Herman Anderson
Started by unknown · · 85 posts · last reply 15 March 2024
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#26 · date not recorded
42
The contribution to the neutron energy spectrum due to absorption of a photon of given energy by any one of these processes will be proportional to the product of the partial cross section for that process and the number of photons at that particular energy. The energy of the released neutron is obtained from the kinematics of the process and the energy of the final state. The total spectrum is obtained by summing over the possible decay modes and integrating over the photon energy. For a compound the sum is also over the constituent elements with a weighting proportional to the relative abundances.
RESULTS
Neutron energy spectra in carbon, nitrogen and oxygen were calculated for various bremsstrahlung end-point energies and, from these, tissue spectra were calculated using the tissue equivalent molecular formula C5H._01ftN. As an example of the results, the photoneutron spectrum from tissue for a photon end-point energy of 28 MeV is shown in figure 1, together with the contributions from the constituent elements. The neutron spectra from tissue over the energy range from 12-30 MeV are summarised in table 1, where average neutron energies and kerma conversion factors are displayed.
Full details of this work can be found in the published report (Allen and Chaudhri 1982).
REFERENCES
1. Allen P D, and Chaudhri M A, (1982) Phys. Med. Biol. 27:553.
2. berman B L, Fultz F C, Caldwell J T, Kelly M A, and Dietrich S S, (1970) Phys. Rev. C2:2318.
3. Caldwell J T, Bramblett R L, Berman B L, Harvey R R, and Fultz S C, (1965) Phys. Rev. Lett. 15:976.
4. Caswell R S, Coyne J J, and Randolph M L, (1980) Rad. Res. 83:217.
5. Fultz S C, Caldwell J T, Berman B L, Bramblett R L, and Harvey R R, (1966) Phys. Rev. 143:790.
6. Schiff L I, (1951) Phys. Rev. 83:252. -
#27 · date not recorded
X-rays are basically produced by high-energy electrons bombarding a target, especially targets that have a high proton number (Z). When bombarding electrons penetrate into the target, some electrons travel close to the nucleus due to the attraction of its positive charge and are subsequently influenced by its electric field. The course of these electrons would be deflected, and a portion or all of their kinetic energy would be lost. The principle of the conservation of energy states that in producing the X-ray photon, the electron has lost some of its kinetic energy (KE):
final KE of electron = initial KE of electron - energy of X-ray photon
The 'lost' energy is emitted as X-ray photons, specifically bremsstrahlung radiation (bremsstrahlung is German for 'braking radiation'). Bremsstrahlung can have any energy ranging from zero to the maximum KE of the bombarding electrons (i.e., 0 to Emax), depending on how much the electrons are influenced by the electric field, therefore forming a continuous spectrum. The 'peak' of the spectrum typically occurs at approximately one-third of Emax so for a bremsstrahlung spectra with an Emax value of say 120 keV, the peak of the spectrum would be at approximately 40 keV.
The intensity of bremsstrahlung radiation is proportional to the square of the atomic number of the target (Z), the number of unit charges of the bombarding particle (z) and inversely with the mass of the bombarding particle (m): Z² z / m. It follows that light particles such as electrons and positrons bombarding targets of high atomic number are more efficient producers of bremsstrahlung radiation than heavier particles such as alpha particles or neutrons (which can also cause X-rays to be produced through bremsstrahlung, though it's much more unlikely than with electrons). -
#28 · date not recorded
Ok, I think I am getting a complete picture here.
Herman the ion king was real. For real, when he said that he just wanted to prove that water could work as a fuel.
The 70kv spark in the hole on the outside of his electrode had to be as thin as possible, so that the soft x rays could enter the cell and in that way to accelerate electrons and hydrogen ions and to add photons to kick neutrons off the oxygen , so the accelerated hydrogen ions could merge with the neutrons. All done in a pressurised cell.
Nickel plated iron electrodes.
70kv
Certain plate distance
Koh
20 amps 12volts
Etc
Bingo....
The last theory is done.
Now to figure out how to make it work in real life. -
#29 ·
Horvath also talk about xrays right... for xrays to happen there also must be vaccum ... i dont know how this neutron stuf is ... what i think really meyer was doing was breaking apart some hydrogen atoms tranforming mass into energy.. he usually say that the oxygen missing electrons wouldnt allow for water to reform and so the reaction keep going until another structure is formed... i think he mean that thermoexplosive energy will result probably because of the decay of few atoms into particles with high energy in a container pressurized such as ice
this is indeed a nice idea to investigate fusion or whatever it maybe happening..
so maybe you just need an xray tube than.. their target usualy are made of tungsten for being heat resistant,,,
Steve do you know how do you make a 100ev xray?
http://www.svpvril.com/WRadis.htmlwater-03-00235.pdf
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#30 ·
Steve posted and shared the most important document maybe on the first or second page of my replication section...a study done at Stanford that perfectly explains what Herman was doin in part of his radiolysis.
Herman says if you go higher than 70kV 10 mA in his apparatus it could create another isotope (tritium) ...something we do not want to do. -
#31 · date not recorded
Hydrogen will appear at the cathode (the negative electrode, where electrons enter the water), and oxygen will appear at the anode (the positive electrode)
Herman spoke of the facts that the hydrogen will be release on the ANODE side and moves to the Kathode side.
As far as i understand electrolysis, on the kathode side, two hydrogen ions will merge into hydrogen molecule.
I also learned that ions of hydrogen are so tiny, that they move easy thru metal. Thats what for example a Joe cell is doing.
Now the question. What do ions do with that creapy hole in the anode?
Kevin, i assume that the electrode with that famous hidden chamber was the anode?attachment_14635 DSC02019.JPG
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#32 ·
Best guess is yes being Herman said "that's where we split it at "
I like the other drawing with the air holes better tho...that Stanford study that you posted is by far the most revielling study I have ever seen....I have tried several times short of calling Mr.Ricketts at MTSU to get a full length unedited copy of that that interview without success....I emailed him again last week with no reply yet.
You will notice at the end of this link he mentions using a hydrogen enrichment add on way back in 08....it would be interesting to at least learn the details of the generator he and his students used.Mr.Ricketts is the man that interviewed Herman on the portion we bought from James....I still get upset that after all these years we still haven't seen that whole interview,just like with Stans tapes we only get bits and pieces of...I really don't even like thinking about that...it aggravates me that people that have all of those tapes are so damn scared if the rest of us had a look at it we might get it finished first.....
All we can do is take what information we have ,let it take us to things not mentioned and figure it out ourselves.
There is nothing or nobody on these forums can do more or better than the universities and corporations can and have already done in terms of hydrogen....this is all suppose to be for fun and sharing,something to do rather than bar hop and nothing or what ever.....why is that we still haven't seen but bits and pieces of certain tapes and interviews is beyond me!!!!!!
http://cem.mtsu.edu/k-12/presenter/dr-cliff-ricketts
I just watched the webcast Mr.Rickets had with some students explaining his coast to coast trip....wasn't exactly what I was expecting ...the electrolysis unit appeared to just be a single pipe cell and he keeps calling the anode negative and the cathode positive so idnt know if he just misspoke or tries to fuel an argument but either way he hasn't answered none of my emails. -
#33 · date not recorded
What makes me think why James and who ever else worked with Hermans original electrodes failed to keep it going,is the thin layer left had worn out and burnt thru...this is how it looked on the inside of one electrode.I tried to draw the jagged edges as it appeared....
I believe the Stanford study is the most important discovery made in the realms of our type of research.I think if we are going to give this an honest go we must perform that expieriment.
My inductor wire wire will be here in the morning and im most excited about that atm.
Herman may have needed the specific 70kV for a specific thickness of the electrode in our little chamber.
I don't have a trifield meter or what ever we will need to measure the milli-Roetgen/hour radiation.....
We know Herman used at least 2 applications of radiation.
We know Herman used "2/ 35kV coils wired in series for 70kV."
We know Herman used series resonance "it amplify's the current"
We know Herman used a magnetic field.
We know Herman used on demand ozonated water.
We know Herman used KOH with a pH of 12.
We know Herman used a standing pipe to circulate the water.
We know Herman used fog to slow the burn rate.
Have you seen these equations yet?
http://www.accelinstruments.com/Applications/WaveformAmp/Magnetic-Field-Generator.html
lf in addition to a steady magnetic field, varying fields with frequency components in the neighborhood of the Larmor precession frequency are present, the nuclear magnetic moment may be caused to change its orientation by a resonance effect. lf the frequency of an applied oscillating magnetic field, which is oriented at right angles to the direction of the static magnetic field, matches that corresponding to the difference in energy between adjacent orientations according to the rule, Plancks constant times the frequency equals the energy jump, then the transition will occur. lf the match is not close, transitions will be very unlikely.
For example, when a magnetic field of strength 1,826 gauss is applied to a sample of water, the protons which form the hydrogen l nuclei have only two possible orientations with respect to the field. The parallel orientation has the least Steady magnetic field strength Plancks constant For protons this gives 4,250 X magnetic field strength in gauss, or to take the example above 4,250Xl,826=7.76 megacycles per second.At this field strength it takes 5x10(-20) ergs to excite the antiparallel state. Since the magnetic field at each proton is not exactly the same, the resonance will occur in a narrow band of frequencies centered on 7.76 megacycles. The resonance line width, which is the measure of this band width, depends on the inhomogeneities in the applied field, as well as those arising from the internal structure ofthe material.
Except when they are under the influence of a magnetic field the magnetic moments of the protons of hydrogen are in random orientation for before the field is applied, the parallel and antiparallel positions of the nuclei are no different in energy and equally likely to occur. Upon application of the field, the protons snap into line with substantially half parallel and the remainder antiparallel, but this is not a stable condition in the field, because with the field applied, the antiparallel state of the proton has a higher energy, and hence tends to emit this energy difference and drop to the lower parallel state. This tendency is counteracted by thermal motion, which gives rise to field components at the resonant frequency, and hence to transitions up and down between the two states. As a result, an equilibrium is established at any given temperature where there is a slight excess occupation of parallel states compared with antiparallel states. This equilibrium condition is not, however, attained the instant the magnetic field is switched on, but rather'is approached according to a characteristic time known as the thermal relaxation time.
The hydrogen nuclei (protons) in pure water at room temperature have a relatively long relaxation time (about 2 seconds)
The rate at which energy is absorbed from the RF coil depends on the rate at which excited nuclei are deexcited.
https://www.google.com/patents/US4706030
https://www.google.com/patents/US5461265
An oscillating magnetic field of radio frequency is simultaneously produced.
If the oscillating magnetic field is tuned to a frequency corresponding to the proton nuclear Larmor precession frequency , radio frequency energy will be absorbed and scattered. As energy is absorbed, the distribution between parallel and antiparallel states is altered.
lf the DC or steady magnetic field is modulated by superimposing upon it a fluctuating magnetic field, the protons of the hydrogen present may be caused to attain the resonant condition periodically.
The intensity of the magnetic resonance effect whether it be observed as nuclear absorption, nuclear dispersion .or nuclear induction, depends on the relaxation time, since the maximum intensity observed is that at which the number of protons being excited by the magnetic oscillations equals the number being deexcited by the relaxation effect.
There should be a small phase or amplitude unbalance signal present at resonance. If amplitude unbalance is used, absorption is displayed. If phase unbalance is used, phase-shift or dispersion curve is displayed on the oscilloscope.
with this picture below....you have now seen the inside of Hermans anode.attachment_14637 20160410_145611.jpg
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#34 ·
i hate that rickets....
Maybe u can try to get some contact with him too? -
#35 ·
the inside drawng shows a bad spot or so? What is that? -
#36 · date not recorded
Maybe these are more clearattachment_14639 attachment_14641 20160411_074802.jpg 20160411_074737.jpg
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#37 · date not recorded
Maybe these are more clear
Ahaaaaa

Thanks Kevin......
Its just a bold on top of a hole, welded...
Steve -
#38 · date not recorded
What makes me think why James and who ever else worked with Hermans original electrodes failed to keep it going,is the thin layer left had worn out and burnt thru...this is how it looked on the inside of one electrode.I tried to draw the jagged edges as it appeared....
I believe the Stanford study is the most important discovery made in the realms of our type of research.I think if we are going to give this an honest go we must perform that expieriment.
My inductor wire wire will be here in the morning and im most excited about that atm.
Herman may have needed the specific 70kV for a specific thickness of the electrode in our little chamber.
I don't have a trifield meter or what ever we will need to measure the milli-Roetgen/hour radiation.....
We know Herman used at least 2 applications of radiation.
We know Herman used "2/ 35kV coils wired in series for 70kV."
We know Herman used series resonance "it amplify's the current"
We know Herman used a magnetic field.
We know Herman used on demand ozonated water.
We know Herman used KOH with a pH of 12.
We know Herman used a standing pipe to circulate the water.
We know Herman used fog to slow the burn rate.
Have you seen these equations yet?
http://www.accelinstruments.com/Applications/WaveformAmp/Magnetic-Field-Generator.html
lf in addition to a steady magnetic field, varying fields with frequency components in the neighborhood of the Larmor precession frequency are present, the nuclear magnetic moment may be caused to change its orientation by a resonance effect. lf the frequency of an applied oscillating magnetic field, which is oriented at right angles to the direction of the static magnetic field, matches that corresponding to the difference in energy between adjacent orientations according to the rule, Plancks constant times the frequency equals the energy jump, then the transition will occur. lf the match is not close, transitions will be very unlikely.
For example, when a magnetic field of strength 1,826 gauss is applied to a sample of water, the protons which form the hydrogen l nuclei have only two possible orientations with respect to the field. The parallel orientation has the least Steady magnetic field strength Plancks constant For protons this gives 4,250 X magnetic field strength in gauss, or to take the example above 4,250Xl,826=7.76 megacycles per second.At this field strength it takes 5x10(-20) ergs to excite the antiparallel state. Since the magnetic field at each proton is not exactly the same, the resonance will occur in a narrow band of frequencies centered on 7.76 megacycles. The resonance line width, which is the measure of this band width, depends on the inhomogeneities in the applied field, as well as those arising from the internal structure ofthe material.
Except when they are under the influence of a magnetic field the magnetic moments of the protons of hydrogen are in random orientation for before the field is applied, the parallel and antiparallel positions of the nuclei are no different in energy and equally likely to occur. Upon application of the field, the protons snap into line with substantially half parallel and the remainder antiparallel, but this is not a stable condition in the field, because with the field applied, the antiparallel state of the proton has a higher energy, and hence tends to emit this energy difference and drop to the lower parallel state. This tendency is counteracted by thermal motion, which gives rise to field components at the resonant frequency, and hence to transitions up and down between the two states. As a result, an equilibrium is established at any given temperature where there is a slight excess occupation of parallel states compared with antiparallel states. This equilibrium condition is not, however, attained the instant the magnetic field is switched on, but rather'is approached according to a characteristic time known as the thermal relaxation time.
The hydrogen nuclei (protons) in pure water at room temperature have a relatively long relaxation time (about 2 seconds)
The rate at which energy is absorbed from the RF coil depends on the rate at which excited nuclei are deexcited.
https://www.google.com/patents/US4706030
https://www.google.com/patents/US5461265
An oscillating magnetic field of radio frequency is simultaneously produced.
If the oscillating magnetic field is tuned to a frequency corresponding to the proton nuclear Larmor precession frequency , radio frequency energy will be absorbed and scattered. As energy is absorbed, the distribution between parallel and antiparallel states is altered.
lf the DC or steady magnetic field is modulated by superimposing upon it a fluctuating magnetic field, the protons of the hydrogen present may be caused to attain the resonant condition periodically.
The intensity of the magnetic resonance effect whether it be observed as nuclear absorption, nuclear dispersion .or nuclear induction, depends on the relaxation time, since the maximum intensity observed is that at which the number of protons being excited by the magnetic oscillations equals the number being deexcited by the relaxation effect.
There should be a small phase or amplitude unbalance signal present at resonance. If amplitude unbalance is used, absorption is displayed. If phase unbalance is used, phase-shift or dispersion curve is displayed on the oscilloscope.
with this picture below....you have now seen the inside of Hermans anode.
That might the reason why it wouldnt work. If it is broken.....
Still, the function of that hole is a mistery. But i am very very glad that you shared that info, Kevin!!!
I really mean it.
cheers!
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#39 · date not recorded
ohhhh shit....
Sometimes, i even surprise myself.
https://publications.lbl.gov/islandora/object/ir%3A150171/datastream/PDF/view
The hole in the electrode had to do with the neutrons.... -
#40 · date not recorded
and now you ask how the hydrogen ions are getting in that sealed hole...
"Hydrogen ions are small enough to pass through the crystalline steel"
Thats also called embrittlement of metal by hydrogen.
That gives us: hydrogen ions in a hole, with RF plasma beams etc etc, see previous post.
That Anderson was a genius! -
#41 ·
I cant agree with the usage of the hole...i dont think the hole is suppose to be there....i think its there as a result of using the electrode as an ion source and it simply got used up.I think if you can imagine an arrangement where air is used as the ion source (referring to the Standford study) the electrode may be less used up and last longer,the air hole should provide stress relief from the thinned out layer of the electrode as well.
Once you have the standing pipe arranged,cell preasure ,along with air being supplie atop the cell will circulate the cell water and help keep the chamber from over heating.
Another thing ive not seen mentioned is the pressure atop the standing pipe...you should build it and check that out. -
#42 ·
Dear Kevin,
One other question for you.
Did the cell of Herman had a separator for oxygen and hydrogen in there? -
#43 ·
Not that Im aware of...Herman did say you couldnt have one between the plates but up there referring to above the water line.
The top that Herman used has a baffle in it....there also was a huge hose going in pushing something thru the top (air,fog..??)
If he had some kind of slosh prevente it would have been on the outgoing side under the baffle part of thst top.
James did say that the cell after removing from the car had been leaking...the KOH had found its way out and had formed solid crystal like stuff streaming down...like a cave thing
Id bout bet he had some kind of slosh protector in the top .
My personal opinion and wat im fixing is a gas output from the standing pipe.The hole in the top of mine will be plugged and used only to add more KOH.
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#44 ·
i read somewere that Anderson was venting the oxygen into the cars interieur.....
Was is that right? -
#45 ·
i read somewere that Anderson was venting the oxygen into the cars interieur.....
Was is that right?
He mentioned it in the interview but it seemed like it was just something he was considering or hoping.with the top he had on it there would be no way.the top he had on his cell was part of a kitchen sink plumbing part....check it out at walmart or wherever....there was no way he was seperating the gas with that top....pluss he used a speciality designed, pressurized ozonated water generator.
You can ozonate water to the point of looking like a cloud and steaming. -
#46 ·
I think it shouldnt be much longer till we completely understand the magnetics of his system....ive watched his interview so much to almost memorizing everything he said. -
#47 ·
i read somewere that Anderson was venting the oxygen into the cars interieur.....
Was is that right?
He mentioned it in the interview but it seemed like it was just something he was considering or hoping.with the top he had on it there would be no way.the top he had on his cell was part of a kitchen sink plumbing part....check it out at walmart or wherever....there was no way he was seperating the gas with that top....pluss he used a speciality designed, pressurized ozonated water generator.
You can ozonate water to the point of looking like a cloud and steaming.
Yes. He said that in the interview.
Funny that you said that you almost know every word from that interview. Same here....
The shitty thing is that parts of that interview are soooo difficult to hear and to understand.
Specially if english is not the native language, as dutch is my native one.
To come back to the topic:
Might it be that Herman said that he was blowing the warm air from the cell cooling system into the interieur?
cheers
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#48 ·
I think it shouldnt be much longer till we completely understand the magnetics of his system....ive watched his interview so much to almost memorizing everything he said.
If you combine all info from that interview and also the Horvarth patents we might understand a little bit more on what is going on.
Remember that Herman speaks of using a positive magnetic field to push the hydrogen trhu the waterbath as being very important part of the system.
Also the explanation of that old engineer at the end of the video is also important, Kevin.
I tell you why. Now its important to know what happens when you use a sparkgap with a coil.
You can find a lot of info on that in the Horvarth patents.
When air gets ionized in a sparkgap, a high current starts to flow into the transformer of Horvarth, creating a hugh magnetic field.
The field force is described in that patent!!!!!! Unbelievable.
Back to sweet Herman. He mentions the use of corona wire.
He used a round cylinder as cell.Combine that with the info of the other man wrapping sparkplug wire around his cell.
One and one = two.
Herman used corona wire around his cell to creat 2 effects.
1. radiolysis by emf fields
2. magnetic field for pushing the monotomic hydrogen
Corona wire with a sparkgap, probably below the cell.
Cheers
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#49 · date not recorded
3 of the most important statements he made were :
1)"You have to get your magnetics just right.If you get them to close it will just roll around in there and not do anything"
2)" I had them make me 2 and wire them together"
3) "magnetically "
#3 is the most interesting. ...he was asked if he had high voltage hidden inside his chamber,his answer was "magnetically "
notice He also says, "you wont" as to say that part must have been a difficult part for the man.
He later says stuff about the wires in there and corona discharge.
The interview is just chopped up so much we just have to try to understand and build it however it will work.
He also in that answer says " as fast as the electricity" to say the magnetics is an electromagnet.
You can see the glitch in the tape soon after.... edited.
I think i can at least turn the electrodes into strong eough magnets now so I guess im gonna break out all that stuff now and try to work on it some...ill share everything i do and see how it goes...is anyone else going to start sharing anything with this? -
#50 · date not recorded
Ks, look at my drawings.
Circuits with such a large scr are used to switch heavy currents. Herman did 12v and 20 amps...
If he wasnt switchting the 12v off during hv pulses he would have used a diode......
cheersattachment_14705 20160610_140123_resized.jpg