A Manual of Elementary Geology: or, The Ancient Changes of the Earth and its Inhabitants as Illustrated by Geological MonumentsLyell, Charles, Sir
Science
A Manual of Elementary Geology: or, The Ancient Changes of the Earth and its Inhabitants as Illustrated by Geological Monuments
Lyell, Charles, Sir
Geology
In my account of Canada and the United States, published in 1845, I
announced the conclusion to which I had then arrived, that to explain
the position of the erratics and the polished surfaces of rocks, and
their striae and flutings, we must assume first a gradual submergence of
the land in North America, after it had acquired its present outline of
hill and valley, cliff and ravine, and then its re-emergence from the
ocean. When the land was slowly sinking, the sea which bordered it was
covered with islands of floating ice coming from the north, which, as
they grounded on the coast and on shoals, pushed along such loose
materials of sand and pebbles as lay strewed over the bottom. By this
force all angular and projecting points were broken off, and fragments
of hard stone, frozen into the lower surface of the ice, had power to
scoop out grooves in the subjacent solid rock. The sloping beach, as
well as the floor of the ocean, might be polished and scored by this
machinery; but no flood of water, however violent, or however great the
quantity of detritus or size of the rocky fragments swept along by it,
could produce such long, perfectly straight and parallel furrows, as are
everywhere visible in the Niagara district, and generally in the region
north of the 40th parallel of latitude.[135-B]
By the hypothesis of such a slow and gradual subsidence of the land we may
account for the fact that almost everywhere in N. America and Northern
Europe the boulder formation rests on a polished and furrowed surface of
rock,--a fact by no means obliging us to imagine, as some think, that the
polishing and grooving action was, as a whole, anterior in date to the
transportation of the erratics. During the successive depression of high
land, varying originally in height from 1000 to 3000 feet above the
sea-level, every portion of the surface would be brought down by turns to
the level of the ocean, so as to be converted first into a coast-line, and
then into a shoal; and at length, after being well scored by the stranding
upon it of thousands of icebergs, might be sunk to a depth of several
hundred fathoms. By the constant depression of land, the coast would recede
farther and farther from the successively formed zones of polished and
striated rock, each outer zone becoming in its turn so deep under water as
to be no longer grated upon by the heaviest icebergs. Such sunken areas
would then simply serve as receptacles of mud, sand, and boulders dropped
from melting ice, perhaps to a depth scarcely, if at all, inhabited by
testacea and zoophytes. Meanwhile, during the formation of the unstratified
and unfossiliferous mass in deeper water, the smoothing and furrowing of
shoals and beaches is still going on elsewhere upon and near the coast in
full activity. If at length the subsidence should cease, and the direction
of the movement of the earth's crust be reversed, the sunken area covered
with drift would be slowly reconverted into land. The boulder deposit,
Public-domain text, read in full here on John Shaqi.
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