Since I put it on ou.com I might as well share it here as well...
And another design...
That's it folks. Tomorrow I'll be experimenting with one bar magnet and my claimed nonzero net force that should occur.
Oke here's another half baked one.
Again the idea is fairly simple, Using two radially magnetized (one would also work but less torque) you get such a field that will produce a net torque on a current carrying wire. As the conductor is rotating the flux will remain constant at all angles thus no induced current will be generated and there will be no back drag (lenz's law). So the loop will accelerate to INFINITY AND BEYOOOOOND..
As always feedback is appreciated.
Again the idea is fairly simple, Using two radially magnetized (one would also work but less torque) you get such a field that will produce a net torque on a current carrying wire. As the conductor is rotating the flux will remain constant at all angles thus no induced current will be generated and there will be no back drag (lenz's law). So the loop will accelerate to INFINITY AND BEYOOOOOND..
As always feedback is appreciated.
After I went to bed for sleep I realized that a radial field wasn't needed at all. So here is the method to use with axial magnetized ring magnets. See below. Obviously the lower part has to be weakened a bit for maximum effect but this is easy peasy by putting it in a magnetic pot. See simulation.
That's it folks. Tomorrow I'll be experimenting with one bar magnet and my claimed nonzero net force that should occur.
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