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  • Chebyshev and Fourier Spectral Methods

    Second Revised Edition

    by John P. Boyd ...
    Series series Dover Books on Mathematics
    Completely revised text focuses on use of spectral methods to solve boundary value, eigenvalue, and time-dependent problems, but also covers Hermite, Laguerre, rational Chebyshev, sinc, and spherical harmonic functions, as well as cardinal functions, linear eigenvalue problems, matrix-solving methods, coordinate transformations, methods for unbounded intervals, spherical and cylindrical geometry, ... Read more

    $27.39 USD

  • Dynamics of the Equatorial Ocean

    by John P. Boyd ...
    Series series Earth and Environmental Science (R0)
    This book is the first comprehensive introduction to the theory of equatorially-confined waves and currents in the ocean. Among the topics treated are inertial and shear instabilities, wave generation by coastal reflection, semiannual and annual cycles in the tropic sea, transient equatorial waves, vertically-propagating beams, equatorial Ekman layers, the Yoshida jet model, generation of coastal ... Read more

    $215.09 USD

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  • The Finite Element Method

    An Introduction with Partial Differential Equations

    by A. J. Davies ...
    The finite element method is a technique for solving problems in applied science and engineering. The essence of this book is the application of the finite element method to the solution of boundary and initial-value problems posed in terms of partial differential equations. The method is developed for the solution of Poisson's equation, in a weighted-residual context, and then proceeds to time ... Read more

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  • Wave Theory of Information

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  • Numerical Methods for Engineers

    A Practical Approach

    The unique compendium is an introductory reference to learn the most popular numerical methods cohesively. The text focuses on practical applications rather than on abstract and heavy analytical concepts. The key elements of the numerical methods are Taylor series and linear algebra. Based on the authors' years of experience, most materials on the text are tied to those elements in a unified ... Read more

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  • Wavelets

    A Concise Guide

    Introduced nearly three decades ago as a variable resolution alternative to the Fourier transform, a wavelet is a short oscillatory waveform for analysis of transients. The discrete wavelet transform has remarkable multi-resolution and energy-compaction properties. Amir-Homayoon Najmi’s introduction to wavelet theory explains this mathematical concept clearly and succinctly.Wavelets are used in ... Read more

    $41.79 USD

  • Difference Equations by Differential Equation Methods

    Series Book 27 - Cambridge Monographs on Applied and Computational Mathematics
    Most well-known solution techniques for differential equations exploit symmetry in some form. Systematic methods have been developed for finding and using symmetries, first integrals and conservation laws of a given differential equation. Here the author explains how to extend these powerful methods to difference equations, greatly increasing the range of solvable problems. Beginning with an ... Read more

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    Series Book 5 - Ltcc Advanced Mathematics Series
    This book leads readers from a basic foundation to an advanced level understanding of dynamical and complex systems. It is the perfect text for graduate or PhD mathematical-science students looking for support in topics such as applied dynamical systems, Lotka-Volterra dynamical systems, applied dynamical systems theory, dynamical systems in cosmology, aperiodic order, and complex systems dynamics ... Read more

    $70.19 USD

  • The Finite Element Method for Initial Value Problems

    Mathematics and Computations

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  • Multirate and Wavelet Signal Processing

    Series Book 8 - Wavelet Analysis and Its Applications
    This innovative and in-depth book integrates the well-developed theory and practical applications of one dimensional and multidimensional multirate signal processing. Using a rigorous mathematical framework, it carefully examines the fundamentals of this rapidly growing field. Areas covered include: basic building blocks of multirate signal processing; fundamentals of multidimensional multirate ... Read more

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  • A First Course in Computational Fluid Dynamics

    Fluid mechanics is a branch of classical physics that has a rich tradition in applied mathematics and numerical methods. It is at work virtually everywhere, from nature to technology. This broad and fundamental coverage of computational fluid dynamics (CFD) begins with a presentation of basic numerical methods and flows into a rigorous introduction to the subject. A heavy emphasis is placed on the ... Read more

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