Astronomi Islam pada Zaman Pertengahan

Astrolab Parsi abad ke-18, disimpan di Muzium Sejarah Sains Whipple di Cambridge, England.

Astronomi Islam atau astronomi Arab merangkumi perkembangan ilmu falak yang dibuat dalam dunia Islam, khususnya sewaktu Zaman Kegemilangan Islam (abad ke-8 hingga ke-15),[1] dan yang ditulis dalam bahasa Arab. Perkembangan-perkembangan ini berlaku di Timur Tengah, Asia Tengah, Al-Andalus, dan Afrika Utara, dan kemudiannya di Timur Jauh dan India. Ia seiring dengan keazalian sains Islam lain dalam cirinya yang melibatkan penyerapan dan penggabungan bahan-bahan berbeza daripada budaya asing dan kemudiannya menjana sains yang mengandungi ciri-ciri Islam. Khususnya, ini termasuklah karya-karya ilmu falak Yunani, Sassan, dan astronomi Hindi, yang diterjemah dan dikembangkan.[2] Pada waktu berikutnya, ilmu falak Islam banyak mempengaruhi astronomi India,[3] Byzantine,[4] Eropah[5] dan juga ilmu falak China,[6] dan Mali.[7][8]

Sejumlah besar bintang di langit, seperti Aldebaran dan Altair, dan istilah astronomi seperti alidad ("alhidade"), azimut ("azimuth"), dan almucantar, masih disebut dengan nama Arab mereka.[9] Kini masih terdapat satu korpus besar penulisan ilmu falak Islam. Korpus ini mengandungi lebih kurang 10,000 manuskrip, kebanyakkan masih belum dibaca atau dikatalogkan, yang bertaburan di seluruh dunia. Namun, gambaran jitu tentang kegiatan islam di dalam bidang ilmu falak masih boleh dibentuk semula.[10]

Sejarah

Dalam The Oxford History of Islam, Ahmad Dallal menulis bahawa berlainan dengan orang Babylon, Yunani dan Hindi yang telah mereka sistem kajian ilmu falak berlandaskan matematik, orang Arab jahiliah bergantung hanya kepada pemerhatian empirik (pemerhatian yang melibatkan pengalaman dan penggunaan pancaindera secara saintifik dan sistematik). Pemerhatian ini berlandaskan terbit dan terbenamnya bintang-bintang khusus. Sistem kajian ilmu falak ini dikenali sebagai anwa. Anwa dikembangkan secara berterusan selepas kedatangan Islam dengan tambahan penggunaan kaedah matematik oleh para ahli falak Islam dalam kajian mereka.[11] Mengikut David King, selepas kedatangan Islam, keperluan untuk mendapatkan kepastian tentang arah Kiblat dan waktu-waktu Solat mendorong kemajuan dalam ilmu falak ataupun astronomi berkurun-kurun lamanya.[12]

Nota dan rujukan

Nota
Kutipan
  1. ^ (Saliba 1994b, pp. 245, 250, 256–257)
  2. ^ (Gingerich 1986)
  3. ^ Sharma, Virendra Nath (1995), Sawai Jai Singh and His Astronomy, Motilal Banarsidass Publ., m/s. 8–10, ISBN 81-208-1256-5
  4. ^ Joseph Leichter (June 27, 2009). "The Zij as-Sanjari of Gregory Chioniades". Internet Archive. Dicapai pada 2009-10-02.
  5. ^ Saliba (1999).
  6. ^ van Dalen, Benno (2002), "Islamic Astronomical Tables in China: The Sources for Huihui li", dalam Ansari, S. M. Razaullah (penyunting), History of Oriental Astronomy, Springer Science+Business Media, m/s. 19–32, ISBN 1-4020-0657-8
  7. ^ African Cultural Astronomy By Jarita C. Holbrook, R. Thebe Medupe, Johnson O. Urama
  8. ^ Medupe, Rodney Thebe; Warner, Brian; Jeppie, Shamil; Sanogo, Salikou; Maiga, Mohammed; Maiga, Ahmed; Dembele, Mamadou; Diakite, Drissa; Tembely, Laya (2008), "The Timbuktu Astronomy Project", African Cultural Astronomy, Astrophysics and Space Science Proceedings, m/s. 179, doi:10.1007/978-1-4020-6639-9_13, ISBN 978-1-4020-6638-2.
  9. ^ "Arabic Star Names". Islamic Crescents' Observation Project. 2007-05-01. Diarkibkan daripada yang asal pada 2008-02-02. Dicapai pada 2008-01-24. Unknown parameter |deadurl= ignored (bantuan)
  10. ^ (Ilyas 1997)
  11. ^ Dallal (1999), pg. 162
  12. ^ King, David A. (2005-06-30). In Synchrony with the Heavens, Studies in Astronomical Timekeeping and Instrumentation in Medieval Islamic Civilization: The Call of the Muezzin. 1. Brill Academic Pub. m/s. xvii. ISBN 90-04-14188-X. And it so happens that the particular intellectual activity that inspired these materials is related to the religious obligation to pray at specific times. The material presented here makes nonsense of the popular modern notion that religion inevitably impedes scientific progress, for in this case, the requirements of the former actually inspired the progress of the latter for centuries.
Bibliografi
  • Adnan, Abdulhak (1939), La science chez les Turcs ottomans, Paris
  • Ajram, K. (1992), "Appendix B", Miracle of Islamic Science, Knowledge House Publishers, ISBN 0-911119-43-4
  • Baker, A.; Chapter, L. (2002), "Part 4: The Sciences", Missing or empty |title= (bantuan), in Sharif, M. M., "A History of Muslim Philosophy", Philosophia Islamica
  • Covington, Richard, "Rediscovering Arabic science", Saudi Aramco World (ed. May–June 2007), m/s. 2–16[sumber tidak boleh dipercayai?]
  • Dallal, Ahmad (1999), "Science, Medicine and Technology", dalam Esposito, John (penyunting), The Oxford History of Islam, Oxford University Press, New York
  • Duhem, Pierre (1908, 1969), To Save the Phenomena: An Essay on the Idea of Physical theory from Plato to Galileo, University of Chicago Press, Chicago, ISBN 0-226-16921-9 Check date values in: |date= (bantuan)
  • Gautier, Antoine (December 2005), "L'âge d'or de l'astronomie ottomane", L'Astronomie (monthly magazine created by Camille Flammarion in 1882), 119
  • Gill, M. (2005), Was Muslim Astronomy the Harbinger of Copernicanism?, diarkibkan daripada yang asal pada 2008-01-02, dicapai pada 2008-01-22 Unknown parameter |deadurl= ignored (bantuan)
  • Gingerich, Owen (April 1986), "Islamic astronomy", Scientific American, 254 (10): 74, Bibcode:1986SciAm.254...74G, dicapai pada 2008-05-18
  • Glick, Thomas F.; Livesey, Steven John; Wallis, Faith (2005), Medieval Science, Technology, and Medicine: An Encyclopedia, Routledge, ISBN 0-415-96930-1
  • Hassan, Ahmad Y., Transfer Of Islamic Technology To The West, Part II: Transmission Of Islamic Engineering, diarkibkan daripada yang asal pada 2008-02-18, dicapai pada 2008-01-22 Unknown parameter |deadurl= ignored (bantuan)
  • Hill, Donald R. (1985), "Al-Biruni's mechanical calendar", Annals of Science, 42 (2): 139–163, doi:10.1080/00033798500200141
  • Hill, Donald R. (May 1991), "Mechanical Engineering in the Medieval Near East", Scientific American: 64–69 (cf. Hill, Donald R., Mechanical Engineering, ISBN 0-07-037863-0, diarkibkan daripada yang asal pada 2007-12-25, dicapai pada 2008-01-22 Unknown parameter |deadurl= ignored (bantuan))
  • Hill, Donald R. (1993), Islamic Science And Engineering, Edinburgh University Press, ISBN 0-7486-0455-3
  • Huff, Toby (2003), The Rise of Early Modern Science: Islam, China, and the West, Cambridge University Press, ISBN 0-521-52994-8
  • Ilyas, Mohammad (1997), Islamic Astronomy, Pelanduk Publications, ISBN 967-978-549-1
  • Iqbal, Muzaffar (2003), "Review: World-Maps for Finding the Direction and Distance to Mecca: Innovation and Tradition in Islamic Science by David A. King", Islam & Science, June 2003
  • Iqbal, Muzaffar; Berjak, Rafik (2003), "Ibn Sina–Al-Biruni correspondence", Islam & Science, June 2003
  • Kennedy, Edward S. (1947), "Al-Kashi's Plate of Conjunctions", Isis, 38 (1–2): 56–59, doi:10.1086/348036
  • Kennedy, Edward S. (1950), "A Fifteenth-Century Planetary Computer: al-Kashi's "Tabaq al-Manateq" I. Motion of the Sun and Moon in Longitude", Isis, 41 (2): 180–183, doi:10.1086/349146
  • Kennedy, Edward S. (1951), "An Islamic Computer for Planetary Latitudes", Journal of the American Oriental Society, Journal of the American Oriental Society, Vol. 71, No. 1, 71 (1): 13–21, doi:10.2307/595221, JSTOR 595221
  • Kennedy, Edward S. (1952), "A Fifteenth-Century Planetary Computer: al-Kashi's "Tabaq al-Maneteq" II: Longitudes, Distances, and Equations of the Planets", Isis, 43 (1): 42–50, doi:10.1086/349363
  • Kennedy, Edward S. (1956), "A Survey of Islamic Astronomical Tables", Transactions of the American Philosophical Society, Transactions of the American Philosophical Society, Vol. 46, No. 2, 46 (2): 123, doi:10.2307/1005726, JSTOR 1005726
  • Kennedy, Edward S. (1961), "Al-Kashi's Treatise on Astronomical Observational Instruments", Journal of Near Eastern Studies, 20 (2): 98–108, doi:10.1086/371617
  • Kennedy, Edward S. (1962), "Review: The Observatory in Islam and Its Place in the General History of the Observatory by Aydin Sayili", Isis, 53 (2): 237–239, doi:10.1086/349558
  • Kennedy, Edward S. (1998), Astronomy and Astrology in the Medieval Islamic World, Brookfield, VT: Ashgate, ISBN 0-86078-682-X
  • King, David A. (1983), "The Astronomy of the Mamluks", Isis, 74 (4): 531–555, doi:10.1086/353360
  • King, David A. (1986), Islamic mathematical astronomy, London, ISBN 0-86078-407-X
  • King, David A. (1997), "Two Iranian World Maps for Finding the Direction and Distance to Mecca", Imago Mundi, 49 (1): 62–82, doi:10.1080/03085699708592859
  • King, David A. (1999a), "Islamic Astronomy", dalam Walker, Christopher (penyunting), Astronomy before the telescope, British Museum Press, m/s. 143–174, ISBN 0-7141-2733-7
  • King, David A. (1999b), World-maps for Finding the Direction and Distance to Mecca: Innovation and Tradition in Islamic Science, Brill Publishers, ISBN 90-04-11367-3
  • King, David A. (2002), "A Vetustissimus Arabic Text on the Quadrans Vetus", Journal for the History of Astronomy, 33: 237–255, Bibcode:2002JHA....33..237K
  • King, David A. (December 2003), "14th-Century England or 9th-Century Baghdad? New Insights on the Elusive Astronomical Instrument Called Navicula de Venetiis", Centaurus, 45 (1–4): 204–226, doi:10.1111/j.1600-0498.2003.450117.x
  • King, David A. (2004), "Reflections on some new studies on applied science in Islamic societies (8th–19th centuries)", Islam & Science, June 2004
  • King, David A. (2005), In Synchrony with the Heavens, Studies in Astronomical Timekeeping and Instrumentation in Medieval Islamic Civilization: Instruments of Mass Calculation, Brill Publishers, ISBN 90-04-14188-X
  • King, David A.; Cleempoel, Koenraad Van; Moreno, Roberto (2002), "A Recently Discovered Sixteenth-Century Spanish Astrolabe", Annals of Science, 59 (4): 331–362, doi:10.1080/00033790110095813
  • Langermann, Y. Tzvi, ed. and trans. (1990), Ibn al-Haytham's On the Configuration of the World, Harvard Dissertations in the History of Science, New York: Garland, ISBN 0-8240-0041-2
  • Marmura, Michael E.; Nasr, Seyyed Hossein (1965), "Review: An Introduction to Islamic Cosmological Doctrines. Conceptions of Nature and Methods Used for Its Study by the Ikhwan Al-Safa'an, Al-Biruni, and Ibn Sina by Seyyed Hossein Nasr", Speculum, Speculum, Vol. 40, No. 4, 40 (4): 744–746, doi:10.2307/2851429, JSTOR 2851429
  • Marshall, O. S. (1950), "Alhazen and the Telescope", Astronomical Society of the Pacific Leaflets, 6: 4
  • Nasr, Seyyed H. (1st edition in 1964, 2nd edition in 1993), An Introduction to Islamic Cosmological Doctrines (ed. 2nd), 1st edition by Harvard University Press, 2nd edition by State University of New York Press, ISBN 0-7914-1515-5 Check date values in: |date= (bantuan)
  • Ragep, F. Jamil (2001a), "Tusi and Copernicus: The Earth's Motion in Context", Science in Context, Cambridge University Press, 14 (1–2): 145–163
  • Ragep, F. Jamil (2001b), "Freeing Astronomy from Philosophy: An Aspect of Islamic Influence on Science", Osiris, 2nd Series, 16 (Science in Theistic Contexts: Cognitive Dimensions): 49–64 & 66–71, Bibcode:2001Osir...16...49R, doi:10.1086/649338
  • Ragep, F. Jamil; Teresi, Dick; Hart, Roger (2002), Ancient Roots of Modern Science, Talk of the Nation (National Public Radio discussion; astronomy is discussed in the first fifteen-minute segment), diarkibkan daripada yang asal pada 2008-01-01, dicapai pada 2008-01-22 Unknown parameter |deadurl= ignored (bantuan); Italic or bold markup not allowed in: |publisher= (bantuan)
  • Rashed, Roshdi; Morelon, Régis (1996), Encyclopedia of the History of Arabic Science, 1, & 3, Routledge, ISBN 0-415-12410-7
  • Rashed, Roshdi (2007), "The Celestial Kinematics of Ibn al-Haytham", Arabic Sciences and Philosophy, Cambridge University Press, 17 (01): 7–55, doi:10.1017/S0957423907000355
  • Rosen, Edward (1985), "The Dissolution of the Solid Celestial Spheres", Journal of the History of Ideas, Journal of the History of Ideas, Vol. 46, No. 1, 46 (1): 13–31, doi:10.2307/2709773, JSTOR 2709773
  • Sabra, A. I. (1998), "Configuring the Universe: Aporetic, Problem Solving, and Kinematic Modeling as Themes of Arabic Astronomy", Perspectives on Science, 6: 288–330
  • Saliba, George (1979), "The First Non-Ptolemaic Astronomy at the Maraghah School", Isis, 70 (4): 571–576, doi:10.1086/352344
  • Saliba, George (1980), "Al-Biruni", dalam Strayer, Joseph (penyunting), Dictionary of the Middle Ages, 2, Charles Scribner's Sons, New York
  • Saliba, George; Sezgin, F. (1981), "Review: Geschichte des arabischen Schriftiums. Band VI: Astronomie bis ca. 430 H by F. Sezgin", Journal of the American Oriental Society, Journal of the American Oriental Society, Vol. 101, No. 2, 101 (2): 219–221, doi:10.2307/601763, JSTOR 601763
  • Saliba, George (1994a), "Early Arabic Critique of Ptolemaic Cosmology: A Ninth-Century Text on the Motion of the Celestial Spheres", Journal for the History of Astronomy, 25: 115–141, Bibcode:1994JHA....25..115S
  • Saliba, George (1994b), A History of Arabic Astronomy: Planetary Theories During the Golden Age of Islam, New York University Press, ISBN 0-8147-8023-7
  • Saliba, George (1999), Whose Science is Arabic Science in Renaissance Europe?, Columbia University, diarkibkan daripada yang asal pada 2008-01-15, dicapai pada 2008-01-22 Unknown parameter |deadurl= ignored (bantuan)
  • Saliba, George (2000), "Arabic versus Greek Astronomy: A Debate over the Foundations of Science", Perspectives on Science, 8 (4): 328–341, doi:10.1162/106361400753373713
  • Saliba, George (2007), Lecture at SOAS, London – Part 3/7, Muslim Heritage & YouTube, dicapai pada 2008-01-22
  • Singer, C. (1959), A Short History of Scientific Ideas, Oxford University Press, ISBN 0-19-881049-0
  • Suter, H. (1902), Mathematiker und Astronomen der Araber
  • Tabatabaei, Seyyed Muhammad Husayn, Tafsir al-Mizan
  • Wickens, G. M. (1976), "The Middle East as a world Centre of science and medicine", dalam Savory, Roger M. (penyunting), Introduction to Islamic Civilization, Cambridge University Press, m/s. 111–118, ISBN 0-521-09948-X

Pautan luar

  • "Tubitak Turkish National Observatory Antalya" Diarkibkan 2007-07-23 di archive.today
  • "Scientific American" article on Islamic Astronomy Diarkibkan 2005-12-18 di Wayback Machine
  • The Arab Union for Astronomy and Space Sciences (AUASS)
  • King Abdul Aziz Observatory
  • History of Islamic Astrolabes
  • Al-Sufi's constellations

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