Geology: The Science of the Earth's Crust — John Stuart Mill — John Shaqi
Geology: The Science of the Earth's Crust
John Stuart Mill · en
The Yosemite Valley, about 7 miles long, less than one mile wide,
and from 2,000 to 4,000 feet deep, lies on the western slope of the
Sierra Nevada Mountains of California. Great cliffs of granite,
mostly from 1,000 to over 3,000 feet high, bound the valley on either
side. The floor of the valley is wide and remarkably flat (Plate 6).
Just prior to the Ice Age, by the processes of erosion already set
forth, the Merced River had carved out a great steep-sided V-shaped
canyon commonly from 1,000 to 3,000 feet deep. During the Ice Age,
two glaciers joined to form an extra deep powerful glacier, which
flowed through a deep part of the Merced Canyon and modified it into
the Yosemite Valley, essentially as we see it to-day. Because the ice
was shod with many fragments of hard rock (granite), and the pressure
at the bottom and lower sides of the glacier (several thousand feet
thick) was so great, the V-shaped stream-cut canyon was changed to a
U-shaped canyon with very steep to even vertical walls. A factor of
great importance which notably aided the erosive power of the glacier
in this case was the existence of an unusual number of large vertical
joint cracks in the granite in this local region. The plucking action
of the ice was thus very greatly facilitated and great slabs of rock,
separated by the vertical joints, especially toward the lower sides
and bottom of the valley, were pushed away one after another by the
ice. When the ice disappeared, great precipitous joint faces from 1,000
to 3,000 feet high were left along the valley sides. At its lower
end the glacier left a dam of glacial débris (moraine) across the
valley, thus causing a lake to form over the valley floor. The wide
flat bottom of the valley was caused by filling up of the lake with
sediment. The uniqueness of the Yosemite Valley is, then, due to a
remarkable combination of several main factors; one, the presence of
a large swift river well supplied with tools which carved out a deep
V-shaped canyon; two, a mighty glacier which plowed its way through
this canyon and converted it by erosion into a U-shaped canyon;
three, the weakening of the rock by many joint cracks, thus greatly
facilitating the ice erosion; and four, a postglacial lake covering
the valley floor which became filled with sediment. As a result of the
ice work, several streams, tributary to the main stream (Merced River)
which flows through the bottom of the valley, were forced to plunge
over great vertical rock walls (joint faces), thus producing high and
beautiful true waterfalls, including the very high Upper Yosemite Fall
where Yosemite Creek makes a straight drop of 1,430 feet. A tributary
valley like that of Yosemite Creek, which ends abruptly well above
the main valley, is known as a "hanging" valley. The valley of Bridal
Veil Creek is another good example. (See Plate 6.) Valleys which were
once occupied by active glaciers are generally characterized by their