Re: Critical Test of the Big Bang and Discrete Fractal Paradigms
- From: Roger Bagula <rlbagula@xxxxxxxxxxxxx>
- Date: Fri, 27 Oct 2006 14:48:06 GMT
rloldershaw@xxxxxxxxxxx wrote:
The metric for the Kerr-Newman black hole is online at:
Thanks very much for the comments.
Actually, I should clarify that whereas the Discrete Fractal paradigm
specifies the exact mass spectrum, it is less definitive about the
detailed physics of these dark matter objects, except that they are
certainly ultracompact and that all of their properties are in a direct
one-to-one relationship with those of subatomic particles.
I think Kerr-Newman black holes are the closest thing to them that
physicists have any familiarity with, but their detailed physics will
undoubtedly contain a lot of surprises.
The highly discrete mass spectrum for the proposed dark matter objects,
which you can easily calculate by multiplying the masses of most common
subatomic particles (e, p, D, T, alpha particles and the more massive
nuclei) by 1.70 x 10^56, represents a near perfect set of predictions
for knowing whether the DF paradigm can live up to its promise.
Details at www.amherst.edu/~rloldershaw .
Thanks again, Roger,
Rob
http://scienceworld.wolfram.com/physics/Kerr-NewmanBlackHole.html
I spent a little time finding my text with it.
Since it is charged with Q and that charge is rotaiong at an angular momentum J,
they tend to have very large magnetic fields associated
so that f they interact with matter/ plasma around them
high energy radiation is generated.
Think of it like a cosmic blender:
It sucks stuff in and has a hole of radius "a" in the center
but the cental pressure must be very large
so matter in ,
plasma near the speed of light out...
Roger
.
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