Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
One of the most common varieties is where a portion, frequently a large
portion, of the feldspar comes out in the form of distinct, separate
crystals, producing a porphyritic texture. Specimens 5, 6, and 7 are
examples of porphyritic felsite; and after examining these we can no
longer doubt that feldspar is an important constituent of the rock.
Petrosilex and felsite are more generally porphyritic than any other
rocks; and they are commonly called porphyry. It is better, however,
since almost any rock may be porphyritic, and since this texture cannot
be correlated with any particular composition, not to use porphyry as a
rock-name, but simply as the name of a very important rock-texture. The
banded and porphyritic textures are about equally characteristic of
petrosilex and felsite. In petrosilex, quartz, as well as feldspar, is
sometimes porphyritically developed, forming the variety known as
quartz-porphyry. There is no limit to the proportion of the quartz and
feldspar which may crystallize out in this way, and thus we find a
perfectly gradual passage from normal petrosilex or felsite to
thoroughly crystalline granite and syenite.
Andesite.—This rock has nearly the texture of rhyolite and trachyte, but
is darker and heavier, and corresponds in composition to diorite,
consisting of plagioclase and hornblende, with usually more or less
sanidine, quartz, augite, biotite, and magnetite.
Basalt.—The rock bearing this familiar name represents diabase among the
dike rocks. It is the most basic of the volcanic rocks, and consists of
the more basic varieties of plagioclase, especially labradorite, with
augite, magnetite, and titanic iron. Olivine is a very common and
characteristic constituent, and the plagioclase is often replaced in
part by leucite and nephelite. The basalts are usually black, and of
high specific gravity; and vary in texture from compact to coarsely
crystalline. The contraction due to cooling frequently results in the
development of a columnar structure of remarkable regularity, the
columns being normally hexagonal and standing perpendicularly to the
cooling surfaces of the mass. This structure occurs in other eruptive
rocks, but is most characteristic of basalt.
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