Robin—
I thought that went without saying, the pure energy transformation of particle-antiparticle reactions. Bob Cook ________________________________ From: [email protected] <[email protected]> Sent: Wednesday, April 24, 2019 1:08:30 PM To: [email protected] Subject: Re: [Vo]:New Holmlid paper on Research Gate In reply to JonesBeene's message of Wed, 24 Apr 2019 11:42:28 -0700: Hi, Perhaps I misunderstand conservation of Baryon number, but isn't proton : anti-proton annihilation an obvious violation? > >Nah. In fact, there are many violations of baryon number conservation at high >local temperatures in the Standard Model… > >Here is a decent paper on the subject of baryon conservation law violations >from people who see it almost every day and incidentally have LLNL >connections. > >http://www.slac.stanford.edu/pubs/slacreports/reports12/ssi90-020.pdf. > >In the end, experiment always rules, and “conservation laws” are usually >nothing more than generalizations to begin with….(make that >over-generalizations) > >Jones > > > >From: Axil Axil > >The reason why "LLNL not all over this" is because the Holmlid effect violates >the baryon number conservation law. > >https://en.wikipedia.org/wiki/Baryon_number > > > >JonesBeene wrote: > >https://www.researchgate.net/publication/331968180_Ultradense_protium_p0_and_deuterium_D0_and_their_relation_to_ordinary_Rydberg_matter_a_review > >There is a clue here about why the output in muons has been difficult for >others to duplicate. > >It turns out that the active material must be in the form of long chain >clusters, not simply the smaller grouping. > >QUOTE: “Superfluidity and a Meissner effect at room temperature are only found >for the long chain clusters H2N(0), while the small H3(0) and H4(0) clusters >do not have any super properties” > >This means that there is a specific technique which has to be implemented to >first densify and then to create the extremely dense clusters in which most >of the nuclear reaction processes take place. > >Following this step, laser irradiation will give meson showers (most types of >kaons and pions) and, after meson decay, large fluxes of muons and other >leptons. > >The fluxes can be extraordinarily high > >Why is LLNL not all over this ??? > >It seems almost negligent to ignore this. Heads should roll if the Holmlid >effect has been overlooked by the one National Lab whose missionand >multibillion funding level is so similar. > >Not to mention the military implications. Regards, Robin van Spaandonk local asymmetry = temporary success

