Mercury, dist.-- 4 4 + 0 = 4
Venus " 7 4 + 3 = 7
Earth " 10 4 + 6 = 10
Mars " 15 4 + 12 = 16
-- 4 + 24 = 28
Jupiter dist. 52 4 + 48 = 52
Saturn " 95 4 + 96 = 100
(Uranus) " 192 4 + 192 = 196
-- 4 + 384 = 388
All the five planets, and the earth, fitted this rule, except that
there was a blank between Mars and Jupiter. When Uranus was discovered,
also fitting the rule, the conclusion was irresistible that there is
probably a planet between Mars and Jupiter. An association of
twenty-four astronomers was now formed in Germany to search for the
planet. Almost immediately afterwards the planet was discovered, not by
any member of the association, but by Piazzi, when engaged upon his
great catalogue of stars. On January 1st, 1801, he observed a star
which had changed its place the next night. Its motion was retrograde
till January 11th, direct after the 13th. Piazzi fell ill before he had
enough observations for computing the orbit with certainty, and the
planet disappeared in the sun’s rays. Gauss published an approximate
ephemeris of probable positions when the planet should emerge from the
sun’s light. There was an exciting hunt, and on December 31st (the day
before its birthday) De Zach captured the truant, and Piazzi christened
it Ceres.
The mean distance from the sun was found to be 2.767, agreeing with the
2.8 given by Bode’s law. Its orbit was found to be inclined over 10° to
the ecliptic, and its diameter was only 161 miles.
On March 28th, 1802, Olbers discovered a new seventh magnitude star,
which turned out to be a planet resembling Ceres. It was called Pallas.
Gauss found its orbit to be inclined 35° to the ecliptic, and to cut
the orbit of Ceres; whence Olbers considered that these might be
fragments of a broken-up planet. He then commenced a search for other
fragments. In 1804 Harding discovered Juno, and in 1807 Olbers found
Vesta. The next one was not discovered until 1845, from which date
asteroids, or minor planets (as these small planets are called), have
been found almost every year. They now number about 700.
It is impossible to give any idea of the interest with which the first
additions since prehistoric times to the planetary system were
received. All of those who showered congratulations upon the
discoverers regarded these discoveries in the light of rewards for
patient and continuous labours, the very highest rewards that could be
desired. And yet there remained still the most brilliant triumph of
all, the addition of another planet like Uranus, before it had ever
been seen, when the analysis of Adams and Le Verrier gave a final proof
of the powers of Newton’s great law to explain any planetary
irregularity.
Public-domain text, read in full here on John Shaqi.
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