This difference between stars and planets is due almost solely to
difference of distance, though the twinkling is caused by our own
atmosphere. The stars are too far away to send us anything but a mere
point of light, and the unequal density of the waves of air sweeping
over this point of light keeps it dancing before our eyes, causing
the phenomenon that we call twinkling. But the planets, being nearer
to us, show a disc, from every point of which comes a line of light,
making the total light of some volume; and these inequalities of the
air are too small to interfere with it to any extent. Sometimes, when
the atmosphere is particularly unsteady, it happens that the light of
a planet is somewhat affected by it when the planet is just rising or
setting and is, consequently, near the horizon, and that it then seems
to twinkle a little. But this departure from the rule is always slight
and of short duration, in the case of the four planets most seen.
Mercury, never being seen anywhere except near the horizon, often seems
to twinkle; but then he is seldom seen at all, and, when visible, is in
other ways so well marked that one cannot fail to recognize him.
So the steady light may justly be said to be invariable, because the
unusual conditions are easily detected. When the atmosphere is such as
to cause even the planets to blink a little, it has an effect also on
the stars. At such a time they will appear to be fairly dancing. This
effect is apt to occur on the clear nights of winter, the atmosphere
being more unsteady then. Such nights, because of the extreme
liveliness and brilliancy that they lend to the stars, are attractive
times for amateur observations. For the astronomer, however, they are
not so favorable. For the seeing of small details such as he seeks, the
steadiest atmosphere is necessary.
Though the planets are near enough to show a disc, they are not
sufficiently near to show to the naked eye as sharp an outline as the
moon’s. Usually the edge is more or less rayed like that of a fixed
star, which adds somewhat to the difficulty of distinguishing them
from the stars until their aspect has become familiar to us. The fact
that we are looking at a disc is plainly shown when an occultation by
the moon occurs. When the moon occults a fixed star, it passes between
us and the star. At such times the star disappears behind the edge of
the moon instantly, as a mere point naturally would. When a planet is
occulted by the moon, it disappears gradually as the moon covers more
and more of its disc, thus showing unmistakably the nature of it.
After steadiness of shining, the next most obvious mark of difference
between a planet and a star, from our point of view, is the movement
of the planets. A star remains always in one place with relation
to the other stars, while the planets move about from constellation
to constellation, seeming to travel sometimes toward the east and
sometimes toward the west.
Public-domain text, read in full here on John Shaqi.
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