The combinations of the elements which are of most importance in the
constitution of the terrestrial crust consist of oxides. From the mean
of a large number of analyses of the rocks of the lower or primitive
portion of the crust, it has been ascertained that silica (SiO2) forms
almost 60% and alumina (Al2O3) upwards of 15% of the whole. The other
combinations in order of importance are lime (CaO) 4.90%, magnesia
(MgO) 4.36, soda (Na2O) 3.55, ferrous oxide (FeO) 3.52, potash (K2O)
2.80, ferric oxide (Fe2O3) 2.63, water (H2O) 1.52, titanium oxide
(TiO2) 0.60, phosphoric acid (P2O5) 0.22; the other combinations of
elements thus form less than 1% of the crust.
These different combinations of the elements enter into further
combinations with each other so as to produce the wide assortment of
simple minerals (see MINERALOGY). Thus, silica and alumina are
combined to form the aluminous silicates, which enter so largely into
the composition of the crust of the earth. The silicates of magnesia,
potash and soda constitute other important families of minerals. A
mass of material composed of one, but more usually of more than one
mineral, is known as a _rock_. Under this term geologists are
accustomed to class not only solid stone, such as granite and
limestone, but also less coherent materials such as clay, peat and
even loose sand. The accessible portion of the earth's crust consists
of various kinds of rocks, which differ from each other in structure,
composition and origin, and are therefore susceptible of diverse
classifications according to the point of view from which they are
considered. The details of this subject will be found in the article
PETROLOGY.
_Classification of Rocks._--Various systems of classification of rocks
have been proposed, but none of them is wholly satisfactory. The most
useful arrangement for most purposes of the geologist is one based on
the broad differences between them in regard to their mode of origin.
From this point of view they may be ranged in three divisions:
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