The argillaceous deposits produced by this decomposition of the
felspathic and micaceous rocks would participate in the still heated
temperature of the globe--would be again subjected to long continued
heat; and when they became cool again, they would assume, by a kind of
semi-crystallisation, that parallel structure which is called foliation.
All foliated rocks, then, are metamorphic, and the result of a
metamorphic action to which sedimentary strata (and even some eruptive
rocks) have been subjected subsequently to their deposition and
consolidation, and which has produced a re-arrangement of their
component mineral particles, and frequently, if not always, of their
chemical elements also.
In this manner would the first beds of crystalline _schist_, such as
mica-schist, be formed, probably out of sandy and clayey muds, or
arenaceous and argillaceous shales.
At the end of this first phase of its existence, the terrestrial globe
was, then, covered, over nearly its whole surface, with hot and muddy
water, forming extensive but shallow seas. A few islands, raising their
granitic peaks here and there, would form a sort of archipelago,
surrounded by seas filled with earthy matter in suspension. During a
long series of ages the solid crust of the globe went on increasing in
thickness, as the process of solidification of the underlying liquid
matter nearest to the surface proceeded. This state of tranquillity
could not last long. The solid portion of the globe had not yet attained
sufficient consistency to resist the pressure of the gases and boiling
liquids which it covered and compressed with its elastic crust. The
waves of this internal sea triumphed, more than once, over the feeble
resistances which were opposed to it, making enormous dislocations and
breaches in the ground--immense upheavals of the solid crust raising the
beds of the seas far above their previous levels--and thus mountains
arose out of the ocean, not now exclusively granitic, but composed,
besides, of those schistose rocks which have been deposited under water,
after long suspension in the muddy seas.
On the other hand the Earth, as it continued to cool, would also
contract; and this process of contraction, as we have already explained,
was another cause of dislocation at the surface, producing either
considerable ruptures or simple fissures in the continuity of the crust.
These fissures would be filled, at a subsequent period, by jets of the
molten matter occupying the interior of the globe--by _eruptive
granite_, that is to say--or by various mineral compounds; they also
opened a passage to those torrents of heated water charged with mineral
salts, with silica, the bicarbonates of lime and magnesia, which,
mingling with the waters of the vast primitive ocean, were deposited at
the bottom of the seas, thus helping to increase the mass of the mineral
substances composing the solid portion of the globe.
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