established
Electromagnetic pump force scales with square of voltage
Force is directly proportional to power and voltage squared; force can be controlled by varying input voltage, resulting in variable speed control of the fluid-medium.
Bench
1,304 published findings from the ongoing work — what has been established, calculated and observed at the bench, each traceable to the session that produced it.
established
Force is directly proportional to power and voltage squared; force can be controlled by varying input voltage, resulting in variable speed control of the fluid-medium.
established EPG
The Electromagnetic Pump Assembly (30) acts as a direct-drive linear induction motor, with the coil-array (35a-35n) as stator displacing the magnetic fluid-medium along a bearing surface; it may run o...
established EPG confidence 0.80
An oscillating magnetic ring (31) forms around the pickup coil-array and a concentric ring (29) forms inside/below the tubular pathway; the space (32) between fields 29 and 31 allows magnetic lines to...
established EPG
EPG electrical power output is determined by: fluid-medium velocity, number of pathway-channels per spiral-divider, number of turns/twist per unit length of the spiral divider, magnetic field strength...
established EPG
Series-to-parallel hookup of the pickup coils (2a-2n) determines amp draw as to applied voltage, with Power Output = Amps x Voltage.
established EPG
Electrical power output phasing is achieved by wrapping the pickup coil in Right-hand (27) or Left-hand (28) direction: grouped Right-hand wraps give positive unipolar DC pulses, grouped Left-hand wra...
established EPG
Subdividing the Spiral Divider (9) into many pathway channels (19a-19n) of non-magnetizing material such as electrical steel M27 increases the number of magnetic flow circuits; further spiraling the t...
established EPG
Because the particles (3a-3n) are permanently magnetized, transformer interaction (magnetic field coupling) cannot occur between the Orientation Coils (12/13) and the pickup coils (2a-2n); the pulsing...
established EPG
A Variable Pulse Voltage Frequency Generator (14) triggers/energizes the orientation coils (12/13) simultaneously during particle deflection; pulse-frequency electrical output (23) is determined stric...
established EPG
Dual-Orientational coils (12/13) are inserted opposite the pickup coil-array, on the far side of the Electromechanical Drive System; when energized they stabilize the field, and when de-energized the...
established EPG
A Spiral Divider (9) is inserted into the tubular pathway, passing through the pickup coil-array and terminating at (but not passing through) the Power Drive System; this causes the magnetic field to...
established EPG
Once the tube is filled with the fluid-medium (3), the pickup coil-array is electrically energized to produce an electromagnetic field surrounding the tube, permanently magnetizing the material and fo...
established EPG
The tube is filled with permanently magnetized material (3): a liquid slurry of micro-size magnetized particles suspended in liquid Teflon or light-oil, or a permanently magnetized gas composed of ato...
established EPG
The Particle Accelerator Assembly can be a Mechanical Accelerator Drive Assembly (20) using a non-magnetic turbine wheel (21), or an Electromagnetic Pump Assembly (30) that moves the fluid-medium via...
established EPG
A Particle Accelerator Assembly (10) is inserted and affixed to the closed loop tube on the end opposite the pickup windings (2); it propels the permanently magnetized fluid-medium (liquid slurry or g...
established EPG
A wire-coil (2) or coil-array (2a-2n) is wrapped around one end of the non-magnetic tube to comply with Maxwell/Faraday Laws of Inductance; for the spiral pathway (8), the pickup coil is placed around...
established EPG
The Electrical Particle Generator uses a non-magnetic tube (aluminum, brass, glass, and/or plastics) formed into a closed loop pathway without open ends, as shown in Figures 26-30; this pathway can be...
established VIC confidence 0.80
The Voltage Intensifier Circuit (VXA) prevents electron replacement on the polarized gas atoms, and the water molecule is exposed to the same voltage stimulation process.
established VIC confidence 0.80
Increasing voltage intensity (voltage potential via amp restriction) removes additional electrons from gas atoms at a given electron light frequency injection (nuclei light absorption), aiding electro...
established WFC confidence 0.80
After ionic gas formation from natural water, the electrically charged gases (1/2) are expelled out of the Fuel Cell and enter into the Electrical Polarization Generator (90), as shown relating Figure...
established
Negative charged gas ions (2a-2n) passing through gas accumulator (40) are discharged through gas exit port (12), while positive gas ions (1a-1n) passing through gas accumulator cavity (30) are discha...
established
To maintain a constant flow of electrons toward the electrical terminal (8), gas-flow through the gas accumulator cavity (30) must be maintained; to increase amp flow (speed up electron movement), the...
established
To increase the positive electrical potential (voltage potential) at electrical terminal (8), increase the surface areas of the electrical plates (6a-6n) while increasing the number of electrically ch...
established
The Collector Grid Assembly (50) is constructed of electrical conducting plate material (6a-6n) such as stainless steel T304, and becomes positively charged via the Electrical Skin Effect when charged...
established VIC confidence 0.80
The Electrostatic Generator (6), referred to as Voltage Intensifier Circuit (9XA), applies opposite voltage potential to the screen-grids (4/5) during the Gas Filtering Process to separate positive an...
established
In the Electrical Polarization Generator (90), a negative charged screen-grid (4) attracts positive gas ions while a positive charged screen-grid (5) attracts negative gas ions, sorting them into accu...
established WFC
Caution stated in the text: applying an opposite electrical voltage field simultaneously across the water molecule (rather than alternating) produces hydrogen gas on demand via the Electrical Polariza...
established STEAM
To increase steam-yield further, simply increase the voltage amplitude of the D.C. power supply (30) shown in Figure 32QX.
established STEAM
Applying positive voltage potential (62) across Excitor Plate (61) deflects the water molecule (72) toward that voltage zone due to attraction between the negative-charged oxygen atom and the positive...
established STEAM
Dual pulsing circuit (50) alternates a unipolar positive voltage pulse sequentially between Excitor Plate (61) and Excitor Plate (69) to produce superheated steam via voltage deflection; increasing th...