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Partial Differential Equations with Fourier Series and Boundary Value Problems (Third Edition)
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Product Details
Author:
Nakhle H. Asmar
Series:
Dover Books on Mathematics
Format:
Paperback
Pages:
816
Publisher:
Dover Publications (September 21, 2016)
Language:
English
ISBN-13:
9780486807379
ISBN-10:
0486807371
Weight:
56oz
Dimensions:
8" x 10"
Case Pack:
8
File:
Dover-Dover_07012026_P10278791_onix30_Complete-20260701.xml
Folder:
Dover
As low as:
$61.70
List Price:
$64.95
Publisher Identifier:
P-DOVER
Discount Code:
D
Audience:
General/trade
Pub Discount:
65
Imprint:
Dover Publications
Overview
This text provides an introduction to partial differential equations and boundary value problems, including Fourier series. The treatment offers students a smooth transition from a course in elementary ordinary differential equations to more advanced topics in a first course in partial differential equations. This widely adopted and successful book also serves as a valuable reference for engineers and other professionals. The approach emphasizes applications, with particular stress on physics and engineering applications. Rich in proofs and examples, the treatment features many exercises in each section.
Relevant Mathematica files are available for download from author Nakhlé Asmar's website; however, the book is completely usable without computer access. The Students' Solutions Manual can be downloaded for free from the Dover website, and the Instructor's Solutions Manual is available upon request for professors and potential teachers. The text is suitable for undergraduates in mathematics, physics, engineering, and other fields who have completed a course in ordinary differential equations.
Relevant Mathematica files are available for download from author Nakhlé Asmar's website; however, the book is completely usable without computer access. The Students' Solutions Manual can be downloaded for free from the Dover website, and the Instructor's Solutions Manual is available upon request for professors and potential teachers. The text is suitable for undergraduates in mathematics, physics, engineering, and other fields who have completed a course in ordinary differential equations.








