The quantum memory for a quantum computer is equal to 2 magnets that are attracted to each other

 The quantum memory for a quantum computer is equal to 2 magnets that are attracted to each other. The quantum computer processes millions of times faster than a normal computer.It is a metal pole in the middle separating the two magnets. A north pole and a south pole attract each other through the metal poles in the middle, then it passes this current through one side of the magnet and does not allow the opposite direction to pass. That is, the negative and positive direction cannot be reversed. This generates this current in the generator so it also only allows that electric direction to pass through it. The magnet is round to make it easy to rotate. And on the two sides the two magnets are 2 metal poles connected to the other wire. of a magnet that initially turns the north pole in with the other to the north pole, so it must reverse the current to pass again. is one side of this current. 1 side of the current. state of memory. put the iron middle metal poles to rotate the 2 north poles of the two magnets to attract the iron. and turn the 2 poles of the two magnets in. and rotate the two magnets in parallel to the north and north south island 2 magnet n So there are 6 memory states that are enough to create a super powerful quantum computer. Use 2 converging magnetic fields on both sides to rotate the magnet. The electromagnet should reverse the magnetic field and change the range to the memory cells. OK

Comments

Popular posts from this blog

The 3d projector shines on the air with the converging invisible light that heats the steam to white

The 3d screen shines on the air with a laser beam of invisible light as small as electrons

Store electricity by demagnetizing electrons so that it can be easily stored in the flask without running out into lightning, damaging the battery