The Alps furnish an instructive example of the long series of
revolutions through which a great mountain-system may have passed before
reaching its present development. The first beginnings of the chain may
have been upraised before the oldest Palaeozoic formations were laid
down. There are at least traces of land and shore-lines in the
Carboniferous period. Subsequent submergences and uplifts appear to have
occurred during the Mesozoic periods. There is evidence that thereafter
the whole region sank deep under the sea, in which the older Tertiary
sediments were accumulated, and which seems to have spread right across
the heart of the Old World. But after the deposition of the Eocene
formations came the gigantic disruptions whereby all the rocks of the
Alpine region were folded over each other, crushed, corrugated,
fractured and displaced, some of their older portions, including the
fundamental gneisses and schists, being squeezed up, torn off, and
pushed horizontally for many miles over the younger rocks. But this
upheaval, though the most momentous, was not the last which the chain
has undergone, for at a later epoch in Tertiary time renewed disturbance
gave rise to a further series of ruptures and plications. The chain thus
successively upheaved has been continuously exposed to denudation and
has consequently lost much of its original height. That it has been left
in a state of instability is indicated by the frequent earthquakes of
the Alpine region, which doubtless arise from the sudden snapping of
rocks under intense strain.
A distinct type of mountain due to direct hypogene action is to be seen
in a volcano. It has been already pointed out (Part IV. sect. 1) that at
the vents which maintain a communication between the molten magma of the
earth's interior and the surface, eruptions take place whereby
quantities of lava and fragmentary materials are heaped round each
orifice of discharge. A typical volcanic mountain takes the form of a
perfect cone, but as it grows in size and its main vent is choked, while
the sides of the cone are unable to withstand the force of the
explosions or the pressure of the ascending column of lava, eruptions
take place laterally, and numerous parasitic cones arise on the flanks
of the parent mountain. Where lava flows out from long fissures, it may
pile up vast sheets of rock, and bury the surrounding country under
several thousand feet of solid stone, covering many hundreds of square
miles. In this way volcanic tablelands have been formed which, attacked
by the denuding forces, are gradually trenched by valleys and ravines,
until the original level surface of the lava-field may be almost or
wholly lost. As striking examples of this physiographical type reference
may be made to the plateau of Abyssinia, the Ghats of India, the
plateaux of Antrim, the Inner Hebrides and Iceland, and the great
lava-plains of the western territories of the United States.
Public-domain text, read in full here on John Shaqi.
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