Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
The subterranean forces concerned in the formation of rocks are chiefly
various manifestations of that enormous tangential pressure developed in
the earth’s crust, partly by the cooling and shrinkage of its interior,
but largely, it is probable, by the diminution of the velocity of the
earth’s rotation by tidal friction, and the consequent diminution of the
oblateness of its form. It is well known that the centrifugal force
arising from the earth’s rotation is sufficient to change the otherwise
spherical form of the earth to an oblate spheroid, with a difference of
twenty-six miles between the equatorial and polar diameters. It is also
well known that while the earth turns from west to east on its axis, the
tidal wave moves around the globe from east to west, thus acting like a
powerful friction-brake to stop the earth’s rotation. Our day is
consequently lengthening, and the earth’s form as gradually approaching
the perfect sphere. This means a very decided shortening and consequent
crumpling of the equatorial circumference, and is equivalent to a marked
shrinkage of the earth’s interior, so far as the equatorial regions are
concerned.
The most important and direct result of the horizontal thrust, whether
due to cooling or tidal friction, is the corrugation or wrinkling of
the crust; and the earth-wrinkles are of three orders of
magnitude,—continents, mountain-ranges, and rock-folds or arches.
Continents and ocean-basins, although the most important and permanent
structural features of the earth’s crust, do not demand further
consideration here, since their forms and relations are adequately
described in the better text-books of physical geography. The forms and
distribution of mountain-ranges might be dismissed in the same way; but,
unlike continents, the structure of mountains, upon which their reliefs
mainly depend, is quite fully exposed to our observation, and is one of
the most important fields of the student of structural geology.
Mountains, however, as previously explained, combine nearly all the
kinds of structure produced by the subterranean agencies, and their
consideration, therefore, belongs at the end rather than the beginning
of this section.
INCLINED OR FOLDED STRATA.—Normally, strata are horizontal, and dikes
and veins are vertical or nearly so. Hence the stratified rocks are more
exposed to the crumpling action of the tangential pressure in the
earth’s crust than the eruptive and vein rocks; and it is for this
reason and partly because the stratified rocks are vastly more abundant
than the other kinds, that the effects of the corrugation of the crust
are studied chiefly in the former. But it should be understood that
folded dikes and veins are not uncommon.
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