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Overunity Machines Forum



Partnered Output Coils - Free Energy

Started by EMJunkie, January 16, 2015, 12:08:38 AM

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0 Members and 159 Guests are viewing this topic.

Magluvin

Wanted to post last night about Jegs vid. I was like, how?  But difference in size/diameter makes sense. At first I was, hey, they at not centered as one was hung a bit higher than the other.

Well cool. Im glad someone pulled it off.  ;)

Mags

Jeg

Quote from: tinman on October 02, 2015, 06:52:45 AM
Jeg is showing something different,and indeed his power draw will go up when the secondary has a load placed on it. But i like what he showed,and i wonder who here knows why the two coils repel when hooked up one way,and yet attract when they are hooked up the other way.
here is a little hint-->note the size and shape of each coil.
Thanks Mag. It was fun for me also.
But, I really have no time to make an other video on this, and there is really not any point to prove. It is just something that Ed. Leedskalnin had described in his magnetic currents book. If you don't have iron core  and still you want to increase the magnetic induction between two coils, then make your secondary out of insulated iron wire. That is the reason for the attraction as it is bigger than the fields opposition itself due to Lenz. Mr Lenz is always in the corner! :D
By the way. It is attracted even when it is an open circuit.

verpies

Quote from: tinman on September 29, 2015, 10:12:04 AM
The tighter the coupling from winding to core to secondary winding,the greater the inductive coupling between the primary and secondary windings. This can be clearly seen in the case when a primary is wound on say 30% of the toroids circumference ,and a secondary is wound on another 30% of the toroids circumference opposite that of the primary.
I was not writing about winding occupation of toroid's circumference but about the diameter of the winding and its distance from the core.

Quote from: tinman on September 29, 2015, 10:12:04 AM
The greater the distance between windings and core,the less the inductive coupling between the primary and secondary coils.
Not in principle.
Of course if both the leakage flux and the flux inside the core pass through the same winding loops, then they subtract from each other, but that is a different issue and in low reluctance cores this effect is minimal.

EMJunkie

...

Lenz's Law has two Actions as part of one Cycle, that of Repulsion, then Attraction. Considered from a Rotation point of View.

Experiment:

1: Take a Large Neo Magnet, an Air Cored Coil of 200 or so turns.
2: Tie the Ends of the Coil together, Dead Short the Coil.
3: Sweep the Neo into the Coil from out side, away from one edge of the Coil - Moving into the Coil you will find a Repulsive Force.
4: Sweep the large Neo out from the Center of the Coil out to the outside of the Coil - You will find an Attraction Force.

Lenz's Law is always opposite to the Change in Flux. It does have an Attractive and Repulsive Component, but will always be in opposition to the Action.

   Chris Sykes
       hyiq.org

poynt99

Quote from: tinman on October 02, 2015, 10:58:04 AM
The E field will be across the plane of the toroid core,but can be almost completely eliminated by a return winding.

What do you mean by "eliminated" and by "return winding"?
question everything, double check the facts, THEN decide your path...

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