The general surface of Mars is a deep yellow; but there are dark grey
or greenish patches. Sir John Herschel was the first to attribute the
ruddy colour of Mars to its soil rather than to its atmosphere.
The observations of that keen-sighted observer Dawes led to the first
good map of Mars, in 1869. In the 1877 opposition Schiaparelli revived
interest in the planet by the discovery of canals, uniformly about
sixty miles wide, running generally on great circles, some of them
being three or four thousand miles long. During the opposition of
1881-2 the same observer re-observed the canals, and in twenty of them
he found the canals duplicated,[4] the second canal being always 200 to
400 miles distant from its fellow.
The existence of these canals has been doubted. Mr. Lowell has now
devoted years to the subject, has drawn them over and over again, and
has photographed them; and accepts the explanation that they are
artificial, and that vegetation grows on their banks. Thus is revived
the old controversy between Whewell and Brewster as to the habitability
of the planets. The new arguments are not yet generally accepted.
Lowell believes he has, with the spectroscope, proved the existence of
water on Mars.
One of the most unexpected and interesting of all telescopic
discoveries took place in the opposition of 1877, when Mars was
unusually near to the earth. The Washington Observatory had acquired
the fine 26-inch refractor, and Asaph Hall searched for satellites,
concealing the planet’s disc to avoid the glare. On August 11th he had
a suspicion of a satellite. This was confirmed on the 16th, and on the
following night a second one was added. They are exceedingly faint, and
can be seen only by the most powerful telescopes, and only at the times
of opposition. Their diameters are estimated at six or seven miles. It
was soon found that the first, Deimos, completes its orbit in 30h. 18m.
But the other, Phobos, at first was a puzzle, owing to its incredible
velocity being unsuspected. Later it was found that the period of
revolution was only 7h. 39m. 22s. Since the Martian day is twenty-four
and a half hours, this leads to remarkable results. Obviously the
easterly motion of the satellite overwhelms the diurnal rotation of the
planet, and Phobos must appear to the inhabitants, if they exist, to
rise in the west and set in the east, showing two or even three full
moons in a day, so that, sufficiently well for the ordinary purposes of
life, the hour of the day can be told by its phases.
The discovery of these two satellites is, perhaps, the most interesting
telescopic visual discovery made with the large telescopes of the last
half century; photography having been the means of discovering all the
other new satellites except Jupiter’s fifth (in order of discovery).
[Illustration: JUPITER. From a drawing by E. M. Antoniadi, showing
transit of a satellite’s shadow, the belts, and the “great red spot”
(_Monthly Notices_, R. A. S., vol. lix., pl. x.).]
Public-domain text, read in full here on John Shaqi.
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