The Elements of Geology; Adapted to the Use of Schools and CollegesLoomis, Justin R. (Justin Rudolph)
Science
The Elements of Geology; Adapted to the Use of Schools and Colleges
Loomis, Justin R. (Justin Rudolph)
Geology
If the ocean could ever have been above its present level sufficiently
to have covered all the sedimentary rocks, we might assume that the
height of mountains has not been changed. But the level of the ocean
cannot be subject to much variation. The total amount of water on the
globe is always the same. If the continents and mountains were all
submerged at once, and the waters were expanded by the highest
temperature consistent with the liquid form, there would not be a change
of level of more than two hundred and fifty feet. We may assume, then,
that the ocean level has always been essentially the same that it now
is. We must therefore conclude that the sedimentary rocks, and the
mountains of which they form a part, have been elevated to their present
position from the bed of the sea.
Different mountain ranges have been elevated at different periods. The
silurian and carboniferous formations were deposited before the
Alleghany Mountains, which they contributed to form, were elevated;
while the new red sandstone and the cretaceous and tertiary formations
were deposited subsequently to the upheaval. They are accordingly found
at the base of the range, nearly horizontal, and have risen above the
level of the ocean only as the continent generally has risen. The
Pyrenees were elevated after the deposition of the cretaceous rocks, and
have carried them up so that they appear at a high angle, while the
tertiary rocks at the base are horizontal, as in the United States. The
Andes have carried up the tertiary rocks with them, and their elevation
must therefore belong to a recent period. It appears that they are even
yet rising.
It has recently been shown that the Alps have been subjected to upheaval
at several distinct periods. At the close of the silurian period they
formed a cluster of islands. At the commencement of the tertiary period
they became a mountain range, and at the close of that period they were
thrown up some two thousand feet higher, to their present position.
Nearly the same things will probably be found true of other mountain
ranges, when their structure has been minutely studied.
The elevation of contiguous parallel ridges will necessarily leave
intervening _valleys of elevation_. As mountain ranges generally consist
of several such ridges, valleys of this description are numerous, and
they are often of great extent.
Public-domain text, read in full here on John Shaqi.
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