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This book considers the concepts that lay at the heart of natural philosophy and physics from the time of Aristotle until the fourteenth century. The first part presents Aristotelian ideas and the second part presents the interpretation of these ideas by Philoponus, Albertus Magnus, Thomas Aquinas, John Buridan, and Duns Scotus. Across the eight chapters, the problems and texts from Aristotle that set the stage for European natural philosophy as it was practiced from the thirteenth to the seventeenth centuries are considered first as they appear in Aristotle and then as they are reconsidered in the context of later interests. The study concludes with an anticipation of Newton and the sense in which Aristotle's physics had been transformed.
This book considers the concepts that lay at the heart of natural philosophy and physics from the time of Aristotle until the fourteenth century. The first part presents Aristotelian ideas and the second part presents the interpretation of these ideas by Philoponus, Albertus Magnus, Thomas Aquinas, John Buridan, and Duns Scotus. Across the eight chapters, the problems and texts from Aristotle that set the stage for European natural philosophy as it was practiced from the thirteenth to the seventeenth centuries are considered first as they appear in Aristotle and then as they are reconsidered in the context of later interests. The study concludes with an anticipation of Newton and the sense in which Aristotle's physics had been transformed.
This study is the first comprehensive analysis of the physical theory of the Islamic philosopher Avicenna (d. 1037). It seeks to understand his contribution against the developments within the preceding Greek and Arabic intellectual milieus, and to appreciate his philosophy as such by emphasising his independence as a critical and systematic thinker. Exploring Avicenna’s method of "teaching and learning," it investigates the implications of his account of the natural body as a three-dimensionally extended composite of matter and form, and examines his views on nature as a principle of motion and his analysis of its relation to soul. Moreover, it demonstrates how Avicenna defends the Aristotelian conception of place against the strident criticism of his predecessors, among other things, by disproving the existence of void and space. Finally, it sheds new light on Avicenna’s account of the essence and the existence of time. For the first time taking into account the entire range of Avicenna’s major writings, this study fills a gap in our understanding both of the history of natural philosophy in general and of the philosophy of Avicenna in particular. This monograph has been awarded the annual BRAIS – De Gruyter Prize (Kulturpreis Bayern) in the Study of Islam and the Muslim World and the Iran World Award for Book of the Year (2020).
The Crisis of Causality deals with the reaction of the Dutch Calvinist theologian Gisbertus Voetius (1589-1676) to the New Philosophy of René Descartes (1596-1650). Voetius not only criticised the Cartesian idea of a mechanical Universe; he also foresaw that shifting conceptions of natural causality would make it impossible for theologians to explain the relationship between God and Creation in philosophical terms. This threatened the status of theology as a scientific discipline. Apart from a detailed analysis of the Scholastic and Cartesian notions of causality, the book offers new perspectives on related subjects, such as seventeenth-century university training and the Cartesian method of science. It will be of great importance to any student of seventeenth-century intellectual history, philosophy, theology and history of science.
Presents a survey of what Arabic philosophers, as commentators of Aristotle's Physics, have contributed to philosophy and science in the Middle Ages. Their influences on each other and the extent of the influences of previous Greek commentators on them, are also examined.
This text contains detailed discussion and analysis of Dun Scotus's accounts of the nature of matter and the structure of material substance. His views on these matters are sophisticated and highly original.
Examines Aristotle's vast influence upon the medieval Arabic philosophical tradition and includes contributions from every discipline within his corpus.
The Reader's Guide to the History of Science looks at the literature of science in some 550 entries on individuals (Einstein), institutions and disciplines (Mathematics), general themes (Romantic Science) and central concepts (Paradigm and Fact). The history of science is construed widely to include the history of medicine and technology as is reflected in the range of disciplines from which the international team of 200 contributors are drawn.
Scribes of Space posits that the conception of space—the everyday physical areas we perceive and through which we move—underwent critical transformations between the thirteenth and fifteenth centuries. Matthew Boyd Goldie examines how natural philosophers, theologians, poets, and other thinkers in late medieval Britain altered the ideas about geographical space they inherited from the ancient world. In tracing the causes and nature of these developments, and how geographical space was consequently understood, Goldie focuses on the intersection of medieval science, theology, and literature, deftly bringing a wide range of writings—scientific works by Nicole Oresme, Jean Buridan, the Merton School of Oxford Calculators, and Thomas Bradwardine; spiritual, poetic, and travel writings by John Lydgate, Robert Henryson, Margery Kempe, the Mandeville author, and Geoffrey Chaucer—into conversation. This pairing of physics and literature uncovers how the understanding of spatial boundaries, locality, elevation, motion, and proximity shifted across time, signaling the emergence of a new spatial imagination during this era.
Medieval Science, Technology, and Medicine details the whole scope of scientific knowledge in the medieval period in more than 300 A to Z entries. This resource discusses the research, application of knowledge, cultural and technology exchanges, experimentation, and achievements in the many disciplines related to science and technology. Coverage includes inventions, discoveries, concepts, places and fields of study, regions, and significant contributors to various fields of science. There are also entries on South-Central and East Asian science. This reference work provides an examination of medieval scientific tradition as well as an appreciation for the relationship between medieval science and the traditions it supplanted and those that replaced it. For a full list of entries, contributors, and more, visit the Routledge Encyclopedias of the Middle Ages website.