Re: Jar of neutrons
From: edddy (ralphpoiu_at_yahoo.com)
Date: 02/20/05
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Date: 19 Feb 2005 17:27:24 -0800
matt271829-news@yahoo.co.uk wrote:
> Hi
>
> What would happen if you collected a jar full of neutrons at room
> temperature/atmospheric pressure?
>
> What would they look like? Gas? Liquid? Solid? Colour?
>
> How much would the jarful weigh?
A nuke almost ready to explode has a bunch of free
neutrons in a material type container.
At the correct density they interact with the requisite
number of atoms to fission them funny like. Funny
because the adjacent atom skews the normal fission
nuclide distribution.
A bunch of neutrons in the reactor core can do little
unless they interact. And neutron-neutron interaction
is boring scattering only. They stick alittle maybe also
if slightly charged.
A soup of neutrons is a kind of material soup. It can be
made using more coorporative material.
A real neet experiment is to take the single neutron
and find the spacing of two atoms for the single
atom to fission. And this is a special critical density
where the work done squashing the two atoms is
requisitlyey rewarded with an energy return.
It is called, single neutron interaction. A crosssection
is found to increase nicely to the critical spacing.
Any two atoms can be made to fission, btw. With some
returning more or less energy than break even.
Spallation is another term for "any atom" fission.
The magic spacing for hydrogen is one. One atom's
wideth defined by the scatterring of the 1 Mev
alpha particle. Infer the diameter of the atom
like Mr Ruthurford. And It looks like a little
nucleaus compared to electron scatterring.
So one small 1X10-10 cm spacing can cause the fission
to occur with a single neutron.
And here the rather large spacing is the meaning of the
degree of alteration of spacing necessary to cause the
standard diameter measuring method to change by One.
The last sentence is funny on purpose.
1x10-10 cm overlap is the intention. Over lap two
nucleus' by 10000000% And here the diameter is found
to always exist in relation to the measuring alpha
scattering standard.
Make the overlap cause the size of the two nuclei
to be 1x10-10 cm is the simple explaination.
A one MeV hydrogen scattering interaction shows this
degree of nucleus size. Mechanically replicating
1 Mev scattering is hard work be doable.
Measure the two trainsiently interacting nuclei!
Measure by scattering the alpha theoretically!
Anyways explosive compression of One Mev is hard
work. A small sample to be overlapped and fissioned
can be used to trigger the larger hydrogen bomb.
That is right inverted fission is fusion.
So the outcome is neutrons and two stuck together
nuclei.
SO take the single neutron trigger. And trigger
the hydrogen bomb!!! Hurra. A direct fission
trigger free hydrogen bomb.
And the only hard part is the ultra high pressure of
the trigger sample. A diamond press is the kind of
pressure required. And the 1x1010 pounds is the 10
gigapound level required.
And expolsive compression to 10 gigapounds is hard
work.
A small ten gram hydrogen sample to test the theory
is already in experiment. And Compress to explosives
and sample together with the diamond press and then
explode.
So special high pressure explosives are needed.
A rather funny chemistry.
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