The granite of Pikes Peak is disintegrated to a depth of twenty feet.
In the city of Washington granite rock is so softened to a depth of
eighty feet that it can be removed with pick and shovel. About
Atlanta, Georgia, the rocks are completely rotted for one hundred feet
from the surface, while the beginnings of decay may be noticed at
thrice that depth. In places in southern Brazil the rock is decomposed
to a depth of four hundred feet.
In southwestern Wisconsin a reddish residual clay has an average depth
of thirteen feet on broad uplands, where it has been removed to the
least extent. The country rock on which it rests is a limestone with
about ten per cent of insoluble impurities. At least how thick, then,
was that portion of the limestone which has rotted down to the clay?
=Distinguishing characteristics of residual waste.= We must learn to
distinguish waste formed in place by the action of the weather from
the products of other geological agencies. Residual waste is
unstratified. It contains no substances which have not been derived
from the weathering of the parent rock. There is a gradual transition
from residual waste into the unweathered rock beneath. Waste resting
on sound rock evidently has been shifted and was not formed in place.
In certain regions of southern Missouri the land is covered with a
layer of broken flints and red clay, while the country rock is
limestone. The limestone contains nodules of flint, and we may infer
that it has been by the decay and removal of thick masses of limestone
that the residual layer of clay and flints has been left upon the
surface. Flint is a form of quartz, dull-lustered, usually gray or
blackish in color, and opaque except on thinnest edges, where it is
translucent.
Over much of the northern states there is spread an unstratified stony
clay called the _drift_. It often rests on sound rocks. It contains
grains of sand, pebbles, and bowlders composed of many different
minerals and rocks that the country rock cannot furnish. Hence the
drift cannot have been formed by the decay of the rock of the region.
A shale or limestone, for example, cannot waste to a clay containing
granite pebbles. The origin of the drift will be explained in
subsequent chapters.
The differences in rocks are due more to their soluble than to their
insoluble constituents. The latter are few in number and are much the
same in rocks of widely different nature, being chiefly quartz,
silicate of alumina, and iron oxide. By the removal of their soluble
parts very many and widely different rocks rot down to a residual clay
gritty with particles of quartz and colored red or yellow with iron
oxide.
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