Figure (8B)
Figure (8B)
How it is written
- (8B) 4×
Where it is named · 4
Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore 4×
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The final step is to control disassociation, whereupon atomic particles ionize by introducing energy fields within the water bath, which leads to atomic discharge. By repeating gas reactions via the output leads to subsequent field processes, continuous gas energy output is achieved. Gases released are subjected to recombination processes for energy stream release, illustrated in FIG. 8B.
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… As shown in FIG. 8B, as high energy levels are increased, the ion continues to accelerate, bringing the atoms of the dissociated water into focus and recombination.
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In FIG. 8B, an atomic gas ion stream moves along a longitudinal resonance path set in resonance within the cavity shown in FIG. 7A and 7B. This gas flow moves upward after introduction to a successive stage as water vapor is introduced at high energy. The gas is transmitted into a steam interface, showing movement by energy fields aligned with the dissociation process.
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The highly charged gases result in thermal energy conversion, as gas ion passes from an ionically excited chamber into the interface field. As shown in FIG. 8B, the gas travels along the longitudinal line, accelerated by additional gas ion fields.