A Popular History of Astronomy During the Nineteenth Century: Fourth EditionClerke, Agnes M. (Agnes Mary)
History
A Popular History of Astronomy During the Nineteenth Century: Fourth Edition
Clerke, Agnes M. (Agnes Mary)
Astronomy -- History -- 19th century
In the course of his early gropings towards a law of the planetary
distances, Kepler tried the experiment of setting a planet, invisible by
reason of its smallness, to revolve in the vast region of seemingly
desert space separating Mars from Jupiter.[195] The disproportionate
magnitude of the same interval was explained by Kant as due to the
overweening size of Jupiter. The zone in which each planet moved was,
according to the philosopher of Königsberg, to be regarded as the empty
storehouse from which its materials had been derived. A definite
relation should thus exist between the planetary masses and the
planetary intervals.[196] Lambert, on the other hand, sportively
suggested that the body or bodies (for it is noticeable that he speaks
of them in the plural) which once bridged this portentous gap in the
solar system, might, in some remote age, have been swept away by a great
comet, and forced to attend its wanderings through space.[197]
These speculations were destined before long to assume a more definite
form. Johann Daniel Titius, a professor at Wittenberg (where he died in
1796), pointed out in 1772, in a note to a translation of Bonnet's
_Contemplation de la Nature_,[198] the existence of a remarkable
symmetry in the disposition of the bodies constituting the solar system.
By a certain series of numbers, increasing in regular progression,[199]
he showed that the distances of the six known planets from the sun might
be represented with a close approach to accuracy. But with one striking
interruption. The term of the series succeeding that which corresponded
to the orbit of Mars was without a celestial representative. The orderly
flow of the sequence was thus singularly broken. The space where a
planet should--in fulfilment of the "Law"--have revolved, was, it
appeared, untenanted. Johann Elert Bode, then just about to begin his
long career as leader of astronomical thought and work at Berlin, marked
at once the anomaly, and filled the vacant interval with a hypothetical
planet. The discovery of Uranus, at a distance falling but slightly
short of perfect conformity with the law of Titius, lent weight to a
seemingly hazardous prediction, and Von Zach was actually at the pains,
in 1785, to calculate what he termed "analogical" elements[200] for this
unseen and (by any effect or influence) _unfelt_ body. The search for
it, through confessedly scarcely less chimerical than that of alchemists
for the philosopher's stone, he kept steadily in view for fifteen years,
and at length (September 21, 1800) succeeded in organising, in
combination with five other German astronomers assembled at Lilienthal,
a force of what he jocularly termed celestial police, for the express
purpose of tracking and intercepting the fugitive subject of the sun.
The zodiac was accordingly divided for purposes of scrutiny into
twenty-four zones; their apportionment to separate observers was in part
effected, and the association was rapidly getting into working order,
Public-domain text, read in full here on John Shaqi.
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