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Overunity Machines Forum



Partnered Output Coils - Free Energy

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

Previous topic - Next topic

0 Members and 163 Guests are viewing this topic.

Dave45

Quote from: MarkE on May 07, 2015, 02:14:48 PM
We can only speak of electricity apart from magnetism in the electrostatic case of fixed charge separated by a fixed distance across a vacuum.  In all other cases, charge moves (although it may be so small as to be difficult to measure) and as soon as charge moves we are dealing with electromagnetics.  The electric and magnetic fields are inextricably linked by special relativity.
Agreed

When the charges are brought within a close proximity they neutralize each other.
A capacitor uses a dielectric barrier to separate charges, there is another way to separate charge.
If you use say a wimshurst machine and bring the capacitive spheres close enough you get a discharge that cant be controlled but if you use a barrier then you can control the discharge.


Dave45

Lets say you want to separate 500,000 volts how would you do it?
Its been posted before.

forest

In every commercial transforemr one element is required. IRON.
Do you know any big commercial transformer without iron core ? Do you know any pwoer station generating MW of power without using iron core ?

Dave45

Cmon MH where you at dont pick a fight then leave roflmao

control the discharge make a path through the barrier

On another note and another complete setup what are eddy currents, what heats a core, magnetic flux or eddy currents, where is magnetic flux concentrated in a solenoid.

eddy currents are your friend  ;)


MarkE

Quote from: Dave45 on May 07, 2015, 02:39:07 PM
Agreed

When the charges are brought within a close proximity they neutralize each other.
A capacitor uses a dielectric barrier to separate charges, there is another way to separate charge.
If you use say a wimshurst machine and bring the capacitive spheres close enough you get a discharge that cant be controlled but if you use a barrier then you can control the discharge.
More specifically, it takes work to separate charges, IE generate electric tension, ie generate electric voltage.  A capacitor keeps charges mostly separated.  How well it does it measured by its leakage current versus voltage.

Discharge can always be controlled if the proper resistors are used.  The resistors must withstand the voltage potential without arcing over.  That sets a maximum voltage per unit length that must be below the arc-over voltage of the dielectric medium used, such as dry air.  See high voltage resistors from Caddock.