Description: Finite Difference Methods for Nonlinear Evolution Equations, Hardcover by Sun, Zhi-zhong; Zhang, Qifeng; Gao, Guang-hua; China Science Publishing & Media (CON), ISBN 311079585X, ISBN-13 9783110795851, Brand New, Free shipping in the US Introduces recent research results of finite difference methods including important nonlinear evolution equations in applied science. The presented difference schemes include nonlinear difference schemes and linearized difference schemes. Features widely used nonlinear evolution equations such as Burgers equation, regular long wave equation, Schrodinger equation and more. Each PDE model includes details on efficiency, stability, and convergence. The series is devoted to the publication of high-level monographs and specialized graduate texts which cover the whole spectrum of applied mathematics, including its numerical aspects. The focus of the series is on the interplay between mathematical and numerical analysis, and also on its applications to mathematical models in the physical and life sciences. The aim of the series is to be an active forum for the dissemination of up-to-date information in the form of authoritative works that will serve the applied mathematics community as the basis for further research. Editorial Board Rémi Abgrall, Universität Zürich, Switzerland José Antonio Carrillo de la Plata, University of Oxford, UK Jean-Michel Coron, Université Pierre et Marie Curie, Paris, France Athanassios S. Fokas, Cambridge University, UK Irene Fonseca, Carnegie Mellon University, Pittsburgh, USA
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Book Title: Finite Difference Methods for Nonlinear Evolution Equations
Number of Pages: 432 Pages
Publication Name: Finite Difference Methods for Nonlinear Evolution Equations
Language: English
Publisher: DE Gruyter Gmbh, Walter
Publication Year: 2023
Subject: Differential Equations / General, Numerical Analysis, General
Type: Textbook
Item Weight: 29.8 Oz
Author: Qifeng Zhang, Guang-Hua Gao, Zhi-Zhong Sun
Item Length: 9.4 in
Subject Area: Mathematics
Series: De Gruyter Series in Applied and Numerical Mathematics Ser.
Item Width: 6.7 in
Format: Hardcover