Space Nomads: Meteorites in Sky, Field, and LaboratoryLaPaz, Lincoln
Science
Space Nomads: Meteorites in Sky, Field, and Laboratory
LaPaz, Lincoln
Meteorites
Meteorites have been falling upon our planet for a long time—how long,
it is hard to say with accuracy. Up to now, no specimens certainly
identified as meteorites have been found in ancient rock layers.
Scientists have been able, however, to estimate the age of several
meteorite craters on the basis of the degree of weathering not only of
the crater rims, but also of the meteorites found around the craters.
Age estimates have also been based on the ages of fossils found in
silted-up crater interiors and on other related indirect evidence.
As we have already noted, the Canyon Diablo, Arizona, crater is thought
to be 20,000 to 70,000 years old. The Odessa, Texas, crater is at least
200,000 years old; and the Haviland (Brenham), Kansas, craters more than
600,000 years old. Clearly, meteorite falls have been occurring over a
very long period of earth history.
For many years, scientists have studied the distribution of recovered
meteorites around the world in an effort to find out whether there are
any places on the land surface of our globe where meteorites have fallen
in unusually large numbers.
The idea that any particular spot on the land surface of the earth might
in some way attract more meteorites to it than other locations seems
unreasonable because of the very nature of the target presented by our
planet to the meteorites wandering through space. Not only is the earth
in motion, but it is in very complicated motion. Our earth revolves
about a sun which is also in motion through space. At the same time, the
earth is rotating on its axis. A single point on the surface of the
earth therefore traces a very erratic path in space with the passage of
the years, and the likelihood that this particular point would be struck
by more than one meteorite (if indeed by one!) must be very small.
Studies have shown that the people of the earth have a great deal more
to do with “concentrations” of meteorite recoveries than anything else.
_Population density_ is the first important factor. Clearly, the more
people living in a given area, the higher the probability that a
meteorite fall will be seen and reported and that the fallen mass itself
will be recovered. A prime example is India, one of the most densely
populated regions of the world. Of the 102 meteorites recovered in that
country up to 1953, 97 were of witnessed fall. This extremely high
proportion of falls is undoubtedly due to the fact that for centuries
such an event could hardly have taken place in that country without
attracting the attention of large numbers of people. Apparently, the
majority of Indian meteorites have been recovered as they fell, for only
5 unwitnessed falls are recorded for that country.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account