Body
Please read the details regarding this fantastic electrostatic generator
and answer my question as to where the electrons are coming from. In
high school science, we were told that influence machines or
electrostatic generators sheared electrons from the air dielectric
surrounding the device. Sounds reasonable! As I studied the various
Influence machine designs and built many of them, I was fascinated with
Felici and his machines because they posed a problem with the accepted
idea of electron source. Since the Felici machine runs in a sealed
environment of .999 pure hydrogen gas at an elevated pressure of 25
atmospheres (350 PSI) and considering the fact that hydrogen atom has
one electron and one proton, it follows to ask the question as to where
the electrons are coming from to yield the HARD electrical output at
such high voltages and unusual currents for an influence machine.
Cylinder size ( mm) 140 140 140 240 240 300 300 Available
approx. power 300 W 400 W 385 W 2 kW 2 kW 2.5 kW 2.5 kW Number
of poles 2 4 6 4 8 2 4 Max. voltage ( kV) 300 160 110 250
140 600 300 Max. current ( mA)
1
2.5
3.5
7
14
4
8
Hal Puthoff published a paper for the Scientific Journals Spontaneaus
Hydrogen from the space background. When you steal electrons from a
hydrogen gas you are left with a proton rich field which sucks in
electrons from the space background to reconstitute the hydrogen atoms.
So in effect you have a 2.5KW electrostatic generator doing exactly what
you have been looking for. I'll take 300KVDC at 8 mA (2.5KW) hard DC
power any day! Thoughts please! Norm
On 4/26/2018 8:09 AM, [email protected] [EVGRAY] wrote:
>
> Do you think cursing helps. laughing giggle lying on the floor laughing.
>
> I now have enough fat capacitors with 10μF each to withstand the 3.15
> KV and M10 thread connections. I will test this now and drive the 3
> phase transformer in the highest impedance around the 1500 volt peak
> and couple with small coupling capacitors to the diode plug, I would
> like to minimize the losses necessarily. With high impedance, I
> increase the Q in series resonance.
>
> The optimal capacitor, your capacitors that we have seen in pictures
> were monstrous compared to the modern ones we use, I assume that the
> dielectric has become thinner, maybe a disadvantage for our work!?!
>
> regards
>
> Sven
>
>