Applied numerical methods with MATLAB for engineers and scientists / Steven C. Chapra

By: Chapra, Steven C
Material type: TextTextPublisher: New York : McGraw-Hill, ©2012Edition: 3rd edDescription: xvii, 653 pages : color illustrations ; 24 cmContent type: text Media type: computer Carrier type: online resourceISBN: 9780073401102 (hbk. : alk. paper); 0073401102 (hbk. : alk. paper); 9780071086189 (hbk. : alk. paper); 0071086188 (hbk. : alk. paper)Subject(s): MATLAB -- Textbooks | Numerical analysis -- Data processing -- TextbooksGenre/Form: Textbooks. DDC classification: 518 LOC classification: QA297 | .C4185 2012Online resources: Click here to access online
Contents:
Mathematical modeling, numerical methods, and problem solving -- MATHLAB fundamentals -- Programming with mathlab -- Roundoff and truncation errors -- Roots: bracketing methods -- Roots: open methods -- Optimization -- Linear algebraic equations and matrices -- Gauss elimination -- LU factorization -- Matrix inverse and condition -- Iterative methods -- Eigenvalues -- Linear regression -- General linear least-squeares and nonlinear regession -- Fourier analysis -- Polynomial interpolation -- Splines and piecewise interpolation -- Numerical integration formulas -- Numerical integration of functions -- Numerical differentiation -- Initial-value problems -- Adaptive methods and stiff systems -- Boundary-value problems
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Includes bibliographical references (pages 644-645) and index

Mathematical modeling, numerical methods, and problem solving -- MATHLAB fundamentals -- Programming with mathlab -- Roundoff and truncation errors -- Roots: bracketing methods -- Roots: open methods -- Optimization -- Linear algebraic equations and matrices -- Gauss elimination -- LU factorization -- Matrix inverse and condition -- Iterative methods -- Eigenvalues -- Linear regression -- General linear least-squeares and nonlinear regession -- Fourier analysis -- Polynomial interpolation -- Splines and piecewise interpolation -- Numerical integration formulas -- Numerical integration of functions -- Numerical differentiation -- Initial-value problems -- Adaptive methods and stiff systems -- Boundary-value problems

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