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Overunity Machines Forum



Delayed Lenz or not?... post your explaination!

Started by gotoluc, December 16, 2014, 07:22:08 PM

Previous topic - Next topic

0 Members and 2 Guests are viewing this topic.

synchro1

@Milehigh,

I'm telling you right now Bub, you have no right to lecture anyone about "Lenz Delay Effect" without fully reviewing JLN'S profesional experiments. You are really blindly ignorant about the subject! You're shameless about your stupidity. I'm so sick and tired of you I feel like defecating on your face!

Cap-Z-ro

He's just a simple troll doing a days work, syncro.

Anybody know whats scale for a troll ?

Regards...


MarkE

Anyone who believes in the idea of free energy from a "Lenz delay" should study the graphic below.

Lenz' Law sets the orientation of induced voltage resulting from Faraday induction.
If a load is resistive, induced current is in phase with induced voltage and the resulting magnetic field at all times acts directly against the inducing current.  This is a unity power factor.
If a load is purely reactive, then energy is stored in the load and later returned to the source, and no net energy conveys to the load.  This is a zero power factor.
If a load is resonant, then the inductive reactance and capacitive reactance magnitudes are equal.  The load appears resistive.  In the case of a series L-C, the resistance appears low.  In the case of a parallel L-C, the resistance appears very large.
If a load is partially resistive and partially reactive, then more energy transfers to the load each cycle than is returned.  This is a power factor greater than zero but less than one.

Can making a load reactive unload a driver?  Of course it can:  Less work is done on the load.  In the extreme case the load effectively disappears, along with any useful work that could have been done by transferring net energy to the load. 

Can making a load reactive actually drive the source?  Not net across one or more complete cycles.  A reactive load can only return less energy in any given cycle than supplied by the source.

Can resonance help?  No, at resonance, the load appears resistive as either an effective short circuit across the source, or an open circuit.




synchro1

@MarkE,

Where's the ferrite core in your schemaic? Gotoluc has a ferrite core exrending away from his ouput coil that interfaces with the spinning rotor magnet. The "Lenz Delay Effect" Luc demonstrates is a direct consequene of this core extensión..All that crap you posted is completely irrelevent!

MarkE

Quote from: synchro1 on December 18, 2014, 04:10:37 PM
@MarkE,

Where's the ferrite core in your schemaic?
Synchro1 you can use any type of core that you like in the transformer.