A century of science in America : $b with special reference to the American Journal of Science, 1818-1918
History
A century of science in America : $b with special reference to the American Journal of Science, 1818-1918
American journal of science; Science -- United States -- History
Nevertheless, all students of orogeny are agreed that profound
compressive forces have been the chief agents in developing mountain
structures. Chamberlin was the first to arrive at the idea that the
shrinkage may originate in the deeper portions of the earth under the
urgency of the enormous pressures, apparently by giving rise to slow
recombinations of matter into denser forms.[94]
_The New Era in the Interpretation of Mountain Structures._
In the meantime, between 1874 and 1904, another advance in the knowledge
of mountain structures was taking place in Europe. Suess studied the
distribution of mountain arcs over the earth and dwelt upon the
prevalence of overthrust structures; the backland being thrust toward
and over the foreland, the rise of the mountain arc or geanticline
depressing the foredeep or geosyncline. Bertrand and Lugeon from 1884 to
1900 were reinterpreting the Alpine structures on this basis. They
showed that the whole mountain system had been overturned and overthrust
from the south to an almost incredible degree. Enormous denudation had
later dissevered the northern outlying portions and given rise to
“mountains without roots,”—isolated outliers, consisting of overturned
masses of strata which had accumulated as sediments far to the southward
in another portion of the ancient geosyncline.
On a smaller scale similar phenomena are exhibited in the Appalachians.
Willis showed that the deep subsidence of the center of the geosyncline
gave an initial dip which determined the position of yielding under
compression. Laboratory experiments brought out the weakness of the
stratigraphic structure to resist horizontal compression. The nature of
the stratigraphic series was shown to determine whether the yielding
would be by mashing, competent folding, or breakage and overthrust. The
problem of mountain structures was thus brought into the realm of
mechanics. These results were published in three sources in 1893,—the
Transactions of the American Institute of Mining Engineers, the
thirteenth annual report of the United States Geological Survey, and the
Journal (=46=, 257, 1893).
Finally should be noted the contributions of the Lake Superior school of
geology, in which the work of Van Hise stands preeminent. Under the
economic stimulus given by the discovery and development of enormously
rich bodies of iron ore, hidden under Pleistocene drift and involved in
the complex structures of vanished mountain systems of ancient date,
structural geology and metamorphism have become exact sciences to be
drawn upon in the search for mineral wealth and yielding also rich
returns in a fuller knowledge of early periods of earth history.
_Crust Movements as Revealed by Physiography._
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