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Overunity Machines Forum



Tubes?

Started by Super God, July 18, 2007, 06:46:18 PM

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0 Members and 9 Guests are viewing this topic.

turbo

a magnetic field IS a vortex, when you start to tap it, the "tapping mechanism" starts to synchronize with the already present ultra high speed rotating magnetic vortex and it locks on it.
Just like a windmill starts to rotate due to the flow of the wind, or like the paddlewheel in the river starts to turn because of the water flow.

it is in howard johnsons book "the secret world of magnets"

M.

Edit:
i can almost guess next question ,if the vortex is moving ultra fast, why do we not get a powerfull induction into a coil?

Here's why: http://www.youtube.com/watch?v=CUdKer-yFtk

Same reason the car does not move, the tyers are moving too fast to couple.

Bob Boyce

@Mannix

This is in reference to your comment on shielding. There are 2 primary resonances in a simple coil, the primary transverse resonance, and the primary longitudinal resonance. A faraday cage will shield energy at the primary transverse resonance, while the primary longitudinal resonance energy will pass right through that faraday cage as if it were not even there. That longitudinal resonance will be picked up by an identical coil on the outside of the faraday cage.

Bob

z_p_e

Bob,

Are the primary transverse and longitudinal resonances you mention, of the same frequency, or is each different in a given coil?

Also, are longitudinal waves synonymous with scalar waves? If not, could you please explain the difference?

Thanks,
Darren

EMdevices

Guys,

Magnetic field shielding effectiveness of a Faraday cage has more to do with the frequency then anything else.

Low fluctuating magnetic fields go right through a thin aluminum faraday cage.  Some people might think they're mysterious fields, but current EM theory shows very nicely why that is. 

I once talked with one of my professors about this and I let him know about some of these so called "scalar" transmitters I found posted on the internet, and he just chuckled to himself and directed me to some of the IEEE papers that have been writen on this subject.    So yes you can transmit through solid conductive walls !!!

EM


z_p_e

EM,

For magnetic fields, that makes sense.

However, it is my understanding that longitudinal waves or scalar waves have no magnetic component, so we would be dealing with a different animal.