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Overunity Machines Forum



Need some help for my homopolar experiment!

Started by blueplanet, July 04, 2011, 01:35:31 AM

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0 Members and 1 Guest are viewing this topic.

CompuTutor

First,
I am being specific when I said that a magnetic field
will NOT turn with the magnet, in the case of a permanent magnet !

Spin one in a drill and see !
(Or see YouTube trials...)

Forest, you, and I asked this question,
but was only pondered on this forum.

Reference:
http://www.overunity.com/index.php?topic=8516.0

Sadly, I positively believe that multiple load inductors
could flourish without the loss of brushes in the fist place.

Heck, even the reverse induction coil method should do !

a unilateral layout of primary current to outermost exposed bridges around the edge
should provide the best recovery of the low voltage / high current available.

We hate the large current into a engine's start motor,
but do not see the equal recovery in reverse...

forest

The point is: if large current means large amount of electrons then how they are generated inside metalic disk ? if large current means fast electrons (fast rate of change of charge per second) while electrons amount is tiny (free electrons in metal) then how we moved them so fast ?
if the voltage is so low then maybe we converted voltage into amperage inside disk ?
do you have any workable homopolar generator ?

I'd like to know how output voltage and current is related to strength of permanemt magnet. Simply we need to test it with ferrite magnet and neodymium one.
Does strength of magnetic field rise voltage or only current ?

blueplanet

I think most of the questions posted in this thread can be answered with the help of Lorentz force equation.

Neither Lorentz force equation nor our experimental results suggest that magnetic flux change is a prerequisite for homopolar induction.

I suspect that there is a link between this Lorentz force and the centrifugal force ( F=mv^2/r).

blueplanet

Remember, the earth itself is a spinning magnet. The way how it spins is not very different from that of a homopolar device. If the law of relativity is correct, we wouldn't be able to measure anything due to this gigantic homopolar effect.

forest

Quote from: blueplanet on July 17, 2011, 03:32:03 AM
Remember, the earth itself is a spinning magnet. The way how it spins is not very different from that of a homopolar device. If the law of relativity is correct, we wouldn't be able to measure anything due to this gigantic homopolar effect.

We are able to measure weak telluric currents.I believe it can be used.