Modern Elementary Differential Equations

Modern Elementary Differential Equations
Title Modern Elementary Differential Equations PDF eBook
Author Richard Bellman
Publisher Courier Corporation
Pages 260
Release 1995-01-01
Genre Mathematics
ISBN 9780486686431

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Designed to introduce students to the theory and applications of differential equations and to help them formulate scientific problems in terms of such equations, this undergraduate-level text emphasizes applications to problems in biology, economics, engineering, and physics. This edition also includes material on discontinuous solutions, Riccati and Euler equations, and linear difference equations.

Elementary Differential Equations with Boundary Value Problems

Elementary Differential Equations with Boundary Value Problems
Title Elementary Differential Equations with Boundary Value Problems PDF eBook
Author William F. Trench
Publisher Thomson Brooks/Cole
Pages 764
Release 2001
Genre Mathematics
ISBN

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Written in a clear and accurate language that students can understand, Trench's new book minimizes the number of explicitly stated theorems and definitions. Instead, he deals with concepts in a conversational style that engages students. He includes more than 250 illustrated, worked examples for easy reading and comprehension. One of the book's many strengths is its problems, which are of consistently high quality. Trench includes a thorough treatment of boundary-value problems and partial differential equations and has organized the book to allow instructors to select the level of technology desired. This has been simplified by using symbols, C and L, to designate the level of technology. C problems call for computations and/or graphics, while L problems are laboratory exercises that require extensive use of technology. Informal advice on the use of technology is included in several sections and instructors who prefer not to emphasize technology can ignore these exercises without interrupting the flow of material.

Ordinary Differential Equations and Stability Theory:

Ordinary Differential Equations and Stability Theory:
Title Ordinary Differential Equations and Stability Theory: PDF eBook
Author David A. Sanchez
Publisher Courier Dover Publications
Pages 179
Release 2019-09-18
Genre Mathematics
ISBN 0486837599

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This brief modern introduction to the subject of ordinary differential equations emphasizes stability theory. Concisely and lucidly expressed, it is intended as a supplementary text for advanced undergraduates or beginning graduate students who have completed a first course in ordinary differential equations. The author begins by developing the notions of a fundamental system of solutions, the Wronskian, and the corresponding fundamental matrix. Subsequent chapters explore the linear equation with constant coefficients, stability theory for autonomous and nonautonomous systems, and the problems of the existence and uniqueness of solutions and related topics. Problems at the end of each chapter and two Appendixes on special topics enrich the text.

Elementary Differential Equations

Elementary Differential Equations
Title Elementary Differential Equations PDF eBook
Author Charles Henry Edwards
Publisher
Pages 623
Release 2008
Genre Differential equations
ISBN 9780136033929

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Ordinary Differential Equations and Dynamical Systems

Ordinary Differential Equations and Dynamical Systems
Title Ordinary Differential Equations and Dynamical Systems PDF eBook
Author Gerald Teschl
Publisher American Mathematical Society
Pages 370
Release 2024-01-12
Genre Mathematics
ISBN 147047641X

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This book provides a self-contained introduction to ordinary differential equations and dynamical systems suitable for beginning graduate students. The first part begins with some simple examples of explicitly solvable equations and a first glance at qualitative methods. Then the fundamental results concerning the initial value problem are proved: existence, uniqueness, extensibility, dependence on initial conditions. Furthermore, linear equations are considered, including the Floquet theorem, and some perturbation results. As somewhat independent topics, the Frobenius method for linear equations in the complex domain is established and Sturm–Liouville boundary value problems, including oscillation theory, are investigated. The second part introduces the concept of a dynamical system. The Poincaré–Bendixson theorem is proved, and several examples of planar systems from classical mechanics, ecology, and electrical engineering are investigated. Moreover, attractors, Hamiltonian systems, the KAM theorem, and periodic solutions are discussed. Finally, stability is studied, including the stable manifold and the Hartman–Grobman theorem for both continuous and discrete systems. The third part introduces chaos, beginning with the basics for iterated interval maps and ending with the Smale–Birkhoff theorem and the Melnikov method for homoclinic orbits. The text contains almost three hundred exercises. Additionally, the use of mathematical software systems is incorporated throughout, showing how they can help in the study of differential equations.

Existence Theorems for Ordinary Differential Equations

Existence Theorems for Ordinary Differential Equations
Title Existence Theorems for Ordinary Differential Equations PDF eBook
Author Francis J. Murray
Publisher Courier Corporation
Pages 178
Release 2013-11-07
Genre Mathematics
ISBN 0486154955

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This text examines fundamental and general existence theorems, along with uniqueness theorems and Picard iterants, and applies them to properties of solutions and linear differential equations. 1954 edition.

The Qualitative Theory of Ordinary Differential Equations

The Qualitative Theory of Ordinary Differential Equations
Title The Qualitative Theory of Ordinary Differential Equations PDF eBook
Author Fred Brauer
Publisher Courier Corporation
Pages 325
Release 2012-12-11
Genre Mathematics
ISBN 0486151514

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Superb, self-contained graduate-level text covers standard theorems concerning linear systems, existence and uniqueness of solutions, and dependence on parameters. Focuses on stability theory and its applications to oscillation phenomena, self-excited oscillations, more. Includes exercises.