrolysis Process

11) 55 Watts /hr (EPP) + 8.8 Watts / hr (Electrolysis) = 6.25 X 4.4cc/hr= 27.5 cc/hr. estimated gas-yield (Electrolysis).

Therefore,

(12) 46,666 cc / hr + 27.5 cc/hr = 1,696 WFC Differential Efficiency Factor greater than Electrolysis.

Test Equipment:

TIF Instruments: 1000 DC Digital Clamp-on Connectioniess Ammeter Micronta model 22-210 DC Volt Meter

Page 60 of the original patent document

Page 61

Electrical Polarization Process (EPP)

Voltage Dissociation of the Water Molecule

Continuation ... Tubular-Array

Hydrogen Content of Gas:

13) 46,600 cc/hr (EPP) gas-yield - 5,126 cc/hr (11% ambient air) = 41,474 cc/hr

14) 41,474 cc/hr x 20% (* hydrogen mass unit of Water) = 8,294.8 cc/hr hydrogen content of gas

* Mass Unit of Water Molecule = (2H x 1Mu) + (1 Oxy x 8 Mu) = 10 Mu’s

(See WFC The Birth of New Technology, Table of Tabulation, Appendix A).

Therefore

15) 8,294.8 cc/hr + 27.5 cc/hr = 301 (WFC Differential Efficiency Factor) (DEF) greater than Electrolysis (See Dr. T. Nagypal Test-Report, WFC International Independant Test- Evaluation manual,

Page 61 of the original patent document

Provenance

Pages
pages 59–61 of 140
Binder
WFC Project Binder 423-DA
Method
pdftoppm 300dpi + tesseract 5 (eng), orientation-corrected
Source
WFC International Independent Test-Evaluation Report (1995), scanned binder