In modern times much interest has been taken in watching a rival to
Cassini’s famous spot. The “great red spot” was first observed by
Niesten, Pritchett, and Tempel, in 1878, as a rosy cloud attached to a
whitish zone beneath the dark southern equatorial band, shaped like the
new war balloons, 30,000 miles long and 7,000 miles across. The next
year it was brick-red. A white spot beside it completed a rotation in
less time by 5½ minutes than the red spot—a difference of 260 miles an
hour. Thus they came together again every six weeks, but the motions
did not continue uniform. The spot was feeble in 1882-4, brightened in
1886, and, after many changes, is still visible.
Galileo’s great discovery of Jupiter’s four moons was the last word in
this connection until September 9th, 1892, when Barnard, using the
36-inch refractor of the Lick Observatory, detected a tiny spot of
light closely following the planet. This proved to be a new satellite
(fifth), nearer to the planet than any other, and revolving round it in
11h. 57m. 23s. Between its rising and setting there must be an interval
of 2½ Jovian days, and two or three full moons. The sixth and seventh
satellites were found by the examination of photographic plates at the
Lick Observatory in 1905, since which time they have been continuously
photographed, and their orbits traced, at Greenwich. On examining these
plates in 1908 Mr. Melotte detected the eighth satellite, which seems
to be revolving in a retrograde orbit three times as far from its
planet as the next one (seventh), in these two points agreeing with the
outermost of Saturn’s satellites (Phoebe).
_Saturn._—This planet, with its marvellous ring, was perhaps the most
wonderful object of those first examined by Galileo’s telescope. He was
followed by Dominique Cassini, who detected bands like Jupiter’s belts.
Herschel established the rotation of the planet in 1775-94. From
observations during one hundred rotations he found the period to be
10h. 16m. 0s., 44. Herschel also measured the ratio of the polar to the
equatoreal diameter as 10:11.
The ring was a complete puzzle to Galileo, most of all when the planet
reached a position where the plane of the ring was in line with the
earth, and the ring disappeared (December 4th, 1612). It was not until
1656 that Huyghens, in his small pamphlet _De Saturni Luna Observatio
Nova_, was able to suggest in a cypher the ring form; and in 1659, in
his Systema Saturnium, he gave his reasons and translated the cypher:
“The planet is surrounded by a slender flat ring, everywhere distinct
from its surface, and inclined to the ecliptic.” This theory explained
all the phases of the ring which had puzzled others. This ring was
then, and has remained ever since, a unique structure. We in this age
have got accustomed to it. But Huyghens’s discovery was received with
amazement.
Public-domain text, read in full here on John Shaqi.
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