The circumference of Earth, as determined by Al Mamun of glorious
memory, is 20,400 miles, and the diameter, therefore, is nearly
6500.[65] Alfraganus deduces from this the area of the whole Earth and
also of the habitable portion of Earth. The latter extends only from
the equator to 66° 25′ North, and its longitude at the equator is equal
to 180° or 10,200 miles, at the northern limit to 4080 miles. This is
divided into seven “Climates,“ as in Ptolemy’s Geography, the first
lying a little north of the equator. Alfraganus gives for each the
length of the longest day, the height of the pole above the horizon,
the extent of territory, and the principal regions and towns comprised.
He admits that south of the first climate as far as 0° is some land,
surrounded by sea, and sparsely inhabited, and north of the seventh
climate are a few towns, but these are of no account.
------------------------------------------------------------------------
[65] The Arabian mile was equal to 4000 “black cubits,” and if this is
the Egyptian and Babylonian cubit, the values are rather too large,
being in round numbers 26,500 and 8,500 English miles, instead of
25,000 and 8000.
------------------------------------------------------------------------
Our author treats next of the risings and settings of the zodiacal
signs, and of the division of the day into 24 equal or 24 “temporary”
hours (see p. 26).
After this, the unanimous opinion of wise and learned men concerning
the spheres is duly set forth in seven chapters; how there are eight
great Orbs, the smaller enclosed within the greater, the star sphere
being the outermost and largest of all; how epicycles are fixed in
these; how only the star sphere has its centre exactly in Earth,
the others being slightly eccentric; what are the positions of the
poles and centres of the great spheres and the small epicycles, their
relative sizes, and their different velocities as they turn; finally,
how well the system represents the movements of sun, moon, stars, and
planets. The moon’s mean daily motion, resulting from a wonderful
combination of five circular motions, amounts to about 13° 11′; the
sun’s is 59′, and he completes a revolution in 365¼ days “less an
insignificant fraction.” (This being a popular treatise Alfraganus
apparently thinks it unnecessary to state the length of the year
more precisely). The sluggish motion (“motus tardissimus”) of the
star sphere, which is communicated to all the rest in addition to their
own motions, is 1° in a century, according to Ptolemy, so that it
completes a revolution in 36,000 years.
Public-domain text, read in full here on John Shaqi.
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