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Uncovering the Missing Secrets of Magnetism. 92 pages. Free new book

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  • sadang
    replied
    Hi Ken,

    Nice images! I understand very well what you try to explain here! Now I think I'm acustomed with the meaning of the words you use. On all these images would be great to draw the boundary of the physical magnet, in this way what your explanation would be a bit more clear for newbies.

    What you drew there is indeed the centripetal convergent magnetism, but it is only a projection at 90 degrees on the ferrofluid window of the true centripetal vortex, which has its place on both ends of the magnet. The outher bright rim is the centrifugal divergent magnetism, and the inner darker zone is the centripetal convergent magnetism. The light doesn't pass the bright rim of the centrifugal divergent magnetism because the ether speed is max at the cone on one part, and on the other part the tiny ferrofluid particles are very tight joined due to the max density of the dielectric (of course the max speed at the surface of the magnet). Is this right?

    SaDAng
    Last edited by sadang; 08-23-2014, 06:46 PM.

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  • TheoriaApophasis
    replied
    Originally posted by sadang View Post
    ...

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  • TheoriaApophasis
    replied
    Originally posted by boguslaw View Post

    The geometry would have to be PERFECT, but surrounding it would NOT work.


    the universe's MOST diamagnetic element, bismuth is ATTRACTED to a powerful magnet at the dielectric inertial plane AND at the centripetal point.

    Feeling this using a neo and one of my cast Bismuth disks is VERY apparent.

    you can feel the "attraction" (dielectric voidance) between the bismuth and that part of the "magnet".


    Bismuth only pushes away centrifugal edge-velocity magnetism.


    also casting bismuth like convex surfaces is ideal for stable repulsion of the centrifugal magnetism, making it a more stable model to bump about etc

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  • boguslaw
    replied
    Originally posted by sadang View Post
    Is a toy showing a levitating neo magnet between two bismuth diamagnetic disks. Ken melted a piece of pure bismuth to create some disks, here use two of them togheter with another magnet on the top to create the levitation of the small neo magnet in between the bismuth disks. He also managed to programm the bismuth disks to increase their effect.
    Remember this ? :https://en.wikipedia.org/wiki/M%C3%BCnchhausen_trilemma

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  • sadang
    replied
    Originally posted by ldrancer View Post
    why do you put copyright on it when their aint nothing there. we dont know what it is.
    Is a toy showing a levitating neo magnet between two bismuth diamagnetic disks. Ken melted a piece of pure bismuth to create some disks, here use two of them togheter with another magnet on the top to create the levitation of the small neo magnet in between the bismuth disks. He also managed to programm the bismuth disks to increase their effect.

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  • ldrancer
    replied
    why do you put copyright on it when their aint nothing there. we dont know what it is.

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  • TheoriaApophasis
    replied
    Originally posted by machinealive View Post
    Hi TheoriaApophasis

    Machinealive


    I built a crude (yes yes, this is a CRUDE prototype) prototype for a friend to build and sell for himself (hes got 2 kids).


    I just needed all the angles right with this crude prototype, then it can be painted and a proper BASE be made for it, and change the screw lengths a bit.



    Anyway, its finished, now he has the angles etc, he can build them himself and make it look very nice, easily.



    My programmed bismuth will allow for, what it appears from 3 test lifter NEOS, an average of 10mm GREATER separation than the one shown here using standing bismuth casts.


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  • TheoriaApophasis
    replied
    Lets see anyone explain this one




    Yes, ONE MAGNET, and a bismuth disk, more and more and more and more proof of inverse spin.



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  • TheoriaApophasis
    replied
    Originally posted by sadang View Post
    Due to their helical dynamics and specific kind of interaction, and also because it will allways follow the lowest pressure path! From divergent centrifugal magnetism (highest ether pressure state) to convergent centripetal dielectric plane (lowest ether pressure state). Faraday, Maxwell, others and more recently Lyne have right in their assumptions.

    Just my opinion...


    there are many reasons, .... Reason one being that no line of magnetic divergence can terminate in space. (said by many, including Dollard and many others).


    Space is never, can never, never could be a terminus for any Ether modality.


    That alone says a lot about the space we reify from birth to death.


    Many other reasons, .....Because even divergence must discharge its own divergence after passing the dielectric boundary of the physical magnet.

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  • sadang
    replied
    WHY must divergent centrifugal magnetism reciprocate and return centripetally and convergently into the center of the "other pole"?
    Why should not magnetism, like particle radiation and Transverse Di-electromagnetism (what is incorrectly deemed EM, / light etc) just "go out". Why return at all?
    Due to their helical dynamics and specific kind of interaction, and also because it will allways follow the lowest pressure path! From divergent centrifugal magnetism (highest ether pressure state) to convergent centripetal dielectric plane (lowest ether pressure state). Faraday, Maxwell, others and more recently Lyne have right in their assumptions.

    Just my opinion...

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  • TheoriaApophasis
    replied
    Originally posted by Dog-One View Post
    Thanks much.

    I was replicating this one tonight


    using light to manipulate pyrolytic graphite over magnets

    however their understanding of HOW or WHY it works is dead wrong.



    it literally causes the pyrolytic graphite to "shoot" magnetism out the other side, which impels its motion TOWARDS the light and away from its own magnetic ejecta.

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  • TheoriaApophasis
    replied
    Originally posted by Dog-One View Post
    Ken, can you start the recording focusing on the heat dissipation and kill the CRT. I'd like to see verification the magnet is actually absorbing and re-radiating the dielectricity. If I'm correct, the hot spot should extinguish fairly quick after shutting off the CRT, but leave just enough residual to notice it was there and where the source was coming from.

    Thanks much.


    GOOD IDEA, I will do that tonight


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  • Dog-One
    replied
    Kill the CRT

    Ken, can you start the recording focusing on the heat dissipation and kill the CRT. I'd like to see verification the magnet is actually absorbing and re-radiating the dielectricity. If I'm correct, the hot spot should extinguish fairly quick after shutting off the CRT, but leave just enough residual to notice it was there and where the source was coming from.

    Thanks much.

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  • TheoriaApophasis
    replied
    Well, nobody has EVER seen a magnet doing this before


    2 part video series........



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  • TheoriaApophasis
    replied
    FLIR,


    showing more light being 'sucked' in along the dielectric inertial plane


    more light, more heat




    I made these pics tonight







    Leave a comment:

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