Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Considering the earth as a whole, the number of total eclipses will
average nearly seventy to the century. But at any given place, one may
count himself very fortunate if he sees a single total eclipse, although
he may see several partial ones without going from home. Then, too,
there are annular or ring eclipses, averaging seven in eight years. But
had one been born in Boston or New York in the latter part of the
eighteenth century, he might have lived through the entire nineteenth
century and a long way into the twentieth without seeing more than one
total eclipse of the sun. In London in 1715 no total eclipse had been
visible for six centuries. However, taking general averages, and
recalling the comparatively narrow belt of total eclipse, every part of
the earth is likely to come within range of the moon's shadow once in
about three and a half centuries.
The longest total eclipses always occur near the equator; this is
because an observer on the equator is carried eastward by the earth's
rotation at a velocity of about 1,000 miles per hour, so that he remains
longer in the moon's shadow which is passing over him in the same
direction with a velocity about twice as great.
The general circumstances of total eclipses are readily foretold by
means of the ancient Chaldean period of eclipses known as the saros. It
is 18 years and 10 or 11 days in length (according to the number of leap
years intervening). In one complete saros, forty-one solar eclipses will
generally happen, but only about one-fourth of them will be total. The
saros is a period at the end of which the centers of sun and moon return
very nearly to their relative positions at the beginning of the cycle.
So, in general, the eclipse of any year will be a repetition of one
which took place 18 years before, and another very similar in
circumstances will happen 18 years in the future. Three periods of the
saros, or 54 years and 1 month, will usually bring about a return of any
given eclipse to any particular part of the earth, so far as longitude
is concerned, though the returning track will lie about 600 miles to the
north or south of the one 54 years earlier.
Paths of total eclipses frequently intersect, if large areas like an
entire country are considered; Spain, for instance, where total eclipses
have occurred in 1842, 1860, 1870, 1900 and 1905. Besides crossing
Spain, the tracks of totality on May 28, 1900, and August 30, 1905, were
unique in intersecting exactly over a large city--Tripoli in Barbary, on
both of which occasions the writer's expeditions to that city were
rewarded with perfect observing conditions in that now Italian province
on the edge of the great desert.
Public-domain text, read in full here on John Shaqi.
Astronomy: The Science of the Heavenly Bodies — John Shaqi
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