Essay on the Theory of the EarthCuvier, Georges, baron
Science
Essay on the Theory of the Earth
Cuvier, Georges, baron
Geology; Paleontology
Primitive mountains are generally distributed over the surface of the
earth: it necessarily follows that the bodies which have composed
the surface of the earth have participated of the temperature which
the primitive mountains have had at the period when they were in a
fluid state. The temperature at which water boils depends upon the
pressure of the atmosphere; and if the temperature of the earth
increases, we only require to diminish the mean height of the sea
32 feet, in order to have a pressure of an atmosphere more; and it
is by this pressure that the degree of temperature at which water
boils will also be raised higher. M. Laplace judges from the height
of the sea during flowing and ebbing, that the mean depth of the
sea is about 96,000 feet. Supposing three-fourths of this mass of
water were converted into vapour, the pressure of this vapour would
be nearly equal to 2250 atmospheres; and this pressure would so
augment the degree of heat at which water enters into ebullition,
that the primitive mountains might be in a state of fusion, without
the water with which they are covered being heated to the boiling
point; for the water which is not converted into vapour, and whose
quantity is a fourth of the whole mass of vapour, according to the
supposition which we have made, would cover the whole earth, because
water expands in increasing proportion if the temperature be raised,
and because the expansion of water is much greater than that of the
mass of our primitive mountains; and, consequently, according to
this supposition, our primitive mountains are formed, covered with
red hot water. The great pressure of so many atmospheres necessarily
modifies the reciprocal affinities of the substances which compose
the primitive mountains.
Primitive mountains are distinguished from volcanic productions in
this, that the lime and magnesia, which in them are combined with
carbonic acid, form with the silex silicates and bisilicates. It
is necessary that the silex, which, under the ordinary pressure,
and at an elevated temperature, expels the carbonic acid, exercise
no influence under the pressure of so many atmospheres; and it is
not surprising that crystals of quartz occur in Carrara marble.
In volcanic productions, this pressure no longer exists, and we
should find among these the same phenomena which our laboratories
and metallurgic operations present. Following this theory, the
circumstances that primitive mountains contain gypsum and carbonates,
and that water occurs in quartz, very readily admit of explanation.
And with regard to this latter phenomenon, the observations detailed
by Sir Humphry Davy afford an additional confirmation of the theory
in question.
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