Course in Differential Equations with Boundary Value Problems

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A01=Randall J. Swift
A01=Ryan Szypowski
A01=Stephen A. Wirkus
advanced differential equations for scientists
applied mathematics textbook
Author_Randall J. Swift
Author_Ryan Szypowski
Author_Stephen A. Wirkus
Autonomous Equation
Boundary Value problems
Category=PBKJ
Characteristic Polynomial
computational problem solving
Cos Nx
Direction Field
engineering mathematics applications
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
Equilibrium Solution
Euler's Method
Euler’s Method
Fourier Cosine Series
Fourier Series
Fourier Sine Series
Fourth Order Runge Kutta Method
Generalized Fourier Series
Half Range Fourier
Half Range Fourier Cosine Series
Half Range Fourier Sine Series
mathematical modeling methods
numerical solution techniques
Odd Function
Orindary Differential Equations
Orthogonal functions
Partial Differential Equations
Partial Sums
Phase Line
Piecewise Continuous Function
Regular Sturm Liouville Problem
Runge Kutta Method
Saddlenode Bifurcation
scientific computing with MATLAB
Separated Boundary Conditions
Solution Curve
Sturm Liouville Problem
Sturm Liouville problems
Transcritical Bifurcation

Product details

  • ISBN 9781498736053
  • Weight: 3950g
  • Dimensions: 178 x 254mm
  • Publication Date: 29 Dec 2016
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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A Course in Differential Equations with Boundary Value Problems, 2nd Edition adds additional content to the author’s successful A Course on Ordinary Differential Equations, 2nd Edition. This text addresses the need when the course is expanded.

The focus of the text is on applications and methods of solution, both analytical and numerical, with emphasis on methods used in the typical engineering, physics, or mathematics student’s field of study. The text provides sufficient problems so that even the pure math major will be sufficiently challenged.

The authors offer a very flexible text to meet a variety of approaches, including a traditional course on the topic. The text can be used in courses when partial differential equations replaces Laplace transforms. There is sufficient linear algebra in the text so that it can be used for a course that combines differential equations and linear algebra.

Most significantly, computer labs are given in MATLAB®, Mathematica®, and Maple™. The book may be used for a course to introduce and equip the student with a knowledge of the given software. Sample course outlines are included.

Features

  • MATLAB®, Mathematica®, and Maple™ are incorporated at the end of each chapter
  • All three software packages have parallel code and exercises
  • There are numerous problems of varying difficulty for both the applied and pure math major, as well as problems for engineering, physical science and other students.
  • An appendix that gives the reader a "crash course" in the three software packages
  • Chapter reviews at the end of each chapter to help the students review
  • Projects at the end of each chapter that go into detail about certain topics and introduce new topics that the students are now ready to see
  • Answers to most of the odd problems in the back of the book

Stephen A. Wirkus is an associate professor of mathematics at Arizona State University, where he has been a recipient of the Professor of the Year Award and NSF AGEP Mentor of the Year Award. He has published over 30 papers and technical reports. He completed his Ph.D. at Cornell University under the direction of Richard Rand.

Randall J. Swift is a professor of mathematics and statistics at California State Polytechnic University, Pomona, where he has been a recipient of the Ralph W. Ames Distinguished Research Award. He has authored more than 80 journal articles, three research monographs, and three textbooks. He completed his Ph.D. at the University of California, Riverside under the direction of M.M. Rao.

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