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This book describes how natural philosophy and exact mathematical sciences joined together to make the Scientific Revolution possible.
Along with several collaborators, Russian-born chemist Wilhelm Ostwald is regarded as one of the key figures in developing the field now known as physical chemistry. In 1909, he was awarded the Nobel Prize for his work on catalysis and several other key processes. In this comprehensive volume, Ostwald lays out a complete scientific system and relates it to many other topics, including cognition and probability.
Greek Natural Philosophy presents the primary sources on the Presocratics in a straightforward way in order to tell a coherent story about the astonishing development of natural philosophy in ancient Greece and its relevance today. The book begins with historical influences on the birth of natural philosophy, especially literacy and the ecosystem services provided by the natural environment of ancient Greece. It argues that the individual philosophers' thoughts about the nature of the cosmos, living things, humankind, and human culture were linked by a "diachronic dialectic of ideas." Each philosopher's speculations were subjected to a critique by the next generation who crafted more subtle theories. The dialectical transition is traced from the mythopoeic worldview of Hesiod to the rational worldview of Thales and his Milesian successors, followed by Xenophanes and Heraclitus, then Parmenides and his Eleatic successors, and the qualitative pluralisms of Anaxagoras and Empedocles. An entirely fresh interpretation is provided of the Atomists and later Pythagoreans, whose work culminated in the ideas upon which Galileo, Newton, and the other architects of modern science, continued to build. In the span of only two centuries, the Presocratics developed the basic principles of philosophy and natural science, ecology, mathematical astronomy, the atomic theory of matter, an inertial theory of motion, and the possibility that our solar system is only one of infinitely many scattered throughout infinite time and space. The concluding chapter traces natural philosophy through subsequent centuries until its abandonment in 20th century philosophy, leading to the moribund state of philosophy by the end of that century. The authors show how environmental philosophy represents a return to natural philosophy and a model for the revival of philosophy's vigor and relevance in the 21st century. Greek Natural Philosophy is suitable for undergraduate and graduate courses in ancient Greek philosophy or in environmental philosophy, and will be of interest to scholars in these fields.
This book explores the dynamics of the commentary and textbook traditions in Aristotelian natural philosophy under the headings of doctrine, method, and scientific and social status. It enquires what the evolution of the Aristotelian commentary tradition can tell us about the character of natural philosophy as a pedagogical tool, as a scientific enterprise, and as a background to modern scientific thought. In a unique attempt to cut old-fashioned historiographic divisions, it brings together scholars of ancient, medieval, Renaissance and seventeenth-century philosophy. The book covers a remarkably broad range of topics: it starts with the first Greek commentators and ends with Leibniz.
Isaac Newton is one of the greatest scientists in history, yet the spectrum of his interests was much broader than that of most contemporary scientists. In fact, Newton would have defined himself not as a scientist, but as a natural philosopher. He was deeply involved in alchemical, religious, and biblical studies, and in the later part of his life he played a prominent role in British politics, economics, and the promotion of scientific research. Newton’s pivotal work Philosophiæ Naturalis Principia Mathematica, which sets out his laws of universal gravitation and motion, is regarded as one of the most important works in the history of science. Niccolò Guicciardini’s enlightening biography offers an accessible introduction both to Newton’s celebrated research in mathematics, optics, mechanics, and astronomy and to how Newton viewed these scientific fields in relation to his quest for the deepest secrets of the universe, matter theory and religion. Guicciardini sets Newton the natural philosopher in the troubled context of the religious and political debates ongoing during Newton’s life, a life spanning the English Civil Wars, the Restoration, the Glorious Revolution, and the Hanoverian succession. Incorporating the latest Newtonian scholarship, this fast-paced biography broadens our perception of both this iconic figure and the great scientific revolution of the early modern period.
This edition aims to make Margaret Cavendish’s most mature philosophical work more accessible to students and scholars of the period. Grounds of Natural Philosophy is important not only because it is Cavendish’s final articulation of her metaphysics but also because it succinctly outlines her fundamental views on “the nature of nature”—or the base substance and mechanics of all natural matter—and vividly demonstrates her probabilistic approach to philosophical enquiry. Moreover, Grounds spends considerable time discussing the human body, including the functions of the mind, a topic of growing interest to both historians of philosophy and literary scholars. This Broadview Edition opens to modern readers a vibrant, unique, and provocative voice of the past that challenges our standard view of seventeenth-century English philosophy.