The Elements of Geology; Adapted to the Use of Schools and Colleges — John Shaqi
The Elements of Geology; Adapted to the Use of Schools and CollegesLoomis, Justin R. (Justin Rudolph)
Science
The Elements of Geology; Adapted to the Use of Schools and Colleges
Loomis, Justin R. (Justin Rudolph)
Geology
It will be shown hereafter that a part of the unstratified rocks have
been formed at or near the surface of the earth; that is, they have
taken their present form by passing from a state of fusion to a solid
state above or between the stratified rocks, as in the case of lava
(Fig. 2, A). The other unstratified rocks have cooled so as to take the
solid form below the stratified rocks, as at B. The first are called
_epigene_, or _volcanic rocks_; the last, _hypogene_, or _plutonic
rocks_.
The lowest portion of the second division, the stratified rocks, are
termed _non-fossiliferous_, from the fact that they contain no evidence
of the existence of organic beings at the time when they were deposited.
Their relation to the other rocks is shown at C. It is supposed that
these rocks have been subjected to great changes by heat from the
igneous rocks below them. On this account Mr. Lyell proposes to call
them _metamorphic rocks_. The other portions of the stratified rocks are
_fossiliferous_, containing the remains of organic beings which lived at
the period when the rocks were deposited. They are represented at D. The
division of the last-named rocks info groups will be given hereafter.
[Illustration: Fig. 2.]
We have then four principal classes of rocks: _Plutonic Rocks_,
_Volcanic Rocks_, _Non-fossiliferous Stratified Rocks_ and
_Fossiliferous Rocks_.
SECTION II.--THE PLUTONIC ROCKS.
Granite is by far the most important of this class of rocks. Of its
thickness no estimate can be made, as no mining operations have ever
penetrated through it, and none of the most extensive displacements of
rocks by natural causes has brought to the surface any other rock on
which it rests. It may, therefore, be considered the foundation rock,
the skeleton of the earth, upon which all the other formations are
supported. The whole amount of granite in the earth's crust may be
greater than that of all other rocks, but it comes up through the other
formations so as to be exposed over only a comparatively small portion
of the surface, and this is generally the central portion of mountain
ranges, or the highest parts of broken, hill country. Still, it is not
unfrequently found in the more level regions, in the form of slightly
elevated ridges, with the stratified rocks reclining against it.
The structure of granite seems frequently to be a confused mixture of
the minerals which compose it, without any approach to order in their
arrangement; but in many cases it is found to split freely in certain
directions, and to work with difficulty in any other. This may result
from an arrangement of the integrant crystals, so that their cleavage
planes approach more or less nearly to parallelism. When this is the
case with the mica or felspar, it must diminish the cohesion in a
direction perpendicular to these planes, and thus facilitate the
cleavage of the mass.
[Illustration: Fig. 3.]
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