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Fourier Series and Integrals (Paperback, Reprint): David Aldous, Y.L. Tong Fourier Series and Integrals (Paperback, Reprint)
David Aldous, Y.L. Tong; Volume editing by H. Dym, H.P. McKean
R2,570 Discovery Miles 25 700 Ships in 10 - 15 working days

The ideas of Fourier have made their way into every branch of mathematics and mathematical physics, from the theory of numbers to quantum mechanics. Fourier Series and Integrals focuses on the extraordinary power and flexibility of Fourier's basic series and integrals and on the astonishing variety of applications in which it is the chief tool. It presents a mathematical account of Fourier ideas on the circle and the line, on finite commutative groups, and on a few important noncommutative groups. A wide variety of exercises are placed in nearly every section as an integral part of the text.

Mathematics for Mechanical Engineers (Paperback): William F. Ames, George Cain, Y.L. Tong, W.Glenn Steele, Hugh W. Coleman,... Mathematics for Mechanical Engineers (Paperback)
William F. Ames, George Cain, Y.L. Tong, W.Glenn Steele, Hugh W. Coleman, …
R2,007 Discovery Miles 20 070 Ships in 10 - 15 working days

Mathematics for Mechanical Engineers gives mechanical engineers convenient access to the essential problem solving tools that they use each day. It covers applications employed in many different facets of mechanical engineering, from basic through advanced, to ensure that you will easily find answers you need in this handy guide. For the engineer venturing out of familiar territory, the chapters cover fundamentals like physical constants, derivatives, integrals, Fourier transforms, Bessel functions, and Legendre functions. For the experts, it includes thorough sections on the more advanced topics of partial differential equations, approximation methods, and numerical methods, often used in applications. The guide reviews statistics for analyzing engineering data and making inferences, so professionals can extract useful information even with the presence of randomness and uncertainty. The convenient Mathematics for Mechanical Engineers is an indispensable summary of mathematics processes needed by engineers.

Mathematics for Mechanical Engineers (Hardcover): William F. Ames, George Cain, W.Glenn Steele, Hugh W. Coleman, Richard L.... Mathematics for Mechanical Engineers (Hardcover)
William F. Ames, George Cain, W.Glenn Steele, Hugh W. Coleman, Richard L. Kautz, …
R3,594 Discovery Miles 35 940 Ships in 18 - 22 working days

Mathematics for Mechanical Engineers gives mechanical engineers convenient access to the essential problem solving tools that they use each day. It covers applications employed in many different facets of mechanical engineering, from basic through advanced, to ensure that you will easily find answers you need in this handy guide.
For the engineer venturing out of familiar territory, the chapters cover fundamentals like physical constants, derivatives, integrals, Fourier transforms, Bessel functions, and Legendre functions. For the experts, it includes thorough sections on the more advanced topics of partial differential equations, approximation methods, and numerical methods, often used in applications. The guide reviews statistics for analyzing engineering data and making inferences, so professionals can extract useful information even with the presence of randomness and uncertainty. The convenient Mathematics for Mechanical Engineers is an indispensable summary of mathematics processes needed by engineers.

The Multivariate Normal Distribution (Paperback, Softcover reprint of the original 1st ed. 1990): Y.L. Tong The Multivariate Normal Distribution (Paperback, Softcover reprint of the original 1st ed. 1990)
Y.L. Tong
R1,405 Discovery Miles 14 050 Ships in 18 - 22 working days

The multivariate normal distribution has played a predominant role in the historical development of statistical theory, and has made its appearance in various areas of applications. Although many of the results concerning the multivariate normal distribution are classical, there are important new results which have been reported recently in the literature but cannot be found in most books on multivariate analysis. These results are often obtained by showing that the multivariate normal density function belongs to certain large families of density functions. Thus, useful properties of such families immedi ately hold for the multivariate normal distribution. This book attempts to provide a comprehensive and coherent treatment of the classical and new results related to the multivariate normal distribution. The material is organized in a unified modern approach, and the main themes are dependence, probability inequalities, and their roles in theory and applica tions. Some general properties of a multivariate normal density function are discussed, and results that follow from these properties are reviewed exten sively. The coverage is, to some extent, a matter of taste and is not intended to be exhaustive, thus more attention is focused on a systematic presentation of results rather than on a complete listing of them."

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