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In the Spring of 1966, I gave a series of lectures in the Princeton University Department of Physics, aimed at recent mathematical results in mechanics, especially the work of Kolmogorov, Arnold, and Moser and its application to Laplace's question of stability of the solar system. Mr. Marsden's notes of the lectures, with some revision and expansion by both of us, became this book.Although the lectures were attended equally by mathematicians and physicists, our goal was to make the subject available to the nonspecialists. Therefore, the mathematical background assumed was dictated by the physics graduate students in the audience. Hoping this would be typical of the people interested in this subject, I have made the same assumptions in the book.Thus, we take for granted basic undergraduate calculus and linear algebra, and a limited amount of classical analysis, point set topology, and elementary mechanics. Then we begin with modern advanced calculus, and go on to a complete and self-contained treatment of graduate level classical mechanics.--From the Preface to the First Edition
This text investigates the mathematical foundations of classical mechanics, specifically addressing the stability of the solar system through the lens of modern analysis. The authors, Ralph H. Abraham and Jerrold E. Marsden, synthesize advanced mathematical results—notably those of Kolmogorov, Arnold, and Moser—to provide a rigorous framework for graduate-level physics. By assuming a baseline of undergraduate calculus and linear algebra, the book bridges the gap between classical mechanics and contemporary mathematical theory for both physicists and mathematicians.
What You Will Find
Experts and academics frequently cite this work as a foundational text for those seeking to understand the intersection of geometry and classical mechanics. Readers often note the high level of mathematical rigor, which requires a solid background in analysis and topology to fully grasp the presented proofs.
Page Count:
848
Publication Date:
1994-07-31
Publisher:
CRC Press
ISBN-10:
0201408406
ISBN-13:
9780201408409
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