Iron ions
As the sources put it
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.
Where it appears · 10
Documents 3
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Electromagnetic Enhancement
3× · introduced
…field called an "Magnetic Flux-Line". The Magnetic Flux Line follows the alignment of the Iron ions (Fe+ xxx Fe+) since Argon ions (Ar+ xxx Ar+) act as an "insulator" to the flow of magnetic Flux-Lines. The Ar…
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Magnetic Gas Lattice
3× · introduced
The forming Argon ion (Ar+) is now exposed to Iron ions (Fe+) (magnetic properties) experiencing and undergoing the same Electron Extraction Process. Together, the two ions (Ar+/Fe+) form a covalent link up or…
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Magnetic Field Enhancement
3×
…energy, as illustrated in Figure 29 WFC Tech-brief. The absorbed Laser energy forces the Iron ions' ELECTRONS to spin at a faster rate when taken to a higher energy level, which, in turn, amplifies and streng…
Bench findings 7
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Grouped Magnetic Flux-Lines form a stable magnetic field via inter-domain coupling
2×
…es together forms a 'stable' magnetic field since the magnetic coupling-field between the Iron ions or Domains helps hold the Iron ions in linear alignment beyond the bonding strength of the Gas-Lattice.…
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Absorbed laser energy accelerates iron ion electron spin, amplifying domain magnetic field
2×
The absorbed Laser energy forces the Iron ions' electrons to spin at a faster rate when taken to a higher energy level, which in turn amplifies and strengthens the magnetic field (Domain magnetic field) of the…
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Nickel and cobalt ions duplicate iron ions' magnetic properties under laser priming
1×
…el ions and cobalt ions are interchangeable with and duplicate the magnetic properties of Iron ions undergoing Laser priming.…
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Argon and Iron ions form covalent gas-lattice bond via Electron Extraction Process
1×
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 covalent electr…
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Continued Fe+ bonding to Ar+ forms a geometrical Gas-Lattice Structure (Fig 1-8)
1×
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.…
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Iron ions in the gas-lattice can be substituted with Nickel or Cobalt ions
1×
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+).…
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Magnetic Flux-Line follows alignment of Iron ions while Argon ions insulate against flux flow
1×
The Magnetic Flux Line follows the alignment of the Iron ions (Fe+ xxx Fe+), since Argon ions (Ar+ xxx Ar+) act as an insulator to the flow of magnetic Flux-Lines.…