The reason for a low position of electrons in Holmlid theory is superconductivity in the hydrogen molecule. The Meissner effect pushes all electrons out of the positively charges core of the molecule and a shell of electrons forms a cloud of negative charge close to the positive nucleus of the hydrogen molecule.
When the Meissner effect is strong, the election cloud is pushed to a distance far from the positive charged core, When the Meissner effect is the weakest, the election cloud is pushed to a distance nearest from the positive charged core. There is no case when the electron cloud will be forced into the positive core of the molecule. When the superconductive condition fails, the Meissner effect will terminate, and the electrons will resume their normal orbits and the ultra dense molecule will fail and devolve. On Fri, Oct 19, 2018 at 5:48 PM <[email protected]> wrote: > Hi, > > Another consequence of shrunken D molecules is that a neutron may hop from > one D > nucleus to the other within the molecule. This produces T + p, and > explains the > Tritium results previously detected. BTW, this is also Mills' original CAF > reaction. > > T is produced in preference to He3 because it is much easier for a neutron > to > hop than for a proton, given that the proton would have to overcome the > electric > field of the other D atom, whereas the neutron has no such problem. > > Regards, > > Robin van Spaandonk > > http://rvanspaa.freehostia.com/project.html > >

