It depends upon your calculation of the strength of quantum gravity and the
number of additional dimensions of spacetime it acts upon. The
blue-shifted collective radiation surrounding the surface of the collapsed
matter will be more than enough to take down a nearby coulomb barrier. A
22 microgr
In reply to ChemE Stewart's message of Thu, 23 Aug 2012 09:22:57 -0400:
Hi,
[snip]
>Gremlins come in different colors:
>
>Brown dwarf ~ Brown Gremlin
>White dwarf ~ White Gremiln
>Black hole ~.Black Gremlin
>Micro black hole ~ Invisible Gremlin
>
>The smaller they are the more elusive and m
I will also suggest that the dark matter around the sun is consuming
hydrogen and radiating heat at up to 5.6×1032K
Dark Matter = Dark Gremlin
They come in different shades and sizes.
On earth as near the sun, best to feed them a steady diet of hydrogen else
you will end up with a mess of fission
Gremlins come in different colors:
Brown dwarf ~ Brown Gremlin
White dwarf ~ White Gremiln
Black hole ~.Black Gremlin
Micro black hole ~ Invisible Gremlin
The smaller they are the more elusive and more trouble they cause in their
surroundings.
On Thursday, August 23, 2012, ChemE Stewart w
Jones,
I agree. I believe this reaction starts with a collapse of matter
compressed within a crack or void. As in the macro scale universe, the
degree of collapse may vary all the way down to a micro black hole, which
is the extreme case. Any collapse should be instantly followed by a burst
of
The Rice/Kim paper below gives a pretty good introduction to the DDL or Deep
Dirac Layer (put forth by Maly and Va'vra in Fusion Technology). Rice/Kim et
al make a valiant effort to disprove, or at least cast doubt on the reality
of the DDL, but the underlying assumptions in eq. 9,10,11 have proble
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