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Overunity Machines Forum



Faraday paradox revisited,magnetic field rotation question.

Started by PolaczekCebulaczek, August 05, 2016, 04:09:24 PM

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Magluvin

Just measured a speaker ring magnet and it is non conductive.  Ive soaked speaker magnet assemblies in acetone and the like to separate the magnet from the metal pole parts.

Mags

lumen

I like the electronic electroscope idea but you may want to fix the design a bit so it won't destroy the gate isolation on the first static discharge it may encounter.

With the unprotected gate a static discharge will likely exceed the maximum gate voltage and cause a permanent increase in gate leakage making the device less effective.




lancaIV

https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=65&ND=3&adjacent=true&locale=en_EP&FT=D&date=19910411&CC=DE&NR=3928644A1&KC=A1

The invention relates to a magnetic ring according to the preamble of claim 1.  The predetermined magnetic ring is on the one hand produce a pulsating magnetic field, having a direction of rotation, but on the other hand do not, as an ordinary magnet ring, exhibit too LOW pulse rate. It is known that for this purpose superconducting magnets are used. These have no reactance because their electrical resistance is almost 0 ohms. So far, however, a pulse rate which is equal to or approximately c has not yet been brought about. This object is achieved by the features listed in the patent claim. 1 The advantages attainable with the invention consist in the fact that with this arrangement, a rotating magnetic field can be generated, which polarity the speed of light, or approximately the speed of light changes, the angular velocity can be brought also to this P. An embodiment of the invention is illustrated in the drawing and will be described in more detail below. Show it Fig. 1-6 is a schematic representation of the changing polarity.  The following is the explanation of the invention with reference to the drawings and possibly also by effects.  In order to illustrate an arrangement which allows a light-fast rotation of a magnetic field, the magnetic ring is formed of an even number of superconducting magnets, which are directed to a center of a circle, wherein the polarity alternates continuously. To see the effect it should be noted that one cuts, to obtain a three-dimensional structure, a two-dimensional object on the cut surface. Could we rotate this section the speed of light, we obtain a three-dimensional structure again. You can transfer this process. If we cut that is a four-dimensional structure, one would have to obtain a three-dimensional object. now Rotated this three-dimensional cut fabric speed of light, would obtain a four-dimensional object. As a body can not be accelerated to the speed of light, but this is necessary to achieve a simultaneous coverage of all points in space, we use the three-dimensional rotating magnetic field. 

PolaczekCebulaczek


Magluvin

Quote from: lumen on August 15, 2016, 01:55:19 PM
I like the electronic electroscope idea but you may want to fix the design a bit so it won't destroy the gate isolation on the first static discharge it may encounter.

With the unprotected gate a static discharge will likely exceed the maximum gate voltage and cause a permanent increase in gate leakage making the device less effective.

Yep. sorta like a very basic touch switch.  So lets say if the probe was on top above the spinning magnet and a neg charge triggers the probe, would there be a pos charge under the spinning mag? Like if we see the probe trigger above the magnet, then move the probe under the magnet, will there be an opposite charge to trigger the device off?  There must be a pos charge somewhere to coincide with the neg charge, if there is any charge field at all.

Mags