A Manual of Elementary Geology: or, The Ancient Changes of the Earth and its Inhabitants as Illustrated by Geological Monuments — John Shaqi
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
This alternation of different kinds of rock produces the most distinct
stratification; and we often find beds of limestone and marl, conglomerate
and sandstone, sand and clay, recurring again and again, in nearly regular
order, throughout a series of many hundred strata. The causes which may
produce these phenomena are various, and have been fully discussed in my
treatise on the modern changes of the earth's surface.[14-A] It is there
seen that rivers flowing into lakes and seas are charged with sediment,
varying in quantity, composition, colour, and grain according to the
seasons; the waters are sometimes flooded and rapid, at other periods low
and feeble; different tributaries, also, draining peculiar countries and
soils, and therefore charged with peculiar sediment, are swollen at
distinct periods. It was also shown that the waves of the sea and
currents undermine the cliffs during wintry storms, and sweep away
the materials into the deep, after which a season of tranquillity
succeeds, when nothing but the finest mud is spread by the movements
of the ocean over the same submarine area.
It is not the object of the present work to give a description of these
operations, repeated as they are, year after year, and century after
century; but I may suggest an explanation of the manner in which some
micaceous sandstones have originated, those in which we see innumerable
thin layers of mica dividing layers of fine quartzose sand. I observed the
same arrangement of materials in recent mud deposited in the estuary of La
Roche St. Bernard in Brittany, at the mouth of the Loire. The surrounding
rocks are of gneiss, which, by its waste, supplies the mud: when this dries
at low water, it is found to consist of brown laminated clay, divided by
thin seams of mica. The separation of the mica in this case, or in that of
micaceous sandstones, may be thus understood. If we take a handful of
quartzose sand, mixed with mica, and throw it into a clear running stream,
we see the materials immediately sorted by the water, the grains of quartz
falling almost directly to the bottom, while the plates of mica take a much
longer time to reach the bottom, and are carried farther down the stream.
At the first instant the water is turbid, but immediately after the flat
surfaces of the plates of mica are seen alone reflecting a silvery light,
as they descend slowly, to form a distinct micaceous lamina. The mica is
the heavier mineral of the two; but it remains longer suspended, owing to
its great extent of surface. It is easy, therefore, to perceive that where
such mud is acted upon by a river or tidal current, the thin plates of mica
will be carried farther, and not deposited in the same places as the
grains of quartz; and since the force and velocity of the stream varies
from time to time, layers of mica or of sand will be thrown down
successively on the same area.
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