=Volcanic action and deformation.= Volcanoes do not occur on wide
plains or among ancient mountains. On the other hand, where movements
of the earth's crust are in progress in the uplift of high plateaus,
and still more in mountain making, molten rock may reach the surface,
or may be driven upward toward it forming great intrusive masses. Thus
extensive lava flows accompanied the upheaval of the block mountains
of western North America and the uplift of the Colorado plateau. A
line of recent volcanoes may be traced along the system of rift
valleys which extends from the Jordan and Dead Sea through eastern
Africa to Lake Nyassa. The volcanoes of the Andes show how conspicuous
volcanic action may be in young rising ranges. Folded mountains often
show a core of igneous rock, which by long erosion has come to form
the axis and the highest peaks of the range, as if the molten rock had
been squeezed up under the rising upfolds. As we decipher the records
of the rocks in historical geology we shall see more fully how, in all
the past, volcanic action has characterized the periods of great
crustal movements, and how it has been absent when and where the
earth's crust has remained comparatively at rest.
=The causes of deformation.= As the earth's interior, or nucleus, is
highly heated it must be constantly though slowly losing its heat by
conduction through the crust and into space; and since the nucleus is
cooling it must also be contracting. The nucleus has contracted also
because of the extrusion of molten matter, the loss of constituent
gases given off in volcanic eruptions, and (still more important) the
compression and consolidation of its material under gravity. As the
nucleus contracts, it tends to draw away from the cooled and solid
crust, and the latter settles, adapting itself to the shrinking
nucleus much as the skin of a withering apple wrinkles down upon the
shrunken fruit. The unsupported weight of the spherical crust develops
enormous tangential pressures, similar to the stresses of an arch or
dome, and when these lateral thrusts accumulate beyond the power of
resistance the solid rock is warped and folded and broken.
Since the planet attained its present mass it has thus been lessening
in volume. Notwithstanding local and relative upheavals the earth's
surface on the whole has drawn nearer and nearer to the center. The
portions of the lithosphere which have been carried down the farthest
have received the waters of the oceans, while those portions which
have been carried down the least have emerged as continents.
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