But notwithstanding the enormous velocity with which meteorites enter
the air they are soon slowed down to comparatively moderate speed, so
that when they disappear they are usually traveling not faster than a
mile a second. The courses of many have been traced by observers
situated along their track at various points, and thus a knowledge has
been obtained of their height above the ground during their flight and
of the length of their visible courses. They generally appear at an
elevation of eighty or a hundred miles, and are seldom visible after
having descended to within five miles of the ground, unless the
observer happens to be near the striking-point, when he may actually
witness the fall. Frequently they burst while high in the air and their
fragments are scattered like shrapnel over the surface of the ground,
sometimes covering an area of several square miles, but of course not
thickly; different fragments of the same meteorite may reach the ground
at points several miles apart. The observed length of their courses in
the atmosphere varies from fifty to five hundred miles. If they
continued a long time in flight after entering the air, even the
largest of them would probably be consumed to the last scrap, but their
fiery career is so short on account of their great speed that the heat
does not have time to penetrate very deeply, and some that have been
picked up immediately after their fall have been found cold as ice
within. Their size after reaching the ground is variable within wide
limits; some are known which weigh several tons, but the great majority
weigh only a few pounds and many only a few ounces.
Meteorites are of two kinds: _stony_ meteorites and _iron_ meteorites.
The former outnumber the latter twenty to one; but many stone
meteorites contain grains of iron. Nickel is commonly found in iron
meteorites, so that it might be said that that redoubtable alloy
nickel-steel is of cosmical invention. Some twenty-five chemical
elements have been found in meteorites, including carbon and the
“sun-metal,” helium. The presence of the latter is certainly highly
suggestive in connection with the question of the origin of meteorites.
The iron meteorites, besides metallic iron and nickel, of which they
are almost entirely composed, contain hydrogen, helium, and carbonic
oxide, and about the only imaginable way in which these gases could
have become absorbed in the iron would be through the immersion of the
latter while in a molten or vaporized state in a hot and dense
atmosphere composed of them, a condition which we know to exist only in
the envelopes of the sun and the stars.
Public-domain text, read in full here on John Shaqi.
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