Central Library, Indian Institute of Technology Delhi
केंद्रीय पुस्तकालय, भारतीय प्रौद्योगिकी संस्थान दिल्ली

Computational partial differential equations using MATLAB®

By: Li, JichunContributor(s): Chen, Yi-TungMaterial type: TextTextSeries: Textbooks in mathematics ; 12Publication details: Boca Raton: CRC Press, 2020Edition: 2nd edDescription: xiii, 408pISBN: 9780367217747Subject(s): Applied mathematics | Differential equations | Parabolic equations | Hyperbolic equations | Elliptic equations | MATLAB | Electromagnetics | Finite difference methodsUDC classification: 517.951:681.3.06M Summary: In this popular text for an Numerical Analysis course, the authors introduce several major methods of solving various partial differential equations (PDEs) including elliptic, parabolic, and hyperbolic equations. It covers traditional techniques including the classic finite difference method, finite element method, and state-of-the-art numercial methods.The text uniquely emphasizes both theoretical numerical analysis and practical implementation of the algorithms in MATLAB. This new edition includes a new chapter, Finite Value Method, the presentation has been tightened, new exercises and applications are included, and the text refers now to the latest release of MATLAB.
List(s) this item appears in: MATLAB
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Book Book Indian Institute of Technology Delhi - Central Library
Mathematics
General 517.951:681.3.06M LI-C (Browse shelf(Opens below)) Available 176327
Book Book Indian Institute of Technology Delhi - Central Library
Mechanical Engineering
General 517.951:681.3.06M LI-C (Browse shelf(Opens below)) Available 175809
Book Book Indian Institute of Technology Delhi - Central Library
Central Library
General 517.951:681.3.06M LI-C (Browse shelf(Opens below)) Available 175283

Includes bibliography and index (p. 405-408)

In this popular text for an Numerical Analysis course, the authors introduce several major methods of solving various partial differential equations (PDEs) including elliptic, parabolic, and hyperbolic equations. It covers traditional techniques including the classic finite difference method, finite element method, and state-of-the-art numercial methods.The text uniquely emphasizes both theoretical numerical analysis and practical implementation of the algorithms in MATLAB. This new edition includes a new chapter, Finite Value Method, the presentation has been tightened, new exercises and applications are included, and the text refers now to the latest release of MATLAB.

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