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Solving ODEs with MATLAB / L.F. Shampine, I. Gladwell, S. Thompson.

By: Contributor(s): Material type: TextTextPublication details: Cambridge ; New York : Cambridge University Press, 2003.Description: 1 online resource (viii, 263 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 0511078641
  • 9780511078644
  • 9780511615542
  • 051161554X
  • 9780521824040
  • 0521824044
  • 1107137152
  • 9781107137158
  • 0521530946
  • 9780521530941
  • 9786612387234
  • 6612387238
  • 1282387235
  • 9781282387232
  • 0511643411
  • 9780511643415
  • 0511204736
  • 9780511204739
  • 0511566271
  • 9780511566271
  • 0511077076
  • 9780511077074
Subject(s): Genre/Form: Additional physical formats: Print version:: Solving ODEs with MATLAB.DDC classification:
  • 515/.35 22
LOC classification:
  • QA371.5.D37 S43 2003eb
Other classification:
  • ST 315
  • ST 601 M35
  • DAT 306f
  • ELT 035f
  • ELT 515f
Online resources:
Contents:
Getting started -- Initial value problems -- Boundary value problems -- Delay differential equations.
Summary: "This book is for people who need to solve ordinary differential equations (ODEs), both initial value problems (IVPs) and boundary value problems (BVPs) as well as delay differential equations (DDEs). These topics are usually taught in separate courses of length one semester each, but solving ODEs with Matlab provides a sound treatment of all three in about 250 pages. The chapters on each of these topics begin with a discussion of "the facts of life" for the problem, mainly by means of examples. Numerical methods for the problem are then developed - but only the methods most widely used. Although the treatment of each method is brief and technical issues are minimized, the issues important in practice and for understanding the codes are discussed. Often solving a real problem is much more than just learning how to call a code. The last part of each chapter is a tutorial that shows how to solve problems by means of small but realistic examples."--Jacket
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Includes bibliographical references (pages 251-256) and index.

Print version record.

Getting started -- Initial value problems -- Boundary value problems -- Delay differential equations.

"This book is for people who need to solve ordinary differential equations (ODEs), both initial value problems (IVPs) and boundary value problems (BVPs) as well as delay differential equations (DDEs). These topics are usually taught in separate courses of length one semester each, but solving ODEs with Matlab provides a sound treatment of all three in about 250 pages. The chapters on each of these topics begin with a discussion of "the facts of life" for the problem, mainly by means of examples. Numerical methods for the problem are then developed - but only the methods most widely used. Although the treatment of each method is brief and technical issues are minimized, the issues important in practice and for understanding the codes are discussed. Often solving a real problem is much more than just learning how to call a code. The last part of each chapter is a tutorial that shows how to solve problems by means of small but realistic examples."--Jacket

English.

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