In reply to Axil Axil's message of Fri, 16 Oct 2015 20:14:29 -0400: Hi, [snip] >This is called super-absorption. The energy release would be spread equally >throughout a BEC of a billon coherent solitons each getting a few hundred >thousand electron volts. These solitons store energy. Their energy holding >capacity is 64 GeV each but most hold far less.
I'm curious how you come by this figure? >Then there is the energy >that produce subatomic particles such as muon and mesons. These particles >need a lot of energy devoted to their creation. The release of energy is >buffered by these subatomic particles because they have a relatively long >lifetime. Muons decay over a very long time and release their energy >content very slowly. Even assuming all the energy is converted into muons, a 2 micro-second half-life means that they are almost all gone within 10-20 micro-seconds. That's still an explosion (unless they all leave the reactor before they decay, but in that case the reactor produces no usable energy). Regards, Robin van Spaandonk http://rvanspaa.freehostia.com/project.html

