New video: Edward Mitchel
Started by unknown · · 117 posts · last reply 4 January 2016
-
#1 · date not recorded
Hi folks,
Go have a look at this video of Edward Mitchel:
Best regards
Steve -
#2 · date not recorded
3kv and no bubles!sounds familiar?voltage doing work?yea i saw the work! -
#3 · date not recorded
yeah, I know what you mean, what work?
I used a titanium positive tube with a ss negative tube and reached 3kv of course with no bubbles to speak of....
lurking, KB -
#4 · date not recorded
hmmm, critical audience here.
Edward says in the video that the second vic coil at that setup is not working anymore.
And also that the threshold of that cell is 7KV.
So, not much action at 3kv is reasonable.
I want to see that cell at 7kv.
I can ask Edward to make a video of that, dont you think?
Steve -
#5 ·
Yep, of course, I read my post, ya got a case, yet a herd of us are stuck at just this point... symptoms of a weakening passion
Kb
-
#6 · date not recorded
Escuses,escuses...3kv and no bubles,and at 7kv a little more bubles about 0.3lpm.I dond want to see any video with 7kv,beutiful waveform,fancy software pulser,transformer...and the result 3 bubles,yeey wich canot run a very smal remote control car.And lets say hooks up 10 transformers and produce 5lpm with no amps,5lpm is useless,and then build the gas procesor with his own transformer then search for magical freq. wich makes the oxigen atom unstable and lose electrons...bla bla...and let say you acomplish this,you double the power of 5lpm to 10lpm wich is also uselless...I said a year ago that theese tiny 3inch cells wound produce enough gas no mater how high the voltage...thats why i'm working on the alternator setup..figured how Stan wound his alt but that style didnt work obvius!
Cheers! -
#7 ·
hmmm, critical audience here.
Edward says in the video that the second vic coil at that setup is not working anymore.
And also that the threshold of that cell is 7KV.
So, not much action at 3kv is reasonable.
I want to see that cell at 7kv.
I can ask Edward to make a video of that, dont you think?
Steve
I ask by email.
No anwer yet...
-
#8 · date not recorded
after he adds a secound vic and nothing happens he will say,oh,no,the treshold voltage is 10kv,wait untill y built another,and in the end...crap production...all meyer setups have something in comoun =crap production,people worked for 10years searching magical freq and when they found it, crap production...
stan mentioned 5 galon/hour water disociation from 1 small tube,but in the end production was so low that had to built the gas procesor..lame... -
#9 · date not recorded
I have not seen or heard of any legitimate replication either. None of them have ever offered any insight into what takes place when this resonance is reached. Major noticeable and unexplainable things occur when it happens.
The stuff Stan mentions in the memos are spot on accurate. He would never ever reveal how he cracked the water with voltage. All of the crap he put out was for public consumption and for the thieves who would want to cash in on him.
That stuff is nothing but high efficiency electrolysis. If that is what people seek, then they need to do their switching from the high side of the circuit with an scr at 150v - 200v. 50% duty. If the voltage is pulsed before going thru the scr by a transistor, the current limiting can be done very accurately between the transistor pulse, the scr and the positive choke resonating. You can see on the scope the pulse ending and the scr shutting off.
You better also plan on having an EEC because you will pull out electrons at an almost 8:1 ratio of whats being consumed on the low side. So one amp of consumption on the low side, will result in at least 8amps worth of electrons coming into the positive choke.
While we are at it, we can make a 3-23 transformer with a PLL circuit, that can take those electrons and use them to magnetize a core and create an extra pulse, it will pick up the pulse from the first circuit, Charge and fire between cycles at the frequency of the first circuit. Why would I burn a damn light bulb when I can make an extra pulse!!!. That is so misleading. This is why the secondary is wired backwards on the 3-23. The electrons cluster between the negative choke and the positive side of the secondary that is connected backwards. this is also why the coils are all about the same size. So you can make an extra pulse with it or reroute the electrons thru it while the first circuit is firing. That's a matter of phasing. And may create an imbalance.
If the high side is fast enough, it wont see any current being consumed. The scr is the only thing I have found fast enough. PS, Stan wants you to lock the current across the water before it shuts off. But if you pulse the filtered DC voltage you can shut it off anyways. However you should want to have the positive choke resonance commutate it.
-
#10 ·
I have not seen or heard of any legitimate replication either. None of them have ever offered any insight into what takes place when this resonance is reached. Major noticeable and unexplainable things occur when it happens.
The stuff Stan mentions in the memos are spot on accurate. He would never ever reveal how he cracked the water with voltage. All of the crap he put out was for public consumption and for the thieves who would want to cash in on him.
That stuff is nothing but high efficiency electrolysis. If that is what people seek, then they need to do their switching from the high side of the circuit with an scr at 150v - 200v. 50% duty. If the voltage is pulsed before going thru the scr by a transistor, the current limiting can be done very accurately between the transistor pulse, the scr and the positive choke resonating. You can see on the scope the pulse ending and the scr shutting off.
You better also plan on having an EEC because you will pull out electrons at an almost 8:1 ratio of whats being consumed on the low side. So one amp of consumption on the low side, will result in at least 8amps worth of electrons coming into the positive choke.
While we are at it, we can make a 3-23 transformer with a PLL circuit, that can take those electrons and use them to magnetize a core and create an extra pulse, it will pick up the pulse from the first circuit, Charge and fire between cycles at the frequency of the first circuit. Why would I burn a damn light bulb when I can make an extra pulse!!!. That is so misleading. This is why the secondary is wired backwards on the 3-23. The electrons cluster between the negative choke and the positive side of the secondary that is connected backwards. this is also why the coils are all about the same size. So you can make an extra pulse with it or reroute the electrons thru it while the first circuit is firing. That's a matter of phasing. And may create an imbalance.
If the high side is fast enough, it wont see any current being consumed. The scr is the only thing I have found fast enough. PS, Stan wants you to lock the current across the water before it shuts off. But if you pulse the filtered DC voltage you can shut it off anyways. However you should want to have the positive choke resonance commutate it.
Adys you are right Ed Mitchell is full of shit, period !!
He has nothing, but hey give him money he is doing the scientific method....LOL what a scam....lol..ha ha ha
Neal Ward -
#11 ·
I will add a little more.
I guess people cant figure out that Stan switched the circuit off so fast that the current couldn't cross the water. The key is to make the self inductance of the chokes cut off the scr before the current can cross the water.
You cant use unfiltered DC unless you have the adjustable plate cell, because you cant take the 120hz voltage higher with a narrow gap, only way around that is to keep switching in more tubes. That makes the gap wider.
The other way I came up with is what I describe above. Filtered DC -> Transistor pulsing at cell frequency -> scr -> choke. The scr turns on with your gate pulse shared with the EEC.
Don't waste your time with mosfets they bleed the current across the cell. The method I describe, is failsafe. The SCR will turn off regardless of the choke commutating it. and with the scope you can time it perfect.
-
#12 · date not recorded
Seb:
I've often thought that about mosfets. Can you share your scr circuit for me to replicate? public or private, thanks much again
kb -
#13 ·
The circuit is fairly simple. like Meyers patent circuit. I think the key is the holding current on the scr.
The choke should be able to commutate the scr off.
When I first did it, I used a variac with a bridge an scr and a choke.
When I would turn on the scr, it would bleed the current across the cell and lock in at full current. (then its impossible to shut it off)
The scr would blow or I would kick out the main breaker in the house. I went thru a pile of scr's I got from work.
Then I remembered I had ordered some off the internet, I put one of them in and presto, the damn thing worked, It was so fast the mains couldn't detect any current draw. I even soldered a piece of 37ga wire across a blown fuse and put that in the variac, it never blew.
What I quickly figured out was that I needed a variable plate cell to widen the gap so I could take the voltage up on the variac. But that didn't stop me, I jacked up the volts anyways. It still current limited itself, but the water started heating. (need bigger gap)
The interesting thing was that the tiny scr never even got warm. Quite bizarre I must say. You would never think it would work.
So I then learned that the frequency of the voltage needed to be adjustable for the tiny cell.
I figured that if I smoothed the DC voltage and pulsed it thru a transistor to the scr, I would be able to control the frequency and the commutation of the scr.
You can use a 555 or a 4047 with a opto coupler to pulse the voltage going to the scr . Then run another 555 thru an opto coupler to the scr, when it fires, the gate pulse from it will hold the scr down and let the pulses thru it, The choke will self commutate and keep shutting it off between frequency pulses (your 50% duty cycle frequency pulses) Very simply, you can take the Dave Lawton circuit separate the outputs and run them thru opto couplers.
Now the scr I used was a S4006LS2 from futurlec. I used the 4010 version when I pulsed the voltage. Its a very small scr TO220 case. Don't let size deceive you, because your not really drawing anything but milliamps thru it. Think of the positive choke like its a spring, when the scr closes the Self Inductance field forms around the choke,(its compressed) you want to turn that scr off just as it forms. If it shuts off in time the power supply dosent see a current draw.
If you use an adjustable plate cell, you can figure out the choke sizing and cell sizing really fast. Naturally there is going to be heat where there is water breaking apart, you can remove that with a 3-23 transformer connected to the cell also or try to burn a light bulb. It should pulse itself and run out of phase with the scr circuit, because its secondarys connected backwards. The amplitude at which you pulse the primary on the 3-23 will determine the amplitude of the overall circuit, because the 3-23 secondary is nothing but a variable resistor between the cell.
So, lets add up all the gaps on Meyers 10 tube cells?. That number will be the total gap distance on the single plate variable cell, which means he had a high voltage going to the cells. lets not kid ourselves, we can see the heavy gauge wire connected in series to that setup. Being connected in series also lowers the capacitance of the cells.
Also, if he is breaking all that water apart, where is the EEC circuit?. Its the 3-23. It also unloads the positive choke.
Overall, to run that setup on the dune buggy Circuit One needs to be figured out more precisely. That we do not have. Im guessing that it also ran on a PLL and the frequency of the voltage to the scr was adjusted automatically and power came from an alternator.
I think that the 10 cells can be eliminated to one cell and one EEC. I think Stan didn't want people to see how easy it was being done.
http://share.pdfonline.com/5ae59a0009f44562b8c325f6045f67fb/commutation.htm
See Class (A)........ Add 3-23 transformer in place of (R) .
Water becomes part of the circuit. The electrons get pulled from the water, before the electrons from the circuit can pass thru the water. The resistance of the 3-23 chokes play a very big part in this. 75ohms a piece. Does that ring a bell with Stan mentioning the resistance of water all the time. In the NZ video he even mentions re-routing Electrons around the Cell.
The 3-23 dosent give a pulse until the magnetic field is removed from it, remember its being charged up by Circuit 1. The amplitude on the primary is controlling the magnetic field, that is opposing the current thru the chokes from circuit 1.(simply put) The 3-23 core controls how much the chokes induct..
-
#14 · date not recorded
The circuit is fairly simple. like Meyers patent circuit. I think the key is the holding current on the scr.
The choke should be able to commutate the scr off.
When I first did it, I used a variac with a bridge an scr and a choke.
When I would turn on the scr, it would bleed the current across the cell and lock in at full current. (then its impossible to shut it off)
The scr would blow or I would kick out the main breaker in the house. I went thru a pile of scr's I got from work.
Then I remembered I had ordered some off the internet, I put one of them in and presto, the damn thing worked, It was so fast the mains couldn't detect any current draw. I even soldered a piece of 37ga wire across a blown fuse and put that in the variac, it never blew.
What I quickly figured out was that I needed a variable plate cell to widen the gap so I could take the voltage up on the variac. But that didn't stop me, I jacked up the volts anyways. It still current limited itself, but the water started heating. (need bigger gap)
The interesting thing was that the tiny scr never even got warm. Quite bizarre I must say. You would never think it would work.
So I then learned that the frequency of the voltage needed to be adjustable for the tiny cell.
I figured that if I smoothed the DC voltage and pulsed it thru a transistor to the scr, I would be able to control the frequency and the commutation of the scr.
You can use a 555 or a 4047 with a opto coupler to pulse the voltage going to the scr . Then run another 555 thru an opto coupler to the scr, when it fires, the gate pulse from it will hold the scr down and let the pulses thru it, The choke will self commutate and keep shutting it off between frequency pulses (your 50% duty cycle frequency pulses) Very simply, you can take the Dave Lawton circuit separate the outputs and run them thru opto couplers.
Now the scr I used was a S4006LS2 from futurlec. I used the 4010 version when I pulsed the voltage. Its a very small scr TO220 case. Don't let size deceive you, because your not really drawing anything but milliamps thru it. Think of the positive choke like its a spring, when the scr closes the Self Inductance field forms around the choke,(its compressed) you want to turn that scr off just as it forms. If it shuts off in time the power supply dosent see a current draw.
If you use an adjustable plate cell, you can figure out the choke sizing and cell sizing really fast. Naturally there is going to be heat where there is water breaking apart, you can remove that with a 3-23 transformer connected to the cell also or try to burn a light bulb. It should pulse itself and run out of phase with the scr circuit, because its secondarys connected backwards. The amplitude at which you pulse the primary on the 3-23 will determine the amplitude of the overall circuit, because the 3-23 secondary is nothing but a variable resistor between the cell.
So, lets add up all the gaps on Meyers 10 tube cells?. That number will be the total gap distance on the single plate variable cell, which means he had a high voltage going to the cells. lets not kid ourselves, we can see the heavy gauge wire connected in series to that setup. Being connected in series also lowers the capacitance of the cells.
Also, if he is breaking all that water apart, where is the EEC circuit?. Its the 3-23. It also unloads the positive choke.
Overall, to run that setup on the dune buggy Circuit One needs to be figured out more precisely. That we do not have. Im guessing that it also ran on a PLL and the frequency of the voltage to the scr was adjusted automatically and power came from an alternator.
I think that the 10 cells can be eliminated to one cell and one EEC. I think Stan didn't want people to see how easy it was being done.
http://share.pdfonline.com/5ae59a0009f44562b8c325f6045f67fb/commutation.htm
See Class (A)........ Add 3-23 transformer in place of (R) .
Water becomes part of the circuit. The electrons get pulled from the water, before the electrons from the circuit can pass thru the water. The resistance of the 3-23 chokes play a very big part in this. 75ohms a piece. Does that ring a bell with Stan mentioning the resistance of water all the time. In the NZ video he even mentions re-routing Electrons around the Cell.
The 3-23 dosent give a pulse until the magnetic field is removed from it, remember its being charged up by Circuit 1. The amplitude on the primary is controlling the magnetic field, that is opposing the current thru the chokes from circuit 1.(simply put) The 3-23 core controls how much the chokes induct..
Thank you Hardkrome,
Very well written.
The multi million dollar question is if it brought you something.
Switch the power off when current starts floating was one of my first thoughts, years ago. So i am happy with your explanation.
Thanks also for explaining the SCR setup.
Steve
-
#15 · date not recorded
It hasn't brought me much, because I keep finding out more stuff and keep making more boards. I know what im looking for it to do. Im busy on eliminating the scr and re-creating that circuit #1.
When Stan Meyer resonance is achieved, it is a phenomena. He calls it "pulse voltage frequency" it literally transmits thru stuff . The only way to control it is with the 3-23 by means of resistance. Adjusting your voltage down won't control it either once it starts
Replicating a phenomena is like looking for the needle in the haystack. Its something you cant figure out with textbooks because its not in them. The signal will change similar to what PuharIch mentions.
I have worked hard at this for 7 yrs, I do know that higher powers give the knowledge to do these types of things. They have always given me something when im about to quit. They make me learn it.
-
#16 ·
Hey HardKrome, what is a 3-23 and have you discovered the conditions why the signal changes?
When Stan Meyer resonance is achieved, it is a phenomena. . The only way to control it is with the 3-23 by means of resistance.
The signal will change similar to what PuharIch mentions. -
#17 ·
What I quickly figured out was that I needed a variable plate cell to widen the gap so I could take the voltage up on the variac. But that didn't stop me, I jacked up the volts anyways. It still current limited itself, but the water started heating. (need bigger gap)
The interesting thing was that the tiny scr never even got warm. Quite bizarre I must say. You would never think it would work.
Hi Hard Krome.
What choke and cell you used , and what voltage you reached when water started heating, tell please?
Thank for sharing and ansver.
andy -
#18 ·
Hi Hard Krome.
What choke and cell you used , and what voltage you reached when water started heating, tell please?
Thank for sharing and ansver.
andy
If I told you what I used, then you would make the same mistakes I did wouldn't you?. Make A variable plate cell and use the 8xa circuit posted on this site. Make that thing work right first, When you get it current limiting, then move to the next step.
I figured out the scr 5yrs ago btw. Im working on something better.
We do not know exactly how circuit one was built, its gone. the 8xa is the closest thing to it. It is archaic but it will work along with the variable plate cell to figure out the whole thing.
The water heats because the electrons need removed. You convert their energy by way of resistance, converting that into an electromagnetic field that magnetizes a core, that creates a pulse which goes back into the cell. You do not burn a light bulb.
-
#19 · date not recorded
Hi Hard Krome.
What choke and cell you used , and what voltage you reached when water started heating, tell please?
Thank for sharing and ansver.
andy
If I told you what I used, then you would make the same mistakes I did wouldn't you?. Make A variable plate cell and use the 8xa circuit posted on this site. Make that thing work right first, When you get it current limiting, then move to the next step.
I figured out the scr 5yrs ago btw. Im working on something better.
We do not know exactly how circuit one was built, its gone. the 8xa is the closest thing to it. It is archaic but it will work along with the variable plate cell to figure out the whole thing.
The water heats because the electrons need removed. You convert their energy by way of resistance, converting that into an electromagnetic field that magnetizes a core, that creates a pulse which goes back into the cell. You do not burn a light bulb.
What size of the choke and cell must be to kommutate the scr? I dont have variable plate cell
Please told me what you used. I want do it current limiting.
Thanks
andy
-
#20 · date not recorded
The circuit is fairly simple. like Meyers patent circuit. I think the key is the holding current on the scr.
The choke should be able to commutate the scr off.
When I first did it, I used a variac with a bridge an scr and a choke.
When I would turn on the scr, it would bleed the current across the cell and lock in at full current. (then its impossible to shut it off)
The scr would blow or I would kick out the main breaker in the house. I went thru a pile of scr's I got from work.
Then I remembered I had ordered some off the internet, I put one of them in and presto, the damn thing worked, It was so fast the mains couldn't detect any current draw. I even soldered a piece of 37ga wire across a blown fuse and put that in the variac, it never blew.
What I quickly figured out was that I needed a variable plate cell to widen the gap so I could take the voltage up on the variac. But that didn't stop me, I jacked up the volts anyways. It still current limited itself, but the water started heating. (need bigger gap)
The interesting thing was that the tiny scr never even got warm. Quite bizarre I must say. You would never think it would work.
So I then learned that the frequency of the voltage needed to be adjustable for the tiny cell.
I figured that if I smoothed the DC voltage and pulsed it thru a transistor to the scr, I would be able to control the frequency and the commutation of the scr.
You can use a 555 or a 4047 with a opto coupler to pulse the voltage going to the scr . Then run another 555 thru an opto coupler to the scr, when it fires, the gate pulse from it will hold the scr down and let the pulses thru it, The choke will self commutate and keep shutting it off between frequency pulses (your 50% duty cycle frequency pulses) Very simply, you can take the Dave Lawton circuit separate the outputs and run them thru opto couplers.
Now the scr I used was a S4006LS2 from futurlec. I used the 4010 version when I pulsed the voltage. Its a very small scr TO220 case. Don't let size deceive you, because your not really drawing anything but milliamps thru it. Think of the positive choke like its a spring, when the scr closes the Self Inductance field forms around the choke,(its compressed) you want to turn that scr off just as it forms. If it shuts off in time the power supply dosent see a current draw.
If you use an adjustable plate cell, you can figure out the choke sizing and cell sizing really fast. Naturally there is going to be heat where there is water breaking apart, you can remove that with a 3-23 transformer connected to the cell also or try to burn a light bulb. It should pulse itself and run out of phase with the scr circuit, because its secondarys connected backwards. The amplitude at which you pulse the primary on the 3-23 will determine the amplitude of the overall circuit, because the 3-23 secondary is nothing but a variable resistor between the cell.
So, lets add up all the gaps on Meyers 10 tube cells?. That number will be the total gap distance on the single plate variable cell, which means he had a high voltage going to the cells. lets not kid ourselves, we can see the heavy gauge wire connected in series to that setup. Being connected in series also lowers the capacitance of the cells.
Also, if he is breaking all that water apart, where is the EEC circuit?. Its the 3-23. It also unloads the positive choke.
Overall, to run that setup on the dune buggy Circuit One needs to be figured out more precisely. That we do not have. Im guessing that it also ran on a PLL and the frequency of the voltage to the scr was adjusted automatically and power came from an alternator.
I think that the 10 cells can be eliminated to one cell and one EEC. I think Stan didn't want people to see how easy it was being done.
http://share.pdfonline.com/5ae59a0009f44562b8c325f6045f67fb/commutation.htm
See Class (A)........ Add 3-23 transformer in place of (R) .
Water becomes part of the circuit. The electrons get pulled from the water, before the electrons from the circuit can pass thru the water. The resistance of the 3-23 chokes play a very big part in this. 75ohms a piece. Does that ring a bell with Stan mentioning the resistance of water all the time. In the NZ video he even mentions re-routing Electrons around the Cell.
The 3-23 dosent give a pulse until the magnetic field is removed from it, remember its being charged up by Circuit 1. The amplitude on the primary is controlling the magnetic field, that is opposing the current thru the chokes from circuit 1.(simply put) The 3-23 core controls how much the chokes induct..
Hi HardKromo,
I am interested in the SCR schematic that you use.
Do you want to share this?
Steve -
#21 ·
Im working on putting something together. Here it is so far, Its thrown together from various circuits. But this is the basic idea.
There are lots of variables to play with, you can try a 555 to pulse the voltage, but you cant go over 70% duty without drawing current thru the low side.(maybe I will change that) You can use the 8xa circuit for a reference. or even modify it.
On my circuit, I will add another scr and invert the 555 signal to it. That way you can run the EEC.
Im thinking of using a p channel mosfet to pulse the voltage. I used a 200v darlington .
Please don't waste your time making this unless you have a variable plate cell. If you don't have one make one. or else You will hit a voltage limit and just turn the cell into a water heater. (or use 24" tube cells like Meyer did)
Electron removal. I think this is the best and second best way to do it. I used a glass sealed heating element. 12v 25w was all I had laying around. It got hot, and that's what you want, it did keep the water cool.
http://en.wikipedia.org/wiki/Hot_cathode
scr.pdf
-
#22 · date not recorded
Hi members,
I received a reply on my email request of Edward Mitchel.
Please read for your selfs.
I asked him if he could provide me or us, with a video with the 2 VIC transformers in full working condition.
That way he can prove his words he is saying in his video.
I personally would love to see lots of gas coming out of his two HV coils.
If thats the case, Edward might be on to something.
Till then, we have to wait..
Anyway, its always nice to read that everybody in the HHO business is still coming back to read on this beautifull forum
. They all do.
Steve
Hi Steve,
Looks like the transformer will be repaired soon so TGS is moving
right along now. Do you have any questions about the theory given in
the video and are to giving some of what was talked about a try?
I read the thread where the interview video was posted and can see
that the thread has turned away from the content of the video. It
looks like you have two or more people working for the oil companies
best interest in your forum. Now that the science part of this
technology is out of the bag these types of people have been following
the video with a known negative ad campaign designed to deter people
from ever giving the science a try and it seems to be working despite
them seeing high voltages being applied to a water fuel capacitor for
the very first time ever in a documentable way.
TGS will be pushing forwards alone if it must as the video of the
science behind this technology is out now and it will be up to the
individual to find it within themselves to give the science that was
freely given in the video a try. You know the old saying, "You can
take a horse to water but you can't make it drink."
As far as our past goes I am the one you know as h2opower. Now I have
a company of my own that should be putting this technology to market
sometime in 2014. It took me a while to get at the science behind the
patents but as you can see I kept my promise and make a video giving
the science behind the technology away, while at the same time
retaining all of my designs, artwork, and creativity for the company.
A promise is a promise and as you can see I fulfilled this promise I
made so long ago while on your forum. I say this so that you will see
and know I am a man of my word.
Take care,
Edward Mitchell
CEO and Owner
True Green Solutions
-
#23 · date not recorded
Eds a funny guy,
As we all know he is applying alternating voltage to his cell which = alternating current... The high voltage he gets is from purified water.. A bunch of cells in series you get increased resistance and you get decreased capacitance.. allowing these types of voltage difference to occur across a series type load.. In his set up you can go ahead and divide the max voltage by the number of cells and that will be the total voltage to each cell.. so if he has +2kv across 10 cells he actually has 200 volts per cell..
We all know AC voltage will have another sort of loss due to its nature of rotating the molecules... so a lot more power will be going to heating them during the depolarizing and reverse polarizing process involved with AC power.. Same type of losses that occur in magnetic cores.. Ed would need +20kv to even begin reaching what Stan labeled as the threshold for molecule elongation.. this is whats needed for a series of 10 cells to each have 2kv...
Just my viewpoints on this situation..
-
#24 ·
you know what stan didn't broken the molecule the way he describes..
he didn't created the ionization.. it just happened
in my understanding stan polarized the molecule, this summing with the conditions of the unipolar pulses turns off the covalent bound.
i can't say anything over because i dint finished it... but i would not lose my time into others theories... look at it your own theories! probably will go farther! -
#25 ·
Hi
Again the question. How did Meyer use HV to break the molecules of water?
Maybe we also need P680?
Shine some lasers in the waterbath?