But, even if this is the predicament into which Mercury has come, the
planet is probably not in so bad a plight as many another body to
which the same sort of thing has happened. The extreme eccentricity
of his orbit, which has given him the true mercurial temperament,
resulting in sprightliness, agility, and changeableness, is accountable
for some mitigating circumstances. The sun may hold him so that he
cannot turn his face away from that luminary; but it cannot keep him
from rotating on his axis at a uniform rate of speed, and from this,
combined with the vagaries caused by his eccentric orbit, come some
interesting things.
Since Mercury is less than two-thirds as far from the sun at perihelion
as he is at aphelion, there is a corresponding variation in his rate of
speed. When he is nearest the sun, at perihelion, he darts along at the
rate of thirty-five miles a second; at aphelion, when he is farthest
from the sun, he travels only twenty-three miles a second. Twenty-three
miles in one second is not exactly a snail’s pace, terrestrially
considered, and it is faster than the earth moves at any time; but the
planet was named Mercury because of his swiftness, and we would not
expect much lagging even when he is moving at his slowest gait. This
difference in speed in different parts of his orbit causes what is
called the librations of Mercury. When he is traveling at his swiftest
pace he gets a little ahead of his rotation, the speed of which is
uniform, and thus throws the sunlight somewhat farther around on one
side. When his speed decreases, he falls behind his time of rotation,
and thus gets a little more sunlight on the other side. Thus, during
each revolution he juggles the sunlight a little farther around him
than he could if he were a more steady-going planet.
These librations result in there being two strips on the surface of
Mercury--one on each side--which undoubtedly have a day and night,
varying in length in the different parts of the strips. The part that
lies nearest the illuminated side of the planet has alternate periods
of sunlight and darkness, each of considerable duration, while that
part nearest the dark side has merely a glimmer of sunlight every
eighty-eight days, which is Mercury’s sidereal year, or the time
required for him to make one revolution around the sun. These two
strips on which the light varies comprise about one-eighth of the
surface of Mercury. One half of his entire surface is always light, and
of the other three-eighths are always dark. It is this dark, cold side
that is turned toward us when Mercury is nearest to us.
Public-domain text, read in full here on John Shaqi.
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