Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
Volcanic rocks are rarely found in this part of the world; and specimens
of most of them are difficult to obtain. For this reason they can only
be noticed briefly here, since it is the plan of this Guide to give
especial attention only to those portions of the subject which can be
illustrated by material within easy reach of teachers.
Rhyolite.—This rock corresponds in composition with granite and gneiss,
but is less frequently micaceous. The orthoclase in rhyolite, and
generally in volcanic rocks, is the clear, pellucid variety—_sanidine_.
It is more difficult to separate from quartz than ordinary orthoclase,
the chief distinguishing feature being its cleavage. Plagioclase and
hornblende are common, but not abundant, constituents. The mica, when
present, is usually biotite. The texture of rhyolite is often more or
less distinctly porphyritic, having a finely crystalline or granular
matrix, with interspersed crystals of sanidine and quartz. The rock has
usually a rough, harsh feel; and while the coarser varieties have the
aspect of granite, the finer approach petrosilex; but all are somewhat
porous, which is seen in the lower specific gravity of rhyolite as
compared with granite and gneiss.
Trachyte.—In texture and general aspect rhyolite and trachyte are nearly
identical. Trachyte, however, is darker, contains little or no quartz,
and more hornblende and plagioclase. In fact, it agrees in composition
with syenite. This is one of the most important of the volcanic rocks.
Obsidian.—Obsidian is sharply distinguished from all other rocks by its
perfect vitreous texture; it is a true volcanic glass. Its surface
(specimen 47) is smooth and glassy, and its fracture eminently
conchoidal. To the naked eye, and usually under the microscope, the
typical variety is perfectly homogeneous; chemical analysis, however,
shows that it has the composition, commonly of rhyolite, but sometimes
of trachyte. Obsidian is, in fact, simply rhyolite or trachyte which,
cooling quickly, has not had time to crystallize, but has remained
permanently in the amorphous or glassy state. The composition is
sometimes partially revealed where a portion of the sanidine comes out
in distinct crystals porphyritically interspersed through the glass. The
homogeneity of the texture is sometimes disturbed: by numerous minute
concentric cracks, forming what is known as perlitic structure and the
variety perlite; by numerous small spherical concretions, forming the
spherulitic structure and the variety spherulite; and also by the
banding, which is the result of flowing while in a plastic state,
whereby portions of the glass of slightly different colors are drawn out
into layers and interlaminated. The bands are rarely continuous for any
distance, being usually merely elongated lenticular streaks. The glassy
state is generally one of inferior density, and hence we find that
obsidian is lighter than the crystalline rocks of the same composition.
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