Geology: The Science of the Earth's CrustMiller, William J. (William John)
Philosophy
Geology: The Science of the Earth's Crust
Miller, William J. (William John)
Geology
If a portion of the relatively rugged land surface should become
submerged under the sea, a very irregular, deeply indented shore line
would result, due to the entrance of tidewater into the valleys. The
deeply indented coast of Maine is a fine example of a very irregular
youthful shore line produced by geologically recent sinking of a
rugged, hilly region so that tidewater backs for miles into the
lower reaches of the river valleys. The promontories and islands are
undergoing rapid wear, and the development of bars across the inlets
has scarcely begun. Other excellent examples are the coasts of Norway
and southern Alaska. Such a coast is then attacked by the ocean waves
and the promontories are cut back until the broad shallow water shelf
is formed, after which sand bars are built across the remaining
embayments and the shore line becomes relatively regular.
It is, then, a remarkable fact that, whether shore lines originate
by emergence of sea bottom, or by sinking of land, there is a very
strong tendency on the part of nature to develop regular shore lines.
It should be stated that the principles of wave work and shore-form
development just outlined apply almost equally well to lakes,
especially large ones.
Before leaving this subject of shore-line development, mention should
be made of the fact that bars and beaches are often built part way
or wholly across embayments of the coast with surprising rapidity.
To illustrate, Sandy Hook, New Jersey, is advancing northward, while
Rockaway Beach, New York, is extending westward, the tendency being
to close up the entrance to New York harbor and to make the line of
seashore more nearly regular. Records show that Rockaway Beach actually
advanced westward more than three miles between the years 1835 and
1908.
CHAPTER V
GLACIERS AND THEIR WORK
A glacier may be defined as a mass of flowing ice. The motion may
not be that of flowage in the usually accepted sense of the term. A
discussion of the various theories of glacier motion will not here be
attempted. Glaciers form only in regions of perpetual snow, but they
commonly move down far below the line of perpetual snow of any given
region. In the polar regions they may form near sea level, while in the
tropics they form at altitudes of two to three miles, and there only
rarely. In southern Alaska, the lower limit of perpetual snow is about
5,000 feet above sea level, and many of the glaciers come down to sea
(Plate 4), while in the Alps, the lower limit of perpetual snow is at
about 9,000 feet, and the glaciers descend as much as 5,000 feet below
it.
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