9780321747747-0321747747-Fundamentals of Differential Equations and Boundary Value Problems (6th Edition)

Fundamentals of Differential Equations and Boundary Value Problems (6th Edition)

ISBN-13: 9780321747747
ISBN-10: 0321747747
Edition: 6
Author: R. Kent Nagle, Edward B. Saff, Arthur David Snider
Publication date: 2011
Publisher: Pearson
Format: Hardcover 888 pages
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Book details

ISBN-13: 9780321747747
ISBN-10: 0321747747
Edition: 6
Author: R. Kent Nagle, Edward B. Saff, Arthur David Snider
Publication date: 2011
Publisher: Pearson
Format: Hardcover 888 pages

Summary

Fundamentals of Differential Equations and Boundary Value Problems (6th Edition) (ISBN-13: 9780321747747 and ISBN-10: 0321747747), written by authors R. Kent Nagle, Edward B. Saff, Arthur David Snider, was published by Pearson in 2011. With an overall rating of 4.0 stars, it's a notable title among other Applied (Mathematics) books. You can easily purchase or rent Fundamentals of Differential Equations and Boundary Value Problems (6th Edition) (Hardcover, Used) from BooksRun, along with many other new and used Applied books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.43.

Description

Fundamentals of Differential Equations presents the basic theory of differential equations and offers a variety of modern applications in science and engineering. Available in two versions, these flexible texts offer the instructor many choices in syllabus design, course emphasis (theory, methodology, applications, and numerical methods), and in using commercially available computer software.

Fundamentals of Differential Equations, Eighth Edition is suitable for a one-semester sophomore- or junior-level course. Fundamentals of Differential Equations with Boundary Value Problems, Sixth Edition, contains enough material for a two-semester course that covers and builds on boundary value problems. The Boundary Value Problems version consists of the main text plus three additional chapters (Eigenvalue Problems and Sturm-Liouville Equations; Stability of Autonomous Systems; and Existence and Uniqueness Theory).

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