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Analytical Mechanics is the investigation of motion with the rigorous tools of mathematics. Rooted in the works of Lagrange, Euler, Poincare (to mention just a few), it is a very classical subject with fascinating developments and still rich of open problems. It addresses such fundamental questions as: Is the solar system stable? Is there a unifying 'economy' principle in mechanics? How can a point mass be described as a 'wave'? And has remarkable applications to many branches of physics (Astronomy, Statistical mechanics, Quantum Mechanics).This book was written to fill a gap between elementary expositions and more advanced (and clearly more stimulating) material. It takes up the challenge to explain the most relevant ideas (generally highly non-trivial) and to show the most important applications using a plain language and 'simple' mathematics, often through an original approach. Basic calculus is enough for the reader to proceed through the book. New mathematical concepts are fully introduced and illustrated in a simple, student-friendly language. More advanced chapters can be omitted while still following the main ideas. Anybody wishing to go deeper in some direction will find at least the flavor of recent developments and many bibliographical references. The theory is always accompanied by examples. Many problems are suggested and some are completely worked out at the end of each chapter. The book may effectively be used (and has been used at several Italian Universities) for undergraduate as well as for PhD courses in Physics and Mathematics at various levels.
This text investigates the fundamental principles of motion through the rigorous application of mathematical frameworks, bridging the gap between elementary physics and advanced theoretical research. Authors Antonio Fasano and S. Marmi utilize their academic expertise to present classical mechanics—rooted in the work of Lagrange, Euler, and Poincaré—in a manner accessible to students who possess a foundational understanding of calculus. The book argues that complex mechanical problems, such as the stability of the solar system or the wave-particle duality of mass, can be effectively communicated through clear, original mathematical approaches without sacrificing technical accuracy.
What You Will Find
Experts and educators frequently highlight this text as a versatile resource suitable for both undergraduate and graduate-level physics and mathematics curricula. Readers often note that the prose successfully balances academic rigor with a student-friendly approach, making it a reliable reference for those seeking to transition into more advanced theoretical studies.
Page Count:
792
Publication Date:
2006-06-01
Publisher:
Oxford University Press
ISBN-10:
0198508026
ISBN-13:
9780198508021
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