Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Albategnius was another Arab prince whose record in astronomy in the
ninth and tenth centuries was perhaps the best: the Ptolemaic values of
the precession of the equinoxes and of the obliquity of the ecliptic
were improved by new observations, and his excellence as mathematician
enabled him to make permanent improvements in the astronomical
application of trigonometry.
Abul Wefa was the last of the Bagdad astronomers in the latter half of
the tenth century, and his great treatise on astronomy known as the
Almagest is sometimes confused with Ptolemy's work. Following him was
Ibn Yunos of Cairo, whose labors culminated in the famous Hakemite
Tables, which became the standard in mathematical and astronomical
computations for several centuries.
Mohammedan astronomy thrived, too, in Spain and northern Africa.
Arzachel of Toledo published the Toledan Tables, and his pupils made
improvements in instruments and the methods of calculation. The Giralda
was built by the Moors in Seville in 1196, the first astronomical
observatory on the continent of Europe; but within the next half century
both Seville and Cordova became Christian again, and Arab astronomy was
at an end.
Through many centuries, however, the science had been kept alive, even
if no great original advances had been achieved; and Arab activities
have modified our language very materially, adding many such words as
almanac, zenith, and radii, and a wealth of star names, as Aldebaran,
Rigel, Betelgeuse, Vega, and so on.
Meanwhile, other schools of astronomy had developed in the East, one at
Meraga near the modern Persia, where Nassir Eddin, the astronomer of
Hulagu Khan, grandson of the Mongol emperor Genghis Khan, built and used
large and carefully constructed instruments, translated all the Greek
treatises on astronomy, and published a laborious work known as the
Ilkhanic Tables, based on the Hakemite Tables of Ibn Yunos.
More important still was the Tartar school of astronomy under Ulugh Beg,
a grandson of Tamerlane, who built an observatory at Samarcand in 1420,
published new tables of the planets, and made with his excellent
instruments the observations for a new catalogue of stars, the first
since Hipparchus, the star places being recorded with great precision.
The European astronomy of the Middle Ages amounted to very little
besides translation from the Arabic authors into Latin, with
commentaries. Astronomers under the patronage of Alfonso X of Leon and
Castile published in 1252 the Alfonsine Tables, which superseded the
Toledan tables and were accepted everywhere throughout Europe. Alfonso
published also the "Libros del Saber," perhaps the first of all
astronomical cyclopedias, in which is said to occur the earliest diagram
representing a planetary orbit as an ellipse: Mercury's supposed path
round the earth as a center.
Public-domain text, read in full here on John Shaqi.
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