We can never see Mercury with the naked eye except when he is near one
elongation or the other; and even then he is visible only about an hour
after the sun is down in the evening or about an hour before it rises
in the morning. Three times each year he appears in the evening for
more or less than a week, according to the situation of the observer,
and three times a year he is visible in the morning for about the same
length of time. But, owing to his position with relation to us, the
evening exhibit that comes in the spring is the most favorable one for
a good view of him, and the morning appearance that is most favorable
is the one that comes in the autumn.
The mean synodic period of Mercury is about one hundred and sixteen
days, or a little less than four months. That is, he returns to
greatest eastern elongation and can be seen in the evening sky about
every one hundred and sixteen days, and the same length of time
elapses between his appearances in the morning sky at greatest western
elongation. But this mean synodic period is made up of synodic periods
varying in different revolutions from one hundred and five to one
hundred and thirty-four days. So, though one may mark the dates at
which the various positions of the planet occurred during any one
revolution, one cannot so easily determine the exact time at which
he will be found in the same positions at the next revolution; that
is, whether the revolution will take place in less or more than one
hundred and sixteen days. The earth and the planet are each traveling
at varying rates of speed, according as they are near the sun or
farther from it, and obviously it is a situation that requires careful
mathematical work to compute. The almanac must be referred to for the
exact date.
But, lacking an almanac, one will generally find that Mercury will
return to the same position relative to the earth and the sun within a
few days of his mean synodic period. Three periods, however much they
may vary individually, are almost always equal to three hundred and
forty-eight days, or three times the mean period. This is seventeen
days less than a year. Hence, if one is lucky enough to have seen
Mercury at eastern elongation one spring, and will look the next year
about seventeen days earlier, the planet will be found a little to
the east (about fifteen degrees) of where he was when first seen the
year before. He is there in the same position with relation to us and
the sun that he had the preceding spring, but in a slightly different
relation to us and the stars, because the sun lacks seventeen days of
having completed its apparent yearly journey around the zodiac. It must
still go through about one half of a constellation.
Public-domain text, read in full here on John Shaqi.
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