Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
Granite.—Granite (from the Latin _granum_, a grain) is a
crystalline-granular rock, agreeing in composition with gneiss. The
essential constituents are quartz and orthoclase; and when they alone
are present we have the variety _binary granite_. Mica, however
(commonly muscovite, sometimes biotite, and frequently both) is usually
added to these, forming _micaceous granite_ (specimen 44); and often
hornblende, forming _hornblendic granite_ (specimen 45). The orthoclase
is sometimes replaced in part by triclinic species, especially albite
and oligoclase. Accessory minerals are not so abundant in granite as in
gneiss; but, besides those named, garnet, tourmaline, pyrite, apatite,
and chlorite are most common. Orthoclase is always the predominant
ingredient; and, except when there is much hornblende present, usually
determines the color of the granite. Thus, specimens 44 and 45 are gray
because they contain gray orthoclase; while all red granites contain red
or pink orthoclase. The quartz has usually been the last of the
constituents to crystallize or solidify; and, having been thus obliged
to adapt itself to the contours of the orthoclase and mica, it is rarely
observed in distinct crystals.
In texture, the granites vary from perfectly compact varieties,
approaching petrosilex, to those which are so coarsely crystalline that
single crystals of orthoclase measure several inches in length. Of
course one of the most important things to be observed about granite,
especially in comparing it with gneiss, is the complete absence of
anything like stratification; that, as before stated, being the only
important distinction between the two rocks. Gneiss is the most abundant
of all stratified rocks, and granite stands in the same relation to the
eruptive series.
Syenite.—This is an instance where stratified and eruptive rocks,
agreeing in composition, have the same name. That rocks consisting of
orthoclase, of orthoclase and hornblende, or of orthoclase and mica,
_i.e._, having the composition of syenite, do occur in both the eruptive
and stratified series there can be no doubt. They should, however, have
distinct names on account of their unlike origins; and would have but
for the practical difficulty in determining, in many cases, whether the
rock is stratified or not. The best that we can do now, when we desire
to be specific, and have the necessary information, is to say stratified
syenite or eruptive syenite, as the case may be.
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