The diameter of the sun being 867,000 miles, his volume is
341,238,000,000,000,000 cubic miles, and his density being 1·413 times
that of water, his volume reduced to the density of water would be
482,169,000,000,000,000 cubic miles. Now, astronomers tell us that the
whole of the planets, with their satellites and rings, do not form a
mass of more than 1/700th part of the mass of the sun. If, then, we add
1/700th part to the above volume, we get a total volume, for the whole
of the system, of 482,857,590,478,000,000 cubic miles at the density
of water, which corresponds to a sphere of about 973,360 miles in
diameter. On the other hand, the diameter of the orbit of Neptune being
5,588,000,000 miles, if we increase that diameter to 6,600,000,000
miles, so that the extreme boundary of the supposed nebula may be as
far beyond his orbit, as half the distance between him and Uranus is
within it, we shall still be far within the limit at which the process
of separation from the nebula, of the matter out of which Neptune was
made, must have begun. From these data we can form a very correct
calculation of what the density--tenuity rather--of the nebula must
have been. For, as the volumes of spheres are to each other as the
cubes of their diameters, the cube 973,630 is easily found to be to the
cube of 6,600,000,000, as 1 is to 311,754,100,720, or in other words,
the density of the nebula turns out to have been 1/311,754,100,720th
part of density of the whole solar system reduced to that of water.
Carrying the comparison a little further, we find that as water is
773·395 times more dense than air, and 11,173·184 times more dense
than hydrogen, the density of the nebula could not have been more than
1/403,000,000th part that of air, and 1/27,894,734th that of hydrogen.
But, confining the comparison to air, as it suits our purpose better,
we see that it would take 403,000,000 cubic feet of the nebula to be
equal in mass to 1 cubic foot of air at atmospheric pressure; and that
were we to expand this cubic foot of air to this number of times its
volume, the space occupied by it would be as nearly in the state of
absolute vacuum as could be imagined, far beyond what could be produced
by any human means. Now, were heat a material, imponderable substance,
as it was at one time supposed to be, we could conceive of its being
piled up in any place in space in any desired quantity; but it has been
demonstrated not only not to be a substance at all, but that its very
existence cannot be detected or made manifest, unless it is introduced
by some known means--friction, hammering, combustion--into a real
material substance. Therefore, we must conclude that if it existed at
all in the nebula, it must have been in a degree corresponding to the
tenuity of the medium, and the air thermometer will tell us what the
temperature must have been if we only choose to apply it.
Public-domain text, read in full here on John Shaqi.
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