The Mathematical Principles of Natural Philosophy
Mathematical Principles of Natural Philosophy, often known as the Principia, is one of the most important scientific works ever to have been written and has had a profound impact on modern science. Consisting of three separate books, the Principia states Newton’s laws of motion and Newton’s law of universal gravitation. Understanding and acceptance of these theories was not immediate, however by the end of the seventeenth century no one could deny that Newton had far exceeded all previous works and revolutionised scientific thinking.

FLAME TREE's Great Works That Shape Our World is a new series of definitive books drawing on ancient, medieval and modern writing. Offering a fund of essential knowledge, and spell-binding stories it satisfies every facet of human interest: scientific, philosophical, sociological, romantic, dramatic and mysterious. From the ancient wisdom of the Mahābhārata to the curious power of Don Quixote, Boccaccio's Decameron and Melville's classic Moby Dick, from the scientific wonders of Isaac Newton and Albert Einstein to the great thinkers of Western and Asian philosophy.

Created to entertain, inform and enrich, the new series brings infinite variety to refresh the mind, presented in beautiful editions for the modern market. Each book features a new, accessible introduction, specially written for these editions, placing the book in context both as part of the new series, and highlighting its special contribution to the advancement of human understanding; they examine the significance of each work, their impact at time of publication, and their influence today.
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The Mathematical Principles of Natural Philosophy
Mathematical Principles of Natural Philosophy, often known as the Principia, is one of the most important scientific works ever to have been written and has had a profound impact on modern science. Consisting of three separate books, the Principia states Newton’s laws of motion and Newton’s law of universal gravitation. Understanding and acceptance of these theories was not immediate, however by the end of the seventeenth century no one could deny that Newton had far exceeded all previous works and revolutionised scientific thinking.

FLAME TREE's Great Works That Shape Our World is a new series of definitive books drawing on ancient, medieval and modern writing. Offering a fund of essential knowledge, and spell-binding stories it satisfies every facet of human interest: scientific, philosophical, sociological, romantic, dramatic and mysterious. From the ancient wisdom of the Mahābhārata to the curious power of Don Quixote, Boccaccio's Decameron and Melville's classic Moby Dick, from the scientific wonders of Isaac Newton and Albert Einstein to the great thinkers of Western and Asian philosophy.

Created to entertain, inform and enrich, the new series brings infinite variety to refresh the mind, presented in beautiful editions for the modern market. Each book features a new, accessible introduction, specially written for these editions, placing the book in context both as part of the new series, and highlighting its special contribution to the advancement of human understanding; they examine the significance of each work, their impact at time of publication, and their influence today.
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The Mathematical Principles of Natural Philosophy

The Mathematical Principles of Natural Philosophy

The Mathematical Principles of Natural Philosophy

The Mathematical Principles of Natural Philosophy

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Overview

Mathematical Principles of Natural Philosophy, often known as the Principia, is one of the most important scientific works ever to have been written and has had a profound impact on modern science. Consisting of three separate books, the Principia states Newton’s laws of motion and Newton’s law of universal gravitation. Understanding and acceptance of these theories was not immediate, however by the end of the seventeenth century no one could deny that Newton had far exceeded all previous works and revolutionised scientific thinking.

FLAME TREE's Great Works That Shape Our World is a new series of definitive books drawing on ancient, medieval and modern writing. Offering a fund of essential knowledge, and spell-binding stories it satisfies every facet of human interest: scientific, philosophical, sociological, romantic, dramatic and mysterious. From the ancient wisdom of the Mahābhārata to the curious power of Don Quixote, Boccaccio's Decameron and Melville's classic Moby Dick, from the scientific wonders of Isaac Newton and Albert Einstein to the great thinkers of Western and Asian philosophy.

Created to entertain, inform and enrich, the new series brings infinite variety to refresh the mind, presented in beautiful editions for the modern market. Each book features a new, accessible introduction, specially written for these editions, placing the book in context both as part of the new series, and highlighting its special contribution to the advancement of human understanding; they examine the significance of each work, their impact at time of publication, and their influence today.

Product Details

ISBN-13: 9781839641503
Publisher: Flame Tree Publishing
Publication date: 08/11/2020
Series: Great Works that Shape our World
Edition description: Deluxe
Pages: 480
Product dimensions: 6.00(w) x 9.25(h) x 1.33(d)

About the Author

Sir Isaac Newton (1642–1727) was an English physicist and mathematician who was a leading figure in the scientific revolution. His work throughout the seventeenth century provided the basis for modern science, including his three laws of motion and the law of universal gravitation. Newton’s career was prolific. He was president of the Royal Society and in 1705 he was knighted, becoming the first ever scientist to receive the honour.

Kirill Krasnov is a Professor of Mathematical Physics at the University of Nottingham. He has held Postdoctoral positions at the University of California, Santa Barbara and Max Planck Institute for Gravitational Physics, Potsdam, and has been the recipient of the prestigious EPSRC Advanced Fellowship and the ERC Consolidator Grant.

Table of Contents

Definitions; The Axioms, or the Laws of Motion; On the Motion of Bodies, Book One: I.1. On the theory of limits, which is used to deduce later results; I.2. On the calculation of centripetal forces; I.3. On the motion of particles in eccentric conic sections; I.4. On the calculation of elliptical, parabolic, and hyperbolic orbits; I.5. On the calculation of orbits when neither focus is given; I.6. On the calculation of motion in given orbits; I.7. On the ascent and descent of particles in a straight line; I.8. On the calculation of the orbits in which particles revolve under any centripetal forces; I.9. On the motion of particles in moving orbits, and the motion of the apsides; I.10. On the motion of particles on given surfaces, and the swinging motion of a string pendulum; I.11. On the motion of particles attracting each other by centripetal forces; I.12. On the attractive forces of spherical bodies; I.13. On the attractive forces of non-spherical bodies; I.14. On the motion of particles attracted by centripetal forces towards the various parts of arbitrarily large bodies; On the Motion of Bodies, Book Two: II.1. On the motion of particles moving against a resistance that is proportional to the speed; II.2. On the motion of bodies moving against a resistance that is proportional to the square of the speed; III.3. On the motion of bodies to which the resistance consists of one part that is proportional to the speed, and another to the square of the speed; II.4. On the circular motion of bodies in resisting media; II.5. On the density and compression of fluids, and on hydrostatics; II.6. On the motion and resistance of string pendulums; II.7. On the motion of fluids and the resistance of projectiles; II.8. On motion propagated through fluids; II.9. On the circular motion of fluids; On Celestial Mechanics, Book Three: Introduction to Book Three; The Rules of Scientific Argument; Phenomena; Propositions; On the motion of the nodes of the moon; General Scholium; A. Mathematical notation and results assumed in The Principia; B. Calculus in The Principia; C. Newton's astronomy; D. Newton's theory of tides; E. Technical terms used in the translation; F. On Newton's style, and translating The Principia; G. Some difficult words; H. Astrological symbols; I. Glossary of Latin terms; J. Technological illustrations; References; Index.
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