The solid surface of the earth is mainly composed of gravel, of
calcareous, and argillaceous strata. Sand is separated by streams and
currents, gravel is formed by the attrition of stones agitated in water,
and argillaceous strata are deposited by water containing argillaceous
material. Accordingly, the solid earth would seem to have been mainly
produced by water, wind, and tides, and this theory is confirmed by the
discovery that all the masses of marble and limestone are composed of
the calcareous matter of marine bodies. All these materials were, in the
first place, deposited at the bottom of the sea, and we have to
consider, firstly, how they were consolidated; and secondly, how they
came to be dry land, elevated above the sea.
It is plain that consolidation may have been effected either through
the concretion of substances dissolved in water or through fusion by
fire. Consolidation through the concretion of substances dissolved in
the sea is unlikely, for, in the first place, there are strata, such as
siliceous matter, which are insoluble, and which could not therefore
have been in solution; and, in the second place, the appearance of the
strata is contrary to this supposition. Consolidation was probably
effected by heat and fusion. All the substances in the earth may be
rendered fluid by heat, and all the appearances in the earth's crust are
consistent with the consolidation and crystallisation of fused
substances. Not only so, but we find rents and separations and veins in
the strata, such as would naturally occur in strata consolidated by the
cooling of fused masses, and other phenomena pointing to fusion by heat.
We may conclude, then, that all the solid strata of the globe have been
hardened from a state of fusion.
But how were these strata raised up from the bottom of the sea and
transformed into dry land? Even as heat was the consolidating power, so
heat was also probably the elevating power. The power of heat for the
expansion of bodies is, as we know, unlimited, and the expansive power
of heat was certainly competent to raise the strata above the sea. Heat
was certainly competent, and if we examine the crust of the earth we
find evidence that heat was used.
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