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Number Systems

Most popular at the top

  • Higher-Order Finite Element Methodsby Pavel Solin; Karel Segeth; Ivo Dolezel

    Taylor and Francis 2003; US$ 146.95

    The finite element method has always been a mainstay for solving engineering problems numerically. The most recent developments in the field clearly indicate that its future lies in higher-order methods, particularly in higher-order hp- adaptive schemes. These techniques respond well to the increasing complexity of engineering simulations and satisfy... more...

  • Ordinary and Partial Differential Equation Routines in C, C++, Fortran, Java, Maple, and MATLABby H.J. Lee; W.E. Schiesser

    Taylor and Francis 2003; US$ 109.95

    This book provides a set of ODE/PDE integration routines in the six most widely used computer languages, enabling scientists and engineers to apply ODE/PDE analysis toward solving complex problems. This text concisely reviews integration algorithms, then analyzes the widely used Runge-Kutta method. It first presents a complete code before discussing... more...

  • Monomial Algebrasby Rafael Villarreal

    Taylor and Francis 2000; US$ 304.00

    An introduction to the methods used to study monomial algebras and their presentation ideals, including Stanley-Reisner rings, subrings, and toric varieties. It emphasizes square-free quadratics and effective computational methods, and applies a combinatorial description of the integral closure of the corresponding monomial subring to graph theory. more...

  • Differential Equations And Control Theoryby Sergiu Aizicovici; Nicolae H. Pavel

    Taylor and Francis 2001; US$ 231.00

    Provides comprehensive coverage of the most recent developments in the theory of non-Archimedean pseudo-differential equations and its application to stochastics and mathematical physics--offering current methods of construction for stochastic processes in the field of p-adic numbers and related structures. Develops a new theory for parabolic equations... more...

  • Shape Optimization And Optimal Designby John Cagnol; Michael P. Polis; Jean-Paul Zolesio

    Taylor and Francis 2001; US$ 283.00

    This volume presents developments and advances in modelling passive and active control systems governed by partial differential equations. It emphasizes shape analysis, optimal shape design, controllability, nonlinear boundary control, and stabilization. The authors include essential data on exact boundary controllability of thermoelastic plates with... more...

  • Chebyshev Polynomialsby J.C. Mason; David C. Handscomb

    Taylor and Francis 2002; US$ 164.95

    Chebyshev polynomials crop up in virtually every area of numerical analysis, and they hold particular importance in recent advances in subjects such as orthogonal polynomials, polynomial approximation, numerical integration, and spectral methods. Yet no book dedicated to Chebyshev polynomials has been published since 1990, and even that work focused... more...

  • Duality in Optimization and Variational Inequalitiesby C.j. Goh

    Taylor and Francis 2001; US$ 119.95

    This comprehensive volume covers a wide range of duality topics ranging from simple ideas in network flows to complex issues in non-convex optimization and multicriteria problems. In addition, it examines duality in the context of variational inequalities and vector variational inequalities, as generalizations to optimization. Duality in Optimization... more...

  • Fuzzy Automata and Languagesby John N. Mordeson; Davender S. Malik

    Taylor and Francis 2002; US$ 164.95

    The huge number and broad range of the existing and potential applications of fuzzy logic have precipitated a veritable avalanche of books published on the subject. Most, however, focus on particular areas of application. Many do no more than scratch the surface of the theory that holds the power and promise of fuzzy logic. Fuzzy Automata and Languages:... more...

  • Practical Fourier Analysis for Multigrid Methodsby Roman Wienands; Wolfgang Joppich

    Taylor and Francis 2004; US$ 119.95

    Before applying multigrid methods to a project, mathematicians, scientists, and engineers need to answer questions related to the quality of convergence, whether a development will pay out, whether multigrid will work for a particular application, and what the numerical properties are. Practical Fourier Analysis for Multigrid Methods uses a detailed... more...

  • A Practical Guide to Boundary Element Methods with the Software Library BEMLIBby C. Pozrikidis

    Taylor and Francis 2002; US$ 164.95

    The boundary-element method is a powerful numerical technique for solving partial differential equations encountered in applied mathematics, science, and engineering. The strength of the method derives from its ability to solve with notable efficiency problems in domains with complex and possibly evolving geometry where traditional methods can be demanding,... more...