Added: 3 months ago
From: ScorchGD
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  • I have read Ed's books. Long ago. But working on other experiments such as a desktop replication of the Muller Motor Dynamo or the April Wind version of a Rodin Coil. I did the replication of the perpetual motion holder because it was quick, and easy, and a really good demonstration tool that I can take to other places and show to friends.

  • Hi there! I'm not great Leedskalnin but when I stumbled upon the effect playing around with relay I have concluded that current makes the domains oriented making chains throughout looped core. When you turn off current they remain in their configuration as they are closed. When you rip the bar off the core the chains are broken and domains change position back. This makes Mfield change and the light flashes. Interesting anyway.)

  • Now....if we could utilize this principle to produce free ummmmm...."work".....then we'd reallyt have something useful

  • Just magnetic remanence !

    Look it up on Wikipedia.

  • @overunitydotcom While true there is a slight magnetic remanence (residual magnetism) in the ferrous U and ferrous Bar, the actual STRONG, load carrying, magnetism instantly disappears as soon as the load bar is removed, causing a collapse of the field and a flash of the LED. And strength does not return again until the holder is re-energized by the battery again. This is not a magnetic remanance that requires the battery to restart it in order to carry a load again.

  • i am just guessing here but if i am right,it means that electromagnetic energy can align mass and speed to the E=MC2 formula what do you think?...

  • try removing the close loop iron very slowlly and check the change in the leds brightness. i bet that as fast you pull the bar from the u shape iron core you will get more energy. meaning i am not mistaken here.. this is e=mc2 i bet the speed and pulling the bar with the magnetic energy allign to the e=mc2

  • @vinshbrief It does appear to be possible to slow down the collapse of the field by carefully "rolling" the bar off the magnet as opposed to just pulling it off. If I carefully, and slowly, remove the bar by tilting it to one side; there is no light from the LED. As if the energy slowly "leaks" out as opposed to a sudden release or sudden collapse of the magnetic field or magnetic "current" as Ed calls it.

  • @ScorchGD

    if the speed of poulling the bar effects on the led it means that i'm right - the speed is part of the e=mc2 . the mass that created by the resistance of the magnetic field on the iron bar ,+ the speed you pull the bar align to the mc2 formula by the electromagnetic field. can it be that the electromagnetic field has a property of aligning speed and mass into the e=mc2 formula?

  • basiclly this is what i am thinking : this device can reverse the energy been produced to create a magnet , back to electricity. the coils help to produce the electricity because they have a potetial amps that can produce. the iron close loop keeping the magnetic energy inside the iron loop untill you open the iron circuit. then e=mc2 been applied by pulling the iron with magnetic resistance,with some speed it allign with the mc2 formula

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  • Very well done. Nice layout. I have replicated this as well. Many have. No they do not teach this in school. They do not teach anything to provide freedom of the people. Enslavement knowledge also called science based on theories, that they do! . Please, disregard the sarcasm!

  • @PoirierMike

    :) if they will teach freedom then they will not control us:) but they can not teach one thing - even golden bird in the gold cage having egs - life is reproductive, nothing can be under the long control from punks Sir:) Nice to meet you!

  • Hi dear Scorch. Are you able to show in other video charged U shape with other additional iron part interacting? let say, take 1 iron nail put on to the top of flat plate and show U shape magent force at charged position. Also it is interesting to see all this process with compass at both stages,Please my friend:)

    Truy

    Rob

  • @MrArrow1961 No point to make another video. Other than the ends of the horseshoe, that hold the bar, or the residual magnetism that is there during all configurations, (On or Off) and all parts of the horseshoe, there does not appear to be any additional magnetic field. Another bar on top of the first bar is NOT attracted. Its ALL flowing within the closed loop; like a toroid. Additional experiments; see youtube user: codygillespie

  • @ScorchGD I'm assuming you have read all of Leedskalnin's magnetic writings. Any chance you could conduct some of the other experiments Ed wrote about ? Your display of Ed's perpetual motion holder was perfect. Thank you very much.

  • i guess that the close loop + the coils makes the electromagnet behave like a capacitor after charging it with the battery so like a capacitor it wait's untill you will use the energy stored in the coils..untill you uses the energy it remains electromagnet.. no magic here...

  • @vinshbrief dear Sir, what capasitor is here, tell me please.I can not see any capasitor in circuit. may be you want to say that this is magnetic energy loop after solid iron charing by electomagnetic spiral force by coils?

    BTW coils are open, so where is the capasitor? Iron is capasitor of what?

  • @vinshbrief The coils are not in play or storing energy after power disconnected. They are a completely open circuit. (watch knife switch) One could cut the coils off and the load bar will remain attracted until removed. Can also make the same effect with just one coil but is stronger with two. For more details see: leedskalninDOTcom.

  • @vinshbrief disconected , open coils with inner cupper electrical resistance stored energy of air or what? I can not understabd what you mean, sorry.Coils has induction, resistance, nothing else, they can not be charged or run as cpacitors, they are open after disconecting power source.Maximum, they have got a bit warm, yes they have heat energy collected from power source.but even becoming cool there is magnet loop holding top plate. So, from where we have that magnet force on simple iron?

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