Ed,
I believe I do have fusion reaction products. In 2001 (or so) I had the good fortune to talk with Tom Clator about fusion from my device. His later experiments and literature also reveal Tritium production from a different type of Plasma. As I recall it was about 2000 volts but I do not remember the current, however his literature on Tritium production is available on the Internet.
If you watch the video at http://hometown.aol.com/hypercom59/dlc.mpg - there is plenty of heat radiating throughout the chamber in the last two seconds of the video.
Best Regards,
Chris
Well Chris, looks like you already have some evidence for nuclear
reaction products. Your set up is identical to the plasma cells using
water, in as far as interaction at the W surface is concerned. You
split H2 into H+ at the W surface, while a plasma using H2O also forms
H+ at the W surface. In each case the H+ is caused to impact the W
surface with a significant amount of energy. Quite a bit of study of
H2O and D2O plasmas by several laboratories show formation of
transmutation products. Also, Claytor produced tritium using this
method. You should be seeing the same effect. Add a little D2 to the H2
and you should see a big increase in heat generation.
Ed
Christopher Arnold wrote:
> Ed,
>
> Perhaps the vanishing coulomb barrier would explain why gas I produce in
> my r! eactors registers as radioactive in my tritium monitor, and why SEM
> w/EDS spectrum is so strange as to suggest transmutations and why
> Nuclear Magnetic Resonance spectrum produced from my materials comes
> back as unidentifiable.
>
> Perhaps certain types of Plasma actually CAN bend the currently
> understood rules.
>
> Chris
>
>
> Edmund Storms <[EMAIL PROTECTED]>wrote:
>
>
>
> Jones Beene wrote:
>
> > Ed,
> >
> >> I would like to suggest that all plasma experiments, including
> >> Naudin's obtain their extra energy from cold fusion.
> >
> >
> > Then what would be the reaction? H+H -->D + e ?
>
> Perhaps, but I suggest the more likely reaction is p + d = He3. This
> possibility can be tested by adding a little D2O to the cell. Going
> from the normal 6000 ppm to 1% should ! make a big difference in heat
> generation.
> >
> > A transmutation reaction with the W would need to overcome far
> higher
> > Coulomb repulsion forces, no?
>
> Yes, but once the nuclear active conditions have been created, the
> Coulomb barrier appears to disappear for all reactions. Other factors
> appear to determine which reactions occur. At least that is what nature
> is trying to tell us based o! n many such observations.
>
> Ed
> >
> > Jones
> >
>
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