=The invisible load of streams.= Of the waste which a river transports
we may consider first the invisible load which it carries in solution,
supplied chiefly by springs but also in part by the run-off and from
the solution of the rocks of its bed. More than half the dissolved
solids in the water of the average river consists of the carbonates of
lime and magnesia; other substances are gypsum, sodium sulphate
(Glauber's salts), magnesium sulphate (Epsom salts), sodium chloride
(common salt), and even silica, the least soluble of the common
rock-making minerals. The amount of this invisible load is
surprisingly large. The Mississippi, for example, transports each year
113,000,000 tons of dissolved rock to the Gulf.
=The visible load of streams.= This consists of the silt which the
stream carries in suspension, and the sand and gravel and larger
stones which it pushes along its bed. Especially in times of flood one
may note the muddy water, its silt being kept from settling by the
rolling, eddying currents; and often by placing his ear close to the
bottom of a boat one may hear the clatter of pebbles as they are
hurried along. In mountain torrents the rumble of bowlders as they
clash together may be heard some distance away. The amount of the load
which a stream can transport depends on its velocity. A current of two
thirds of a mile per hour can move fine sand, while one of four miles
per hour sweeps along pebbles as large as hen's eggs. The transporting
power of a stream varies as the sixth power of its velocity. If its
velocity is multiplied by two, its transporting power is multiplied by
the sixth power of two: it can now move stones sixty-four times as
large as it could before.
Stones weigh from two to three times as much as water, and in water
lose the weight of the volume of water which they displace. What
proportion, then, of their weight in air do stones lose when
submerged?
Public-domain text, read in full here on John Shaqi.
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