established EPG
Gas-Lattice becomes magnetized when exposed to a magnetic field
The newly 'structured' Gas-Lattice becomes magnetized when momentarily exposed to a magnetic field, as illustrated in Figure 1-9.
Bench
53 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 EPG
The newly 'structured' Gas-Lattice becomes magnetized when momentarily exposed to a magnetic field, as illustrated in Figure 1-9.
established EPG
Gas-Lattice formation of unlike atoms by way of the Electron Extraction Process is, hereinafter, called 'The Gas Bonding Process'.
established EPG
During Gas-Lattice formation, Iron ions (Fe+) can be replaced by other atoms exhibiting magnetic properties such as Nickel ions (Ni+) or Cobalt ions (Co+).
established EPG
Covalent bonding between like atoms does not occur due to the 'stronger' Electrical Attraction-Force (qq') between unlike atoms, which favors bonding between Argon and magnetic metal ions instead.
established EPG
Stable-state of the Gas-Lattice occurs when the covalent shell of each unlike atom structure becomes full: the Argon atom (Ar) has a covalent shell of 8 electrons while the Iron atom (Fe) has a covale...
established EPG
Covalent bonding of Iron ions (Fe+) to the Argon ion (Ar+) continues until a geometrical Gas-Lattice Structure is formed, as illustrated in Figure 1-8.
established EPG
The forming Argon ion (Ar+) is exposed to Iron ions (Fe+), which have magnetic properties, and both undergo the Electron Extraction Process. The two ions (Ar+/Fe+) form a covalent bond when the covale...
established EPG
Laser activated or laser primed gas ions repel the dislodged electrons being consumed, as illustrated in Figure 1-5.
established EPG
By varying or regulating laser intensity in direct relationship to applied pulse-voltage frequency and voltage amplitude, the inert gas atom of Argon (Ar) is caused to become a positive charged gas io...
established EPG
Laser or light intensity is variable as to duty cycle on/off pulse-frequency from 1 Hz to 65 Hz and above, determined by Le (light intensity in watts), T1 (current on-time), T2 (current off-time), and...
established EPG
Attenuating and adjusting the pulse-voltage-amplitude relative to the pulse-voltage-frequency regulates the Electron Extraction Process governing how electrons are pulled from the gas atom.
established EPG
Once negatively charged electrons are dislodged from the gas atom, the atom becomes destabilized, having missing electrons; this dislodging of electrons via voltage stimulation is termed the Gas Desta...
established EPG
A stationary negative electrical voltage field (E4) simultaneously attracts the positively charged nucleus of the gas atom.
established EPG
A stationary positive electrical voltage-field (E3) attracts the negatively charged electrons away from the gas atom.
established EPG
The gas atom acted upon in the destabilization process is Argon (Ar), which is pulled apart into ion and dislodged electrons via the applied pulse-voltage field.
established EPG
Placing a pulse-voltage potential across the Excitor-Array of the Gas Resonant Cavity, while inhibiting electron flow within the Voltage Intensifier Circuit, causes the argon gas atom to become a posi...
established EPG confidence 0.80
In the VIC resistance relationship, RE is defined as the dielectric constant of Argon (Ar), the dielectric gas used in the Electrical Particle Generator, not the Water Fuel Cell.
established EPG
The Argon (Ar) gas molecule/atom becomes part of the Voltage Intensifier Circuit as a form of resistance between electrical ground and pulse-frequency positive-potential, helping prevent electron flow...
established EPG
The dielectric properties of Argon Gas (dielectric constant 1.000545 @ 23°C) between electrical plates (E3/E4) form the capacitor (ER) of the Gas Resonant Cavity (t).
established EPG
The Magnetic Pulse-Wave produced from the pulsed laser stimulation of the Gas-Lattice traverses pickup windings to generate electricity.
established EPG
The newly structured and formed Gas-Lattice is exposed to Laser Energy, which is pulsed to produce a Magnetic Pulse-Wave.
established EPG
Manufacturing the Magnetized Gas requires taking inert gas atoms and forming a 'Stable' Gas-Lattice by way of voltage stimulation, called 'The Gas Bonding Process.'
established EPG
The Electrical Particle Generator capitalizes on and uses a Magnetized Gas to produce Electrical Energy.