http://www.google.com/url?sa=t&rct=j&q=&esrc=s&frm=1&source=web&cd=40&ved=0CHYQFjAJOB4&url=http%3A%2F%2Fciteseerx.ist.psu.edu%2Fviewdoc%2Fdownload%3Fdoi%3D10.1.1.29.695%26rep%3Drep1%26type%3Dpdf&ei=81IkT-zMDYr10gGU0LzsCA&usg=AFQjCNF5SQt3JVNF_ecKuWA6uwMNrthKgQ&sig2=155KUMofVJ27VAps7p8Pxw Gas Mixture with an Anomalous Afterglow Duration
Randell L. Mills Reputation is the best aid to learning. On Sat, 28 Jan 2012 15:00:16 -0800, I posted this (updated a bit here to reflect this thread on nano-particles) as follows: This paper will provide a solid foundation for all those aspiring E-Cat replicators who want to produce a Ni-H reactor using a Rydberg catalyst. These procedures will generate the nano-particles of potassium or cesium hydrides that produce the nuclear active sites in a Ni/H reactor. Take special note of a summary table of alkali based Rydberg atom catalysts. Mills also experimentally determines that the production of Rydberg clusters is best formed by using a two second power interruption delay. This allows for excited Rydberg nano-particle condensation to form from the interaction between the alkali and hydrogen plasmas. Such a delay has been detected in the early Rossi power feed of his internal heater. Rossi also defines the temperature levels to be attained required by the internal heater to activate the "secret sauce" catalysts. This is a description of a titanium dissociator and a catalyst coating comprising one of potassium, rubidium, cesium, and their carbonates and nitrates. This paper is a must read for all those who are serious in their desire to replication of the Rossi and the derivative Defkalion - Green Technologies Ni-H reactors. On Sat, May 4, 2013 at 11:52 AM, Axil Axil <[email protected]> wrote: > > http://phys.org/news/2013-04-freedom-scientists-nanoparticles-larger-real.html > > Freedom of assembly: Scientists see nanoparticles form larger structures > in real time > > The connection point between each of these nano-particles could be a NAE > site. > > > On Sat, May 4, 2013 at 11:47 AM, Axil Axil <[email protected]> wrote: > >> Rossi does use an internal heater which could function to vaporize this >> alkali metal. >> >> >> On Sat, May 4, 2013 at 11:28 AM, Axil Axil <[email protected]> wrote: >> >>> Remember that in both the high school reactor and the DGT reactor, these >>> use electric sparks where very high temperatures are produced. Rossi does >>> not use sparks, but might use cesium. >>> >>> >>> On Sat, May 4, 2013 at 3:44 AM, Teslaalset >>> <[email protected]>wrote: >>> >>>> Interestingly, the boiling temperature of potassium is 759 degrees C at >>>> 1 bar. >>>> Vapourizing potassium could cause such subnano effect. >>>> >>>> >>>> >>>> The “secret sauce” is a chemical additive that forms solid dust like >>>>> metal nano-particles, little solid balls of alkali metal droplets, with >>>>> sizes that range in the hundreds to thousands of atoms. >>>>> >>>>> There sizes are about 1 nanometer or less. These small bits of matter >>>>> form in the billions, like dust settling on the nanowire covered >>>>> micro-particles. >>>>> >>>>> The contract points between these dust particles and the nickel >>>>> nanostructures are the nuclear active areas. >>>>> >>>>> This potassium 1 nn Nano dust is constantly renewed and there is >>>>> literally billions of such sites produced by chemical processes in the >>>>> hydrogen as the dust falls like snow on the nickel micro particles >>>>> >>>>> The strength of the charge concentration is proportional to the >>>>> smallness of the smallest nano-particle in the nanostructure aggregation. >>>>> >>>>> A nano-particle that is just a few hundred atoms in size will produce >>>>> a huge electric field concentration. >>>>> >>>>> EMF concentration of up to 10 to the 15th power has been >>>>> experimentally verified. This “secret sauce” mechanism may produce even >>>>> higher levels of charge amplification. >>>>> >>>>> For example, in the high school tungsten reactor where tungsten >>>>> nano-particle of random sizes is covered in a solution of potassium >>>>> carbonate, that reactor produces a COP of 4. The potassium carbonate >>>>> produces solid potassium nanodust that mixes with and sticks to the >>>>> tungsten particles and it is this dust that forms the NAE in that reactor >>>>> design. >>>>> >>>>> >>>> >>> >> >

