Every story on dark matter simply leaves me confused and perplexed. The first question I would ask is what is the spin of dark matter. Is it a fermion or boson? If it's a fermion, it has to interact and if it interacts why is it nearly impossible to see the interaction. If it's a Boson, then it would tend to undergo condensation, and you would have a bose star or a dark matter black hole. That too should be easy to observe as a gravitational lens without a source of matter to create it. Both have led me to conclude that dark matter is part of the concept of Emergent Gravity (Entropic Gravity). Emergent gravity (and emergent dark matter) doesn't have spin but would effect matter gravitationally and be associated with matter since it appears out of the warping of small amounts space/time by the occupation of matter and the entropic warping of space-time from matter. This is all from Erik Verlinde's theory. It's good stuff and I don't understand why it's not the leading candidate for a dark matter explanation.
On Mon, Dec 3, 2018 at 4:54 PM Axil Axil <[email protected]> wrote: > How do you know that gluons exist? Has one ever been isolated? > > On Mon, Dec 3, 2018 at 4:39 PM <[email protected]> wrote: > >> In reply to [email protected]'s message of Mon, 3 Dec 2018 >> 14:12:32 >> +0000: >> Hi Bob, >> >> Just a guess, but IIRC most of the mass of Neutrons comprises gluons, so >> perhaps >> a light neutron would just contain lower energy gluons? >> >> (Reminiscent of Jones' theory from years back.) >> >> >Robin— >> > >> > >> > >> >Regarding my recent comments on the stable of primary particles in the >> standard model, I had in mind that a light “mirror neutron” would >> necessarily contain light quarks. not the same as the primary quarks the >> are imagined per the standard theory. >> > >> > >> > >> >Is there another explanation for a light neutron containing quarks of >> the standard theory’s rest mass for quarks? >> > >> > >> > >> >Bob Cook >> > >> >________________________________ >> >From: [email protected] <[email protected]> >> >Sent: Saturday, December 1, 2018 4:35:15 PM >> >To: Vortex-l >> >Subject: Re: [Vo]:Dark Matter as a "sterile antineutron" and the LENR >> connection >> > >> >PS - another more mundane explanation is that in common with all beta >> decays, >> >occasionally (nearly) all the energy is carried away by the >> anti-neutrino, >> >leaving the electron with so little that it remains combined with the >> proton as >> >an ordinary ground state Hydrogen atom, thus evading detection in the >> proton >> >beam experiments. >> >Regards, >> > >> > >> >Robin van Spaandonk >> > >> >local asymmetry = temporary success >> Regards, >> >> >> Robin van Spaandonk >> >> local asymmetry = temporary success >> >>

