At first sight 4827, say 5000, atmospheres or 75,000 lb. on the square
inch, appears to be an enormous pressure, but it is nearly almost as
nothing compared to the pressures we have been dealing with. A column
of granite 1 mile high would exert a pressure upon its base of 6050 lb.
per square inch, and one of 25 miles high of 151,200 lb., or double the
number of atmospheres we have applied to the gases in the hollow of
the earth. If we take a column 225 miles high, such as we considered
to be the least that would be necessary to compress granite into
one-half of its volume, we get 1,360,860 lb. per square inch, or over
90,000 atmospheres of pressure; and if we go into thinking of columns
of 447 and 817 miles--this last being the depth from the surface of
the division of the matter of the earth into two equal portions--we
could have gases compressed to 174,600 and 326,700 atmospheres or,
dividing the numbers by 773·4, 222 and 422 times the density of water;
so there is no cause to stumble over high pressure. With even 10,000
atmospheres, more than double the number assumed, we should have gases
as heavy as the material we found at the centre of the earth, when we
were looking upon it as solid to the centre--which was 13·734 times the
density of water--and so get rid of burying the precious metals where
they would be "matter in the wrong place," and according to D'Israeli's
definition, justly entitled to the epithet applied to them, sometimes,
by people who have never been blessed with a superabundant supply of
them. At the same time, we find out what we knew before, viz. that we
may have gases heavier than the heaviest metals and as rigid as steel,
if we can only find a vessel strong enough to compress them in, along
with the means of doing it; and also that the thousands of miles of
highly compressed matter, between the hollow centre and the surface of
the earth, are far more than sufficient to imprison gases of far, very
far, greater elasticity than our modest measure of 5000 atmospheres.
And we hope to be able to show presently good reason for believing that
the gases compressed in the hollow, at what may really be considered
as very high pressures, have had, and may probably still have, a very
important part to play in the evolution of the earth.
Public-domain text, read in full here on John Shaqi.
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