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Dual Capacitor Meta Material - Operation Ion Jump 2 - Concept.
Meta Material design or Cubed Tile design for use as capacitors and ion jumps between them. The top surface can be positively charged, to fill all top capacitor cups, then increasing voltage perhaps makes the ions jump between the readily available lower cup capacitors that are separated by a non conductive material in between, with variable dimensions, as needed. Concept could work directional from Top to Bottom, or directional as in for a lateral effect. Walls could be removed and connected to have thin surfaces fully separated from each other, yet matching perfectly, designed as a pair, creating a double layer material, where the top is charged positively, and the bottom acts as a drain, the negative pole.if we filled the hollow torus container with a light pressurized gas like helium, and capped the 4 holes off from each container module, and used multiple balanced out, similar modules connected, we could probably make a surface float electrostatically. Electrically changing the polarity and held charge, of the entire combined surface, fully controllable, per location.
The most complex Meta material would be to combine the top down oriented modules, woven into a set of similar yet horizontally placed modules, to have both electrostatic functionalities built into a single structure of one Meta material.The compressed Helium kept inside the Torus container structures will not care for the orientation nor form of their actual container, as they still exercise a small upward pressure on the entire fully balanced modules form.
Updated the design to show the charged surfaces and modularity better. Each functional cube can/could be fully insulated from the next cube before assembly. Or we can use a triple layered sheet, the center one being insulating the top and bottom layers. To create the material from other existing materials, Bore two opposite holes with the same diameter and let some space between them, then Bore a central hole completely through the insulation with a smaller a radius. Now we have opposing dips between two surfaces of met material.
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