According to the authority of the National Museum[20] it may occur,
either in the form of stratified beds, eruptive masses, sheets or dikes,
or as veins and other chemical deposits of comparatively little
importance as regards size and extent. The mineral composition of rocks
is greatly simplified by the wide range of conditions under which the
commonest minerals can be formed. Thus quartz, feldspar, mica, the
minerals of the hornblende, or pyroxene group, can be formed from a mass
cooling from a state of fusion; they may be crystallized from solution,
or be formed from volatilized products. They are therefore the commonest
of minerals and are rarely excluded from rocks of any class, since there
is no process of rock formation which determines their absence.
Most of the common minerals, like the feldspars, micas, hornblendes,
pyroxenes, and the alkaline carbonates possess the capacity of adapting
themselves to a very considerable range of compositions. In the
feldspars, for example, lime, soda, or potash may replace one another
almost indefinitely, and it is now commonly assumed that true species do
not exist, but all are but isomorphous admixtures passing into one
another by all gradations, and the names albite, oligoclase, anorthite,
etc., are to be used only as indicating convenient stopping and starting
points in the series. Hornblende or pyroxene, further, may be pure
silicate of lime and magnesia, or iron and manganese may partially
replace these substances. Lime carbonate may be pure, or magnesia may
replace the lime in any proportion.
These illustrations are sufficient to show the reason for the great
simplicity of rock masses as regards their chief mineral constituents.
Whatever may be the conditions of the origin of a rock mass, the
probabilities are that it will be formed essentially of one or more of a
half a dozen minerals in some of their varieties.
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