Alright, I think I have the leads I need. What I am doing is some math
as to working out
how the Asteroid belt is a Ring of Jupiter.
So the Ring of Saturn is created by water vapor that is Impelled
Motion by solar radiation of
water created in the Sun and pushed by the Solar Radiation out to
Saturn. Due to the gravitational
pull of Saturn these water molecules eventually all become positioned
into a disc or ring which we
now see. I believe Maxwell in the 1860s did math computations on the
gravity pull of Saturn and that
the ring material had to be uniform in size.
So what I am proposing is that the Sun creates other atoms and
molecules via Dirac Radioactivities
which are blasted by the solar radiation and ends up in the Asteroid
Belt region and due to the
force of gravity of Jupiter, that those molecules and atoms reform and
then are placed in a ring type
orbit that we now see as the Asteroid Belt.
In other words, the asteroids are to Jupiter what the ring of Saturn
is to Saturn.
Now because the mass of the material in the asteroid belt is so much
heavier than water or ice is the
reason the Asteroids form a different type of Ring before Jupiter. And
why Saturn has ice rings whereas
Jupiter has the Asteroid ring.
So I need to delve into the math of this. That the Ring of Saturn is
another form of the Asteroid Belt to Jupiter.
Now why does not Uranus and Neptune have large ice rings? Well, it
maybe that Saturn is so good at
collecting the solar radiation carried water molecules from the Sun
that Saturn blocks the water from
reaching Uranus and Neptune.
So maybe the math can also explain why most of the solar radiation
carried material ends up in the
Plane of the Ecliptic in that the gravitational pull of the planets
forces that matter to migrate into the
Ecliptic Plane, just as the gravity of Saturn forces any ice particles
that is not in the Ring to eventually
migrate into the Ring structure itself.
This would also explain why the Asteroid Belt is that much more rough
as having alot of particles degrees
off of the ecliptic whereas the Rings of Saturn have few ice particles
off the norm.
By the way, has anyone seen a report of where alot of lithium,
beryllium and boron are found at the
edge of the outermost boundary of the Oort Cloud? I suppose one cannot
see them unless in the close
vicinity of a star, but maybe somehow has a way of detecting large
amounts of these lightest elements.
Archimedes Plutonium
www.iw.net/~a_plutonium
whole entire Universe is just one big atom
where dots of the electron-dot-cloud are galaxies