A slab of sandstone laid on another of the same kind at an angle of
17° and left in the open air was found to creep down the slope at the
rate of a little more than a millimeter a month. Explain why it did
so.
=Rain.= The most efficient agent in the carriage of waste to the
streams is the rain. It moves particles of soil by the force of the
blows of the falling drops, and washes them down all slopes to within
reach of permanent streams. On surfaces unprotected by vegetation, as
on plowed fields and in arid regions, the rain wears furrows and
gullies both in the mantle of waste and in exposures of unaltered rock
(Fig. 17).
At the foot of a hill we may find that the soil has accumulated by
creep and wash to the depth of several feet; while where the hillside
is steepest the soil may be exceedingly thin, or quite absent, because
removed about as fast as formed. Against the walls of an abbey built
on a slope in Wales seven hundred years ago, the creeping waste has
gathered on the uphill side to a depth of seven feet. The slow-flowing
sheet of waste is often dammed by fences and walls, whose uphill side
gathers waste in a few years so as to show a distinctly higher surface
than the downhill side, especially in plowed fields where the movement
is least checked by vegetation.
=Talus.= At the foot of cliffs there is usually to be found a slope of
rock fragments which clearly have fallen from above (Fig. 8). Such a
heap of waste is known as _talus_. The amount of talus in any place
depends both on the rate of its formation and the rate of its removal.
Talus forms rapidly in climates where mechanical disintegration is
most effective, where rocks are readily broken into blocks because
closely jointed and thinly bedded rather than massive, and where they
are firm enough to be detached in fragments of some size instead of in
fine grains. Talus is removed slowly where it decays slowly, either
because of the climate or the resistance of the rock. It may be
rapidly removed by a stream flowing along its base.
[Illustration: Fig. 8. Talus at Foot of Granite Cliffs, Sierra
Nevada Mountains]
In a moist climate a soluble rock, such as massive limestone, may form
talus little if any faster than the talus weathers away. A
loose-textured sandstone breaks down into incoherent sand grains,
which in dry climates, where unprotected by vegetation, may be blown
away as fast as they fall, leaving the cliff bare to the base. Cliffs
of such slow-decaying rocks as quartzite and granite when closely
jointed accumulate talus in large amounts.
[Illustration: Fig. 9. Diagram Illustrating Retreat of Cliff,
_c_, and Talus, _t_]
Public-domain text, read in full here on John Shaqi.
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