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Overunity Machines Forum



Kapanadze and other FE discussion

Started by stivep, May 26, 2018, 01:48:55 PM

Previous topic - Next topic

0 Members and 3 Guests are viewing this topic.

onepower

stivep
QuoteCOP>1 is not  a gain but a "phase" in energy conversion..where  sum of phenomena makes balance  of  gain and loss.

You understand this much better than most and there is only one kind of energy which relates to the motion of something on some level.

The conservation of energy is the conservation of motion and something cannot act on nothing or vice versa. Therefore energy can only be transferred or transformed but never created or destroyed.

For example, if we transform H2O, O2 falls and H2 rises by volume relative to the density of air. The phase of matter has changed which also changed the energy balance relative to the medium the elements are immersed in. Tesla proposed this kind of transformation machine in his lecture on the need for increasing human energy.

Regards
AC


forest

Like I said there is possibility to convert static potential into kinetic energy. Tesla ttalked about it in many analogies, also in his article about increasing human energy.

pix

Quote from: forest on November 03, 2021, 06:28:18 PM
Like I said there is possibility to convert static potential into kinetic energy. Tesla ttalked about it in many analogies, also in his article about increasing human energy.


Of course.
Charge capacitor and discharge it through spark gap to certain inductance, forming resonant tank. This is Tesla Magnifier primary LC circuit.
Potential converted to oscillations.
Oscillations are "for free". Tesla was praising oscillations.
Next- accumulate those oscillations in next inductance, forming second resonant tank. Tesla magnifier secondary coil. Helical slow wave oscillator. Now we have large activity, large reactive power.
Discharge that accumulated energy periodically to the load.
Old Master Tesla  :)

stivep


stivep

Quote from: ramset on November 05, 2021, 07:27:25 AM
non ferrous magnetism? copper.
result "obtained" during testing  a kapanadze type device?
" magnetizing " copper is something which is in the "lore" or past FE
Claims ?
Do you have opinion on possible explanation?( for copper.. Or ?

Some opinion expressed:

Unfortunate is that that the article in Popular Mechanics  is not scientific .Just a story for  average Joe Shmoe...
QuoteThe copper itself is not magnetic, but when its approached by magnets, the electrons on the surface of the copper being rotating.
In an effort to resist the magnet's pull, the electrons briefly create their own magnetic field, which slows down the magnet's descent
https://www.popularmechanics.com/science/a15902858/copper-strong-magnets/

The mechanics of this interaction are explained by Faraday's Law of Induction, and Lenz's Law,
If you have a strong enough magnetic field all matter is magnetic. 
But copper is so weakly magnetic that we can't observe it without very, very large magnetic fields. 
So the short answer is "No, copper isn't magnetic." 
This can quickly be tested by trying to pick up a penny with a magnet.
_____________________________________________


copper
Magnetism and electricity are closely related. 
When a magnet moves near copper (or other metals) it sets up electrical eddy currents.
The eddy currents will repel the magnet as it falls down the copper tube. 
This repulsion pushes against the magnet and slows it down.
https://www.youtube.com/watch?v=5WIKKXdxNH8

aluminum
Most matter will exhibit some magnetic attraction when under high enough magnetic fields. 
But under normal circumstances aluminum isn't visibly magnetic.
https://www.youtube.com/watch?v=yk4ACjzDFRY&t=1s

lead
Even though lead is not magnetic it can interact slightly with  magnetic fields. 
By moving a very strong  magnet past a piece lead can actually cause the lead to move.
https://www.youtube.com/watch?v=VEIYXomRdLY

Nickel
Because Nickel (Ni) is ferromagnetic it is used in  making Alnico magnets
(consisting of aluminium, nickel, and cobalt).
https://www.youtube.com/watch?v=kUvm4TFAWSQ

Silver
Silver isn't  magnetic.
If silver isn't magnetic, how do metal detectors find it?
Metal detectors are able to find non-magnetic metals, like  gold or silver, using a principle called the Lenz effect.
Moving the metal detector over a gold coin  will set up a slight electric field in the coin.
The metal detector can sense this field and alert you to the coin.
https://www.youtube.com/watch?v=PQk95NcNa_s

stainless steel
Since it contains iron, a magnetic metal, it would seem that stainless steel would be magnetic.
However, when nickel (Ni) is added to stainless steel the result
is a non-magnetic form of stainless steel (called austenitic stainless steel).
https://www.youtube.com/watch?v=O9DaKP2PhL4

Titanium
Titanium-weakly magnetic..  also exhibits the  Lenz Effect but to a lesser extent that many other metals.
For example, when a magnet  is passed over a metal like silver, copper, aluminum, or brass,
the moving  magnet causes small electrical eddy currents to form in the metal.
The electrical eddy currents have their own  magnetic field which interacts with the moving magnet. 
The result is that the moving magnet causes  the metal to move without touching it. 
With more sensitive equipment the Lenz Effect could be measured in titanium.
https://www.youtube.com/watch?v=1naZTyd361U

Wesley