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The rise and fall of the Islamic scientific tradition, and the relationship of Islamic science to European science during the Renaissance. The Islamic scientific tradition has been described many times in accounts of Islamic civilization and general histories of science, with most authors tracing its beginnings to the appropriation of ideas from other ancient civilizations—the Greeks in particular. In this thought-provoking and original book, George Saliba argues that, contrary to the generally accepted view, the foundations of Islamic scientific thought were laid well before Greek sources were formally translated into Arabic in the ninth century. Drawing on an account by the tenth-century intellectual historian Ibn al-Naidm that is ignored by most modern scholars, Saliba suggests that early translations from mainly Persian and Greek sources outlining elementary scientific ideas for the use of government departments were the impetus for the development of the Islamic scientific tradition. He argues further that there was an organic relationship between the Islamic scientific thought that developed in the later centuries and the science that came into being in Europe during the Renaissance. Saliba outlines the conventional accounts of Islamic science, then discusses their shortcomings and proposes an alternate narrative. Using astronomy as a template for tracing the progress of science in Islamic civilization, Saliba demonstrates the originality of Islamic scientific thought. He details the innovations (including new mathematical tools) made by the Islamic astronomers from the thirteenth to sixteenth centuries, and offers evidence that Copernicus could have known of and drawn on their work. Rather than viewing the rise and fall of Islamic science from the often-narrated perspectives of politics and religion, Saliba focuses on the scientific production itself and the complex social, economic, and intellectual conditions that made it possible.
Recent historical research and new perspectives on the Islamic scientific tradition.
"In this wide-ranging and masterly work, Ahmad Dallal examines the significance of scientific knowledge and situates the culture of science in relation to other cultural forces in Muslim societies. He traces the ways the realms of scientific knowledge and religious authority were delineated historically. For example, the emergence of new mathematical methods revealed that many mosques built in the early period of Islamic expansion were misaligned relative to the Ka'ba in Mecca; this misalignment was critical because Muslims must face Mecca during their five daily prayers. The realization of a discrepancy between tradition and science often led to demolition and rebuilding and, most important, to questioning whether scientific knowledge should take precedence over religious authority in a matter where their realms clearly overlapped"--Page 2 of cover.
From Musa al-Khwarizmi who developed algebra in 9th century Baghdad to al-Jazari, a 13th-century Turkish engineer whose achievements include the crank, the camshaft and the reciprocating piston, Science and Islam tells the story of one of history’s most misunderstood yet rich and fertile periods in science: the extraordinary Islamic scientific revolution between 700 and 1400 CE.
The Muslim world is not commonly associated with science fiction. Religion and repression have often been blamed for a perceived lack of creativity, imagination and future-oriented thought. However, even the most authoritarian Muslim-majority countries have produced highly imaginative accounts on one of the frontiers of knowledge: astrobiology, or the study of life in the universe. This book argues that the Islamic tradition has been generally supportive of conceptions of extra-terrestrial life, and in this engaging account, Jörg Matthias Determann provides a survey of Arabic, Bengali, Malay, Persian, Turkish, and Urdu texts and films, to show how scientists and artists in and from Muslim-majority countries have been at the forefront of the exciting search. Determann takes us to little-known dimensions of Muslim culture and religion, such as wildly popular adaptations of Star Wars and mysterious movements centred on UFOs. Repression is shown to have helped science fiction more than hurt it, with censorship encouraging authors to disguise criticism of contemporary politics by setting plots in future times and on distant planets. The book will be insightful for anyone looking to explore the science, culture and politics of the Muslim world and asks what the discovery of extra-terrestrial life would mean for one of the greatest faiths.
Family guide, Dazzling details in folded front cover.
Within the field of Islamic Studies, scientific research of Muslim theology is a comparatively young discipline. Much progress has been achieved over the past decades with respect both to discoveries of new materials and to scholarly approaches to the field. The Oxford Handbook of Islamic Theology provides a comprehensive and authoritative survey of the current state of the field. It provides a variegated picture of the state of the art and at the same time suggests new directions for future research. Part One covers the various strands of Islamic theology during the formative and early middle periods, rational as well as scripturalist. To demonstrate the continuous interaction among the various theological strands and its repercussions (during the formative and early middle period and beyond), Part Two offers a number of case studies. These focus on specific theological issues that have developed through the dilemmatic and often polemical interactions between the different theological schools and thinkers. Part Three covers Islamic theology during the later middle and early modern periods. One of the characteristics of this period is the growing amalgamation of theology with philosophy (Peripatetic and Illuminationist) and mysticism. Part Four addresses the impact of political and social developments on theology through a number of case studies: the famous mi?na instituted by al-Ma'mun (r. 189/813-218/833) as well as the mihna to which Ibn 'Aqil (d. 769/1367) was subjected; the religious policy of the Almohads; as well as the shifting interpretations throughout history (particularly during Mamluk and Ottoman times) of the relation between Ash'arism and Maturidism that were often motivated by political motives. Part Five considers Islamic theological thought from the end of the early modern and during the modern period.
Science and Islam provides a detailed account of the relationship between Islam and science from the emergence of the Islamic scientific tradition in the eighth century to the present time. This relationship has gone through three distinct phases. The first phase began with the emergence of science in the Islamic civilization in the eighth century and ended with the rise of modern science in the West; the second period is characterized by the arrival of modern science in the Muslim world, most of which at that time was under colonial occupation; and the third period, which began around 1950, is characterized by a more mature approach to the major questions that modern science has posed for all religious traditions. Based on primary sources, the book presents a panorama of Islamic views on some of the major issues in the current science and religion discourse. Written in accessible language, Science and Islam is an authentic account of the multi-faceted and complex issues that arise at the interface of Islamic intellectual tradition and science. Rich in historical details, the book is a fascinating survey of the interaction of Islamic beliefs with the enterprise of science.