Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
As we should naturally expect, the triclinic feldspars occur usually
with other basic minerals, while the monoclinic species, orthoclase, is
acidic in its associations; furthermore, the triclinic feldspars are
often intimately associated with each other, but are rarely important
constituents of rocks containing much orthoclase. In other words, the
distinction of orthoclase from the basic or triclinic feldspars is
important and comparatively easy, while the distinction of the different
basic feldspars from each other is both unimportant and difficult.
Hence, in lithology, we find it best to put all these basic feldspars
together, as if they were one species, under the name _plagioclase_,
which refers to the oblique cleavage of all these feldspars, and
contrasts with _orthoclase_, which refers to the right-angled cleavage
of that species.
This statement of the relations of the feldspars is, of course, beyond
the comprehension of many children, and yet it should be understood by
the teacher who would lead the children to any but the most superficial
views.
15. Orthoclase.—This is the common feldspar, and the most abundant of
all minerals, being the principal constituent of granite, gneiss, and
many other important rocks. The most characteristic colors are white,
gray, pinkish, and flesh-red. Specimen 22.
16. Plagioclase.—Like orthoclase, these species may be of almost any
color; yet these two great divisions of the feldspars are usually
contrasted in this respect. Thus, bluish and grayish colors are most
common with plagioclase, and white or reddish colors with orthoclase.
Specimen 23 is labradorite, and, in every respect, a typical example of
plagioclase. On certain faces and cleavage-surfaces of the plagioclase
crystals we may often observe a series of straight parallel lines or
bands which are often very fine,—fifty to a hundred in a single crystal.
These striæ are due to the mode of twinning, and are of especial
importance, since, while they are very characteristic of plagioclase,
they never occur in orthoclase. As stated, these twinning striæ in
plagioclase are often visible to the naked eye; and when they are not,
they may usually be revealed by examining a thin section under the
microscope with polarized light. Plagioclase decays much more rapidly
when exposed to the weather than orthoclase. This point becomes
perfectly clear when we compare weathered ledges of diabase (or any
trap-rock, see specimen 2) and granite; for plagioclase is the principal
constituent of the former rock, and orthoclase of the latter.
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