The method of rock study by thin microscopic sections is one of
comparatively recent origin. It is scarcely more than a dozen years
since the process was fairly adopted by mineralogists. The value of the
method is based upon the fact that every crystalline mineral has certain
definite optical properties. Therefore, when a crystalline mineral is
distorted or misshapen so as to be incapable of identification by the
ordinary method, it can be at once identified by its optical examination
in the manner just described. In this way not only can one mineral be
distinguished from another, but the crystalline system to which it
belongs can be accurately pointed out. The value of the method is well
summed up by Merrill,[21] who says that it is not merely an aid in
determining the mineralogical composition of a rock, but also, which is
often much more important, its structure and the various changes which
have taken place in it since its first consolidation. Rocks are not the
definite and unchangeable mineral compounds they were once considered,
but are rather ever varying aggregates of minerals which even in
themselves undergo structural and chemical changes almost without
number.
Another valuable result of such a study is illustrated by the discovery
that the structural features of a rock are not dependent upon its
chemical composition or geologic age, but upon the conditions under
which it cooled from the molten magma. Portions of the same rock may
vary all the way from a wholly crystalline to a pure vitreous form.
Some typical microstructures of crystalline rocks are shown in the
accompanying figures 1–6.[22]
Although this method of study has thus far been confined mainly to
crystalline rocks, its efficiency is by no means limited to them. The
fragmental rocks and their decomposed débris to which the name soil is
given are equally worthy of study by this method. Indeed, the full value
of a chemical analysis of any rock or soil can not be ascertained unless
such an analysis is accompanied by a microscopic examination. It is
desirable to know not merely what there is in any soil, but in what form
these compounds exist. To this latter question the chemical analysis as
ordinarily made will give no clew. In Germany a beginning has been made
in this line of work, and American scientists are beginning to realize
its importance. An outline of this method of analysis will be given in
the proper place.
=29. Specific Gravity.=—Much information in regard to the properties of
a rock, or mineral constituent thereof, may be derived from its specific
gravity.
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