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  1. The Sasanian Astronomical Handbook Zīj-I Shāh the Astrological Doctrine of "Transit" (Mamarr)The Sasanian Astronomical Handbook Zij-I Shah the Astrological Doctrine of "Transit".E. S. Kennedy - 1958 - Journal of the American Oriental Society 78 (4):246.
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  • New Dictionary of Scientific Biography.Noretta Koertge (ed.) - 2007 - Thomson Gale.
    Also available online as part of the Gale Virtual Reference Library under the title Complete dictionary of scientific biography.
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  • Solar and lunar observations at Istanbul in the 1570s.John M. Steele & S. Mohammad Mozaffari - 2015 - Archive for History of Exact Sciences 69 (4):343-362.
    From the early ninth century until about eight centuries later, the Middle East witnessed a series of both simple and systematic astronomical observations for the purpose of testing contemporary astronomical tables and deriving the fundamental solar, lunar, and planetary parameters. Of them, the extensive observations of lunar eclipses available before 1000 AD for testing the ephemeredes computed from the astronomical tables are in a relatively sharp contrast to the twelve lunar observations that are pertained to the four extant accounts of (...)
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  • The Determination of New Planetary Parameters at the Maragha Observatory.George Saliba - 1986 - Centaurus 29 (4):249-271.
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  • Historical Horoscopes.David Pingree - 1962 - Journal of the American Oriental Society 82 (4):487-502.
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  • Astronomy and Astrology in India and Iran.David Pingree - 1963 - Isis 54:229-246.
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  • Astronomy and Astrology in India and Iran.David Pingree - 1963 - Isis 54 (2):229-246.
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  • Holding or Breaking with Ptolemy's Generalization: Considerations about the Motion of the Planetary Apsidal Lines in Medieval Islamic Astronomy.S. Mohammad Mozaffari - 2017 - Science in Context 30 (1):1-32.
    ArgumentIn theAlmagest, Ptolemy finds that the apogee of Mercury moves progressively at a speed equal to his value for the rate of precession, namely one degree per century, in the tropical reference system of the ecliptic coordinates. He generalizes this to the other planets, so that the motions of the apogees of all five planets are assumed to be equal, while the solar apsidal line is taken to be fixed. In medieval Islamic astronomy, one change in this general proposition took (...)
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  • Astronomical observations at the Maragha observatory in the 1260s–1270s.S. Mohammad Mozaffari - 2018 - Archive for History of Exact Sciences 72 (6):591-641.
    This paper presents an analysis of the systematic astronomical observations performed by Muḥyī al-Dīn al-Maghribī at the Maragha observatory between 1262 and 1274 AD. In a treatise entitled Talkhīṣ al-majisṭī, preserved in a unique copy at Leiden, Universiteitsbibliotheek, Muḥyī al-Dīn explains his observations and measurements of the Sun, the Moon, the superior planets, and eight reference stars. His measurements of the meridian altitudes of the Sun, the superior planets, and the eight bright stars were made using the mural quadrant of (...)
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  • Muḥyī al-Dīn al-Maghribī’s lunar measurements at the Maragha observatory.S. Mohammad Mozaffari - 2014 - Archive for History of Exact Sciences 68 (1):67-120.
    This paper is a technical study of the systematic observations and computations made by Muḥyī al-Dīn al-Maghribī (d. 1283) at the Maragha observatory (north-western Iran, c. 1259–1320) in order to newly determine the parameters of the Ptolemaic lunar model, as explained in his Talkhīṣ al-majisṭī, “Compendium of the Almagest.” He used three lunar eclipses on March 7, 1262, April 7, 1270, and January 24, 1274, in order to measure the lunar epicycle radius and mean motions; an observation on April 20, (...)
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  • An analysis of medieval solar theories.S. Mohammad Mozaffari - 2018 - Archive for History of Exact Sciences 72 (2):191-243.
    From Antiquity through the early modern period, the apparent motion of the Sun in longitude was simulated by the eccentric model set forth in Ptolemy’s Almagest III, with the fundamental parameters including the two orbital elements, the eccentricity e and the longitude of the apogee λ A, the mean motion ω, and the radix of the mean longitude $$ \bar{\lambda }_{0} $$ λ¯0. In this article we investigate the accuracy of 11 solar theories established across the Middle East from 800 (...)
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  • Studies in the History of the Exact Sciences in Honour of David Pingree.Jan P. Hogendijk, Kim Plofker, Michio Yano & Charles Burnett (eds.) - 2003 - Brill.
    This collection of essays reflects the wide range of David Pingree's expertise in the scientific texts of Ancient Mesopotamia, Greece, India, Persia, and the medieval Arabic, Hebrew and Latin traditions. Both theoretical aspects and the practical applications of the exact sciences-in time keeping, prediction of the future, and the operation of magic-are dealt with. The book includes several critical editions and translations of hitherto unknown or understudied texts, and a particular emphasis is on the diffusion of scientific learning from one (...)
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  • A Star Table from Medieval Yemen.Paul Kunitzsch & Y. Tzvi Langermann - 2003 - Centaurus 45 (1-4):159-174.
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  • The World-Year of the Persians.E. S. Kennedy & B. L. van der Waerden - 1963 - Journal of the American Oriental Society 83 (3):315-327.
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