Contributions to the Theory of Nonlinear Oscillations, Volume V

Contributions to the Theory of Nonlinear Oscillations, Volume V
Author: Lamberto Cesari
Publisher: Princeton University Press
Total Pages: 300
Release: 2016-03-02
Genre: Mathematics
ISBN: 1400882648

Classic contributions to the theory of nonlinear oscillations from the acclaimed Annals of Mathematics Studies series Princeton University Press is proud to have published the Annals of Mathematics Studies since 1940. One of the oldest and most respected series in science publishing, it has included many of the most important and influential mathematical works of the twentieth century. The series continues this tradition as Princeton University Press publishes the major works of the twenty-first century. To mark the continued success of the series, all books are available in paperback and as ebooks.

Contributions to the Theory of Nonlinear Oscillations

Contributions to the Theory of Nonlinear Oscillations
Author: Solomon Lefschetz
Publisher: Princeton University Press
Total Pages: 368
Release: 1950-04-21
Genre: Mathematics
ISBN: 9780691079318

The description for this book, Contributions to the Theory of Nonlinear Oscillations (AM-20), Volume I, will be forthcoming.

Contributions to the Theory of Nonlinear Oscillations, Volume II

Contributions to the Theory of Nonlinear Oscillations, Volume II
Author: Solomon Lefschetz
Publisher: Princeton University Press
Total Pages: 128
Release: 2016-03-02
Genre: Mathematics
ISBN: 1400882702

These two new collections, numbers 28 and 29 respectively in the Annals of Mathematics Studies, continue the high standard set by the earlier Annals Studies 20 and 24 by bringing together important contributions to the theories of games and of nonlinear differential equations.

Contributions to the Theory of Nonlinear Oscillations, Volume III

Contributions to the Theory of Nonlinear Oscillations, Volume III
Author: Solomon Lefschetz
Publisher: Princeton University Press
Total Pages: 300
Release: 2016-03-02
Genre: Mathematics
ISBN: 1400882176

Classic contributions to the theory of nonlinear oscillations from the acclaimed Annals of Mathematics Studies series Princeton University Press is proud to have published the Annals of Mathematics Studies since 1940. One of the oldest and most respected series in science publishing, it has included many of the most important and influential mathematical works of the twentieth century. The series continues this tradition as Princeton University Press publishes the major works of the twenty-first century. To mark the continued success of the series, all books are available in paperback and as ebooks.

Nonlinear Oscillations of Hamiltonian PDEs

Nonlinear Oscillations of Hamiltonian PDEs
Author: Massimiliano Berti
Publisher: Springer Science & Business Media
Total Pages: 191
Release: 2007-10-01
Genre: Mathematics
ISBN: 0817646809

Many partial differential equations (PDEs) that arise in physics can be viewed as infinite-dimensional Hamiltonian systems. This monograph presents recent existence results of nonlinear oscillations of Hamiltonian PDEs, particularly of periodic solutions for completely resonant nonlinear wave equations. The text serves as an introduction to research in this fascinating and rapidly growing field. Graduate students and researchers interested in variational techniques and nonlinear analysis applied to Hamiltonian PDEs will find inspiration in the book.

Introduction to Nonlinear Oscillations

Introduction to Nonlinear Oscillations
Author: Vladimir I. Nekorkin
Publisher: John Wiley & Sons
Total Pages: 264
Release: 2015-04-01
Genre: Science
ISBN: 3527685421

A systematic outline of the basic theory of oscillations, combining several tools in a single textbook. The author explains fundamental ideas and methods, while equally aiming to teach students the techniques of solving specific (practical) or more complex problems. Following an introduction to fundamental notions and concepts of modern nonlinear dynamics, the text goes on to set out the basics of stability theory, as well as bifurcation theory in one and two-dimensional cases. Foundations of asymptotic methods and the theory of relaxation oscillations are presented, with much attention paid to a method of mappings and its applications. With each chapter including exercises and solutions, including computer problems, this book can be used in courses on oscillation theory for physics and engineering students. It also serves as a good reference for students and scientists in computational neuroscience.

Nonlinear Oscillations and Waves in Dynamical Systems

Nonlinear Oscillations and Waves in Dynamical Systems
Author: P.S Landa
Publisher: Springer Science & Business Media
Total Pages: 550
Release: 2013-06-29
Genre: Mathematics
ISBN: 9401587639

A rich variety of books devoted to dynamical chaos, solitons, self-organization has appeared in recent years. These problems were all considered independently of one another. Therefore many of readers of these books do not suspect that the problems discussed are divisions of a great generalizing science - the theory of oscillations and waves. This science is not some branch of physics or mechanics, it is a science in its own right. It is in some sense a meta-science. In this respect the theory of oscillations and waves is closest to mathematics. In this book we call the reader's attention to the present-day theory of non-linear oscillations and waves. Oscillatory and wave processes in the systems of diversified physical natures, both periodic and chaotic, are considered from a unified poin t of view . The relation between the theory of oscillations and waves, non-linear dynamics and synergetics is discussed. One of the purposes of this book is to convince reader of the necessity of a thorough study popular branches of of the theory of oscillat ions and waves, and to show that such science as non-linear dynamics, synergetics, soliton theory, and so on, are, in fact , constituent parts of this theory. The primary audiences for this book are researchers having to do with oscillatory and wave processes, and both students and post-graduate students interested in a deep study of the general laws and applications of the theory of oscillations and waves.