Flowers of the SkyProctor, Richard A. (Richard Anthony)
Science
Flowers of the Sky
Proctor, Richard A. (Richard Anthony)
Astronomy
Even before the poles of Mars had been discovered, observers had
perceived that the planet has marks upon its surface. Cassini, in 1666,
at Paris, found by observing these spots that the planet turns on its
axis once in about twenty-four hours forty minutes. In the same year Dr.
Hooke observed Mars. He was in doubt whether the planet turned once
round or twice round in about twenty-four hours; for with his imperfect
telescope two opposite faces of the planet seemed so much alike that he
was doubtful whether they really were two different faces or the same.
Fortunately he published two pictures of the planet, taken on the same
night in March, 1666, and we have been able to keep such good count of
Mars's turning on his axis, that we know exactly how many times he has
turned since that distant time. However, at present, we need not further
consider the turning motion of Mars, but rather what the telescope has
shown us about him. Only, let it be remembered that he has a day of
about twenty-four hours thirty-seven minutes, and is in this respect
much like our earth.
Maraldi, Cassini's nephew, early in the last century observed several
spots on Mars, and, in particular, one somewhat triangular dark spot,
which was one of Hooke's markings, but more clearly seen by Maraldi.
About this time it was seen that the darker markings have a somewhat
greenish colour; and towards the end of last century, or, more exactly,
about a hundred years ago, the idea was maintained by Sir W. Herschel
that the dark-greenish markings are seas, while the lighter parts of
Mars, to which the planet owes its somewhat ruddy colour, are lands. Sir
W. Herschel also was the first to show that Mars, like our earth, has
seasons. It had been supposed by Cassini, Maraldi, and others, that the
axis of Mars is upright to the level of the path in which he travels. Of
course, if this were so, the light of the sun would always fall on the
planet in the same way; for the sun is in that level. But the axis, like
that of our own earth, is bowed considerably from uprightness; so that
at one part of his year the sun's rays fall more fully on his northern
regions, and his southern regions are correspondingly turned away from
the sun; then it is summer in his northern regions, winter in his
southern. At the opposite season the reverse holds, and then winter
prevails over his northern and summer over his southern regions. Midway
between these two seasons, the sun's rays are equably distributed over
both hemispheres of Mars, and then the days and nights are equal, and it
is spring in that hemisphere which is passing from winter to summer, and
autumn in the other hemisphere which is passing from summer to winter.
All these changes are precisely like those which take place in the case
of our own earth. Only, the year of Mars, and therefore his seasons, are
longer. He takes 687 days in travelling round the sun, giving nearly
172 days, or more than five and a half of our months, for each season.
Public-domain text, read in full here on John Shaqi.
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