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Numerical Solutions for Partial Differential Equations - Problem Solving Using Mathematica (Paperback): Victor Grigor'e... Numerical Solutions for Partial Differential Equations - Problem Solving Using Mathematica (Paperback)
Victor Grigor'e Ganzha, Evgenii Vasilev Vorozhtsov
R1,878 Discovery Miles 18 780 Ships in 12 - 17 working days

Partial differential equations (PDEs) play an important role in the natural sciences and technology, because they describe the way systems (natural and other) behave. The inherent suitability of PDEs to characterizing the nature, motion, and evolution of systems, has led to their wide-ranging use in numerical models that are developed in order to analyze systems that are not otherwise easily studied. Numerical Solutions for Partial Differential Equations contains all the details necessary for the reader to understand the principles and applications of advanced numerical methods for solving PDEs. In addition, it shows how the modern computer system algebra Mathematica (R) can be used for the analytic investigation of such numerical properties as stability, approximation, and dispersion.

Numerical Solutions for Partial Differential Equations - Problem Solving Using Mathematica (Hardcover, New): Victor... Numerical Solutions for Partial Differential Equations - Problem Solving Using Mathematica (Hardcover, New)
Victor Grigor'e Ganzha, Evgenii Vasilev Vorozhtsov
R5,375 Discovery Miles 53 750 Ships in 12 - 17 working days

Partial differential equations (PDEs) play an important role in the natural sciences and technology, because they describe the way systems (natural and other) behave. The inherent suitability of PDEs to characterizing the nature, motion, and evolution of systems, has led to their wide-ranging use in numerical models that are developed in order to analyze systems that are not otherwise easily studied. Numerical Solutions for Partial Differential Equations contains all the details necessary for the reader to understand the principles and applications of advanced numerical methods for solving PDEs. In addition, it shows how the modern computer system algebra MathematicaA(R) can be used for the analytic investigation of such numerical properties as stability, approximation, and dispersion.

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