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Overunity Machines Forum



The Secret To The Self Oscillating Transformer

Started by Just..Sayin.., January 14, 2016, 08:31:21 PM

Previous topic - Next topic

0 Members and 7 Guests are viewing this topic.

sm0ky2

If you think of resonant nodes in terms of octaves, or multiples/divisors of a given frequency.....
we can treat this kind of like the lower-common-denominator in division problems.

We look for a resonant node that is common to all the components. (core, coil, caps)
Essentially:  the lowest common resonant node.
At this frequency, the entire system will be resonant with the SRFs of each component.
a node that hits on a 1/4 wave might be a good place to start.....

I was fixing a shower-rod, slipped and hit my head on the sink. When i came to, that's when i had the idea for the "Flux Capacitor", Which makes Perpetual Motion possible.

scratchrobot

This does it for me... I'm gonna remove my account from this website.


I get it now... if people can belief in God they can also belief in anything like this bullshit  :-[


You people are so stupid! :o


Bye


sm0ky2

When we send electricity (electrons) through a wire, they impact one another, releasing more electrons, that cascade down the length of the conductor.
in a small amount, and at low frequencies, they lose energy due to impacts, and the energy dissipates, in fact we can send a pulse of given electricity
through a wire of length X, where X = the distance where all of the energy has dissipated.

When there are many electrons, at a high enough frequency, a large number of electrons will impinge on higher energy atoms (or molecules), releasing a larger number of electrons. Up to the point of magnetic saturation of the material, where heat losses begin to increase.

But, at the resonant frequency, at energy levels below the saturation level, the atomic or molecular structure of the conductor can sustain the resonant waveform, and allow energy to build up. this increases the likelihood of an electron to leave orbit and travel along the cascade.
Each iteration of the cycle results in further increasing effects of electron flow.

In a Resonant Electron Cascade: the Factor K is defined as the ratio of the number of electrons produced by one cycle to the number in the preceding cycle.
the energy of these electrons ranges from:
the at-rest Ev of the outer shell electrons in the conductor material to the peak voltage of the resonant waveform (in Ev/[length/wavelength]) over period T.

Mathematically, the reaction becomes self-sustaining, and the density at which this occurs is called the "Electron Critical Density" (K=1).
and is different for each conductor.
the conductor itself has its' own features, such as density, shape, purity, etc. that can affect electron flow.
At electron flow levels below critical density(K<1), the resonant waveform requires energy input to be sustained.
At critical density (K=1), the resonant waveform is sustained, but no excess energy can be drawn without disrupting the waveform.
At electron flow levels ~at or above critical density(K>1), the resonant waveform amplifies each cycle,
up to a level that is mathematically e^2, after which the amplification scales back down.

Due to the intensities of the Coulomb Barrier increasing with amplitude of the resonant frequency wave, there is no limit to the amount or duration of energy production in this manner. E = mc^2, it would mean a few Oz of copper could power earth for (almost) ever?


I was fixing a shower-rod, slipped and hit my head on the sink. When i came to, that's when i had the idea for the "Flux Capacitor", Which makes Perpetual Motion possible.


skycollection