Field book of common rocks and minerals : $b for identifying the rocks and minerals of the United States and interpreting their origins and meaningsLoomis, Frederic Brewster
Science
Field book of common rocks and minerals : $b for identifying the rocks and minerals of the United States and interpreting their origins and meanings
Loomis, Frederic Brewster
Minerals -- United States; Rocks -- United States
The sands from different localities differ greatly. The streams gather
the rock particles, and sort them according to the size, which the water
flowing at any given rate can carry. When the water is slowed down, it
drops all the particles above the size which the new rate of speed can
handle. The grains of sand from the bed of a stream are usually more or
less angular. The further they are carried, the more they are knocked
together and rounded; so that after being carried to the sea, and then
thrown up on the beaches, they have been well rounded, especially the
larger grains. As the air is less viscid than the water, sand which is
transported by the wind, is even more rounded; so that desert sands show
the most complete rounding, indeed are even polished; and this is true
even of the smaller grains. It is the wind-blown, or desert sands, which
flow so evenly in an hourglass. Between the angular residual sands and
the polished desert sands, there are of course all grades. Glacial sands
are angular or “sharp” almost to the degree characteristic of residual
sands; and lake-shore sands are between river sands and sea sands in the
degree of rounding.
Sands made of particles of lime, _calcareous sands_, are less resistant
to wear than are those of quartz. In regions where the water is “soft”
(free from lime), they do not last long, as they are dissolved; but in a
limestone region where the water is “hard” (saturated with lime), the
grains are not so quickly dissolved and may accumulate into beds of
great thickness, as in Florida. Along some shores of the ocean, there
occur “green sands,” which are ordinary quartz sands mixed with the dark
green mineral glauconite, which is a potassium iron silicate, forming on
the ocean bottom as a result of the action of decaying animal matter on
iron-bearing clays and potassium-bearing silicates, like feldspar. This
is particularly characteristic of some of the sands along the coast of
New Jersey.
In places, especially in the beds of rivers, there occur “quicksands.”
This is a deposit of fine sand, mixed with a considerable amount of
clay, and saturated with water; so that it will not support the weight
of a man or an animal. Much that goes under the name of quicksand is a
fluid mud, covered with a thin layer of sand.
Public-domain text, read in full here on John Shaqi.
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