Quantum memory equals 4 opposite currents, 2 parallel wires have 2 currents in the same direction, they repel each other

 Quantum memory equals 4 opposite currents, 2 parallel wires have 2 currents in the same direction, they repel each other.And if there are 2 currents in opposite directions, the 2 wires attract each other so it sucks to the south we make circular magnet cells, then make iron conductors. 4 wires form a square around a circular magnet. 4 wires give reverse power to each of the two parallel wire pairs. The other 2 parallel wires in the opposite direction. 4 wires into the magnet's circular vortex. Make the iron wire so that it attracts the magnet to keep the state of rotation.4 new current can rotate.When reading the data, put electricity into 2 wires in parallel the conductivity is measured through magnets, electromagnet attracts electrons so that the same north south direction with electrons conducts electricity well, in the opposite direction of a small magnet, it is poorly conductive, electron is a small magnet. The quantum memory conducts electricity at different levels into quantum memory. Quantum memory remembers more levels than normal, so it can be processed many times faster.

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