Harper's New Monthly Magazine, No. VI, November 1850, Vol. I — John Shaqi
Harper's New Monthly Magazine, No. VI, November 1850, Vol. IVarious
History
Harper's New Monthly Magazine, No. VI, November 1850, Vol. I
Various
American literature -- Periodicals; Civilization -- Periodicals; Culture -- Periodicals
With the assistance of water and fire, which have befriended the
magicians of every age, contradictions of a more marvelous character may
be exhibited, and even the secret art revealed of handling red-hot
metals, and passing through the fiery ordeal. If we take a platinum
ladle, and hold it over a furnace until it becomes of a bright red heat,
and then project cold water into its bowl, we shall find that the water
will remain quiescent and give no sign of ebullition--not so much as a
single "fizz;" but, the moment the ladle begins to cool, it will boil up
and quickly evaporate. So also, if a mass of metal, heated to whiteness,
be plunged in a vessel of cold water, the surrounding fluid will remain
tranquil so long as the glowing white heat continues; but, the moment
the temperature falls, the water will boil briskly. Again--if water be
poured upon an iron sieve, the wires of which are made red hot, it will
not run through; but, on the sieve cooling, it will run through rapidly.
These contradictory effects are easily accounted for. The repelling
power of intense heat keeps the water from immediate contact with the
heated metal, and the particles of the water, collectively, retain their
globular form; but, when the vessel cools, the repulsive power
diminishes, and the water coming into closer contact with the heated
surface its particles can no longer retain their globular form, and
eventually expand into a state of vapor. This globular condition of the
particles of water will account for many very important phenomena;
perhaps it is best exhibited in the dew-drop, and so long as these
globules retain their form, water will retain its fluid properties. An
agglomeration of these globules will carry with them, under certain
circumstances, so much force that it is hardly a contradiction to call
water itself a solid. The water-hammer, as it is termed, illustrates
this apparent contradiction. If we introduce a certain quantity of water
into a long glass tube, when it is shaken, we shall hear the ordinary
splashing noise as in a bottle; but, if we exhaust the air, and again
shake the tube, we shall hear a loud ringing sound, as if the bottom of
the tube were struck by some hard substance--like metal or wood--which
may fearfully remind us of the blows which a ship's side will receive
from the waves during a storm at sea, which will often carry away her
bulwarks.
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