Of all the planets Mercury is nearest the sun. His average distance
is thirty-six million miles. He is nearly eighty times nearer than
Neptune, the outermost planet, and more than two and one-half times
nearer than we are. But his orbit departs so far from being a circle
that his distance from the sun varies as much as fifteen million miles.
When he is nearest the sun, or in perihelion, he is only twenty-eight
million miles from it; when he is farthest, or in aphelion, his
distance is forty-three million miles. There is even greater variation
in his distance from us. The difference between his least possible
and his greatest possible distance from us is as much as eighty-nine
millions of miles. For the earth has an elliptical orbit as well as
Mercury, and when we are at perihelion, which occurs in the winter,
we are three millions of miles nearer to the sun than we are in
mid-summer. If Mercury chances to be then at his greatest distance
from the sun, and also at inferior conjunction, or between us and the
sun, he is only forty-seven millions of miles from us. If, when we are
farthest from the sun, he also is at his greatest distance from it,
and is in superior conjunction, or on the other side of the sun from
us, he is one hundred and thirty-six millions of miles from us.
These changes in distance from the earth have much to do with Mercury’s
changes in apparent brightness to us. At his brightest, when he appears
at greatest elongation and we can see him without a telescope, he is
brighter than Arcturus, the brilliant first-magnitude star in Boötes,
that swings over us nightly from early spring to late autumn. When seen
with the naked eye, he is also red in color, somewhat like Arcturus;
but through a telescope he is dull silver, like the moon, or even more
ashy in his paleness. As he goes farther and farther from us he becomes
dimmer and dimmer and can be followed only with a telescope until, even
with this aid to vision, he is lost in the rays of the sun at superior
conjunction. His apparent diameter as mathematically measured varies
from five seconds, when he is farthest away, to thirteen seconds, when
he is nearest.
When he is at his nearest possible distance from us, light travels from
Mercury to us in a little more than four minutes. At his greatest
possible distance we could not receive the waves of light that he sends
out in less than twelve minutes. As a matter of fact, we do not receive
them at all, for, as we have seen, he is invisible when at his greatest
possible distance from us, being then on the far side of the sun.
Public-domain text, read in full here on John Shaqi.
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