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Stan’s Legacy

Alan

131 posts · 35 more in threads this archive does not carry · writing between Mar 2009 and May 2011

An identity on IonizationX as it was harvested, not an account on this site. Nobody here has claimed it, and nothing connects it to a person by name.

WFC VIC

#10 · date not recorded

HV on the water and no bubbles is exactly what we want, only thing which is needed is tuning the HV pulses so the water will resonate mechanically.

Did you use SS-wire, Don?
But what is voltage tickling?
voltage stress on state space without the wave fields 'overlapping' (as seen in 8-1), while switching between the voltage arc and ground state (=set by Q,  voltage arc 'travels' on it)?

the voltage arcs are the colored parts of the waves you've drawn in your latest pic.
Voltage Tickling of State Space under  "Resonant Electrical Stress"

I don't understand

Isn't the 'voltage tickling' causing resonant electrical stress?
or is 'voltage tickling' happening above Q, and RES happens when Q is lowest (but not 0V)?
See 8-2

Stan used AMPS, big time!

#69 · date not recorded

so, can we conclude the force vectors net zero at the center / 0V, acting on the molecules ?

Stan used AMPS, big time!

#65 · date not recorded

aha, you're right I guess. Haven't got much experience with vector calculus, will keep this in my mind.
now 2 equal and opposite charges, tied together, what happens when put into the middle of the fields?
two elephants pulling a rope with equal force?

Stan used AMPS, big time!

#60 · date not recorded

Quote
two elephants pushing strongly head-on against each other may produce a "two-elephant" system of opposing forces (vectors), where the system is stationary. The system is thus a zero resultant vector system, whose motion is represented by a vector zero. The same would be true for two fleas pushing against each other and not moving as a system; the system would be a zero resultant vector system, whose motion is represented by a vector zero.

And here's where the mathematics betrays us, if accepted unQuestioningly. In vector analysis, all vector zeros are identical. Here we are saying that the translatory motions of the flea system and the elephant system are the same. That's true, but there's a whale of a lot of difference in the two systems that must be accounted for physically! If you don't believe that, put yourself in between the two pushing elephants, and see if that's the same as being between the two pushing fleas! You'll certainly notice a lot more stress on you from the elephants than from the fleas.
http://www.cheniere.org/misc/interview1991.htm

Quote
Now in quaternions, that is not the case. Quaternions that interact capture this "local stress of spacetime" and "locally trapped energy of spacetime" in the scalar component, inside it.
now I'm starting to understand

Stan used AMPS, big time!

#51 · date not recorded

E fields vectors are canceled out in the middle, where at the same time the stress is strongest.
?

Stan used AMPS, big time!

#33 · date not recorded

[I have read many times that you tried opposite HV with insulated electrodes.
If you still have this setup, you could try to "extract" electrons or  charge or whatever from between the isolation, maybe a lamp will do, and see what happens.

Alan,

I no longer have that setup toguether. When I tested, I used 2 HV tv coils as my HV source, so I know I was testing with about 50KV.  when I applied the 50KV to 100% insulated plates, I could see the water move up the plates... similar to what you see in the water bridge video on youtube.

I then added non insulated electrodes and applied several pulsing voltages and freq, to see if water would break easier. didn't observe any thing.
I also used some Red Lazers, LEDs... no luck.

But this does not say that it will not work.... just that I could not make it work, maybe I needed to do something else. 
2 HV tv coils, a while ago you said on wfc.org 50 TV which I read as teravolts  :) no doubt that would break some water apart.

The added non insulated electrodes test is interesting, how approximately did you place them?
These were added between to the insulated cells, right?

Stan used AMPS, big time!

#25 · date not recorded

What ever method used, we need to be able to produce Hydrogen efficiently...
I agree, those working on VIC, keep at it, you may uncuver something that many of US missed.
I have read many times that you tried opposite HV with insulated electrodes.
If you still have this setup, you could try to "extract" electrons or  charge or whatever from between the isolation, maybe a lamp will do, and see what happens.

Stan used AMPS, big time!

#24 · date not recorded

No problem, guess we read the same, but  I can't conclude from this amps are being used, only that his 302807 hydrogen generator is fed by the output power of  the system.
Don't know what the output of the hydrogen generator of 302807 looks like, can't find this patent

mikrocontroller code?

#17 · date not recorded

Potential drop (difference) over L with DC when current is stationary: constant current * ohmic resistance.
Don't you agree?

Yes, wait, if only an inductor is connected directly on a 5v dc powersource, there is always 5v difference

illustration:
Pulsed LR circuit with T1 =T2 = tau, left is voltage over R right is voltage over L. Left have the same peak voltages, V/div aren't the same.

mikrocontroller code?

#15 · date not recorded

!Correction:
The voltage as seen by the choke WFC, doh

Yes, only at U0 there is 5v over the choke but ends up with 0v potential difference (5v on both sides), even with a dc pulse.


hyiq: It pulses 12v into a 220:14 transformer, amplifying and rectifying the voltage, no chokes in there.

mikrocontroller code?

#10 · date not recorded

yes correct, kirchoff current law, but current lags over voltage, don't know anymore how this lag correlate to L and C.

mikrocontroller code?

#8 · date not recorded

How have you wound the coils?

try to measure the voltage across the chokes without a cap and see if it varies when you change frequency (don't now if this is valid, but you can try it, need a hv probe). if it does, try to find the highest voltage by adjusting the frequency.
Try the same with the cap.
meyer said Xl > Xc, which means the impedance of the choke is max (no current, max voltage) and the impedance of the watercap is minimal (all current through cap) @ a frequency = no current trough coil and all current through cap (but amps are choked), try to look for these properties.

Just fool around :) you know what to look for, try not to get obsessed with trial and error to get bubbles, that is a step ahead, look for no current, max voltage and step charging by finding out the correct dutycycle (T2 < T1), T2 equals the timeconstant of the choke.

mikrocontroller code?

#6 · date not recorded

try to find the resonant freq without the watercap (max voltage), then play with the dutycycle for voltage stepup effect

mikrocontroller code?

#2 · date not recorded

I'm sure this answers most of your questions regarding pwm in uc's: