Concentrate on the electrons. Heat will cause the electrons to vibrate. This couple is how the resonance comes into play.
In a dipole the ions are ridgid but the electrons can move. Cheers: axil On Fri, Mar 1, 2013 at 2:27 AM, David Roberson <[email protected]> wrote: > I think we should be considering a heat source that is distributed in this > case. An earlier post I just wrote might help explain how a heat pulse > could progress in a conic form. The coordinated addition of many thousands > of individual fusion events might well lead to this result. > > Dave > > > -----Original Message----- > From: mixent <[email protected]> > To: vortex-l <[email protected]> > Sent: Fri, Mar 1, 2013 12:30 am > Subject: Re: [Vo]:Explaining Cold fusion -IV > > In reply to Eric Walker's message of Tue, 26 Feb 2013 21:11:33 -0800: > Hi Eric, > > I think you may have hit the nail on the head. If an explosion occurs inside > the > lattice, heat from it will spread out spherically in all directions, melting > the > metal as it goes. Where this sphere intersects the surface of the metal, a > hole > will form, releasing the pressure of the explosion, and the plasma, vaporized > and molten metal, will all go in that direction, expanding as it goes, and > producing a more or less conical crater, unless it is already very close to > the > surface, in which case it may just blow part of the surface away leaving a > gap. > > [snip] > >I'm not sure how explosives shielded by tamper work, but the crater > >pictures look a little like that to me. It looks like there is a small > >volume that turns to liquid and then possibly gas at a rate faster than the > >surrounding material, creating an expanding volume. The craters we see > >point outward from the surface of the substrate, and I would expect the > >surface side of the molten volume to exert less pressure on the volume than > >the opposing side. This in turn leads an eruption away from the inner wall > >and towards the surface. In this model, the momenta of the original > >sources of heat do not play a part. > > > >Eric > Regards, > > Robin van Spaandonk > http://rvanspaa.freehostia.com/project.html > >

