Geometry of Manifolds

Geometry of Manifolds
Title Geometry of Manifolds PDF eBook
Author
Publisher Academic Press
Pages 287
Release 2011-08-29
Genre Mathematics
ISBN 0080873278

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Geometry of Manifolds

Lebesgue's Theory of Integration

Lebesgue's Theory of Integration
Title Lebesgue's Theory of Integration PDF eBook
Author Thomas Hawkins
Publisher Chelsea Publishing Company, Incorporated
Pages 227
Release 2001
Genre Mathematics
ISBN 9780821829639

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In this book, Hawkins elegantly places Lebesgue's early work on integration theory within in proper historical context by relating it to the developments during the nineteenth century that motivated it and gave it significance and also to the contributions made in this field by Lebesgue's contemporaries. Hawkins was awarded the 1997 MAA Chauvenet Prize and the 2001 AMS Albert Leon Whiteman Memorial Prize for notable exposition and exceptional scholarship in the history of mathematics.

Stochastic Analysis on Manifolds

Stochastic Analysis on Manifolds
Title Stochastic Analysis on Manifolds PDF eBook
Author Elton P. Hsu
Publisher American Mathematical Soc.
Pages 297
Release 2002
Genre Mathematics
ISBN 0821808028

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Mainly from the perspective of a probabilist, Hsu shows how stochastic analysis and differential geometry can work together for their mutual benefit. He writes for researchers and advanced graduate students with a firm foundation in basic euclidean stochastic analysis, and differential geometry. He does not include the exercises usual to such texts, but does provide proofs throughout that invite readers to test their understanding. Annotation copyrighted by Book News Inc., Portland, OR.

A Beginner's Guide to Discrete Mathematics

A Beginner's Guide to Discrete Mathematics
Title A Beginner's Guide to Discrete Mathematics PDF eBook
Author W.D. Wallis
Publisher Springer Science & Business Media
Pages 436
Release 2011-10-07
Genre Mathematics
ISBN 0817682864

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Wallis's book on discrete mathematics is a resource for an introductory course in a subject fundamental to both mathematics and computer science, a course that is expected not only to cover certain specific topics but also to introduce students to important modes of thought specific to each discipline . . . Lower-division undergraduates through graduate students. —Choice reviews (Review of the First Edition) Very appropriately entitled as a 'beginner's guide', this textbook presents itself as the first exposure to discrete mathematics and rigorous proof for the mathematics or computer science student. —Zentralblatt Math (Review of the First Edition) This second edition of A Beginner’s Guide to Discrete Mathematics presents a detailed guide to discrete mathematics and its relationship to other mathematical subjects including set theory, probability, cryptography, graph theory, and number theory. This textbook has a distinctly applied orientation and explores a variety of applications. Key Features of the second edition: * Includes a new chapter on the theory of voting as well as numerous new examples and exercises throughout the book * Introduces functions, vectors, matrices, number systems, scientific notations, and the representation of numbers in computers * Provides examples which then lead into easy practice problems throughout the text and full exercise at the end of each chapter * Full solutions for practice problems are provided at the end of the book This text is intended for undergraduates in mathematics and computer science, however, featured special topics and applications may also interest graduate students.

Mathematics of Information and Coding

Mathematics of Information and Coding
Title Mathematics of Information and Coding PDF eBook
Author Te Sun Han
Publisher American Mathematical Soc.
Pages 306
Release 2002
Genre Computers
ISBN 9780821842560

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This book is intended to provide engineering and/or statistics students, communications engineers, and mathematicians with the firm theoretic basis of source coding (or data compression) in information theory. Although information theory consists of two main areas, source coding and channel coding, the authors choose here to focus only on source coding. The reason is that, in a sense, it is more basic than channel coding, and also because of recent achievements in source coding and compression. An important feature of the book is that whenever possible, the authors describe universal coding methods, i.e., the methods that can be used without prior knowledge of the statistical properties of the data. The authors approach the subject of source coding from the very basics to the top frontiers in an intuitively transparent, but mathematically sound, manner. The book serves as a theoretical reference for communication professionals and statisticians specializing in information theory. It will also serve as an excellent introductory text for advanced-level and graduate students taking elementary or advanced courses in telecommunications, electrical engineering, statistics, mathematics, and computer science.

A Beginner's Guide to Graph Theory

A Beginner's Guide to Graph Theory
Title A Beginner's Guide to Graph Theory PDF eBook
Author W.D. Wallis
Publisher Springer Science & Business Media
Pages 266
Release 2010-05-05
Genre Mathematics
ISBN 0817645802

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Concisely written, gentle introduction to graph theory suitable as a textbook or for self-study Graph-theoretic applications from diverse fields (computer science, engineering, chemistry, management science) 2nd ed. includes new chapters on labeling and communications networks and small worlds, as well as expanded beginner's material Many additional changes, improvements, and corrections resulting from classroom use

Oscillating Patterns in Image Processing and Nonlinear Evolution Equations

Oscillating Patterns in Image Processing and Nonlinear Evolution Equations
Title Oscillating Patterns in Image Processing and Nonlinear Evolution Equations PDF eBook
Author Yves Meyer
Publisher American Mathematical Soc.
Pages 138
Release 2001
Genre Computers
ISBN 9780821829202

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Image compression, the Navier-Stokes equations, and detection of gravitational waves are three seemingly unrelated scientific problems that, remarkably, can be studied from one perspective. The notion that unifies the three problems is that of ``oscillating patterns'', which are present in many natural images, help to explain nonlinear equations, and are pivotal in studying chirps and frequency-modulated signals. The first chapter of this book considers image processing, moreprecisely algorithms of image compression and denoising. This research is motivated in particular by the new standard for compression of still images known as JPEG-2000. The second chapter has new results on the Navier-Stokes and other nonlinear evolution equations. Frequency-modulated signals and theiruse in the detection of gravitational waves are covered in the final chapter. In the book, the author describes both what the oscillating patterns are and the mathematics necessary for their analysis. It turns out that this mathematics involves new properties of various Besov-type function spaces and leads to many deep results, including new generalizations of famous Gagliardo-Nirenberg and Poincare inequalities. This book is based on the ``Dean Jacqueline B. Lewis Memorial Lectures'' given bythe author at Rutgers University. It can be used either as a textbook in studying applications of wavelets to image processing or as a supplementary resource for studying nonlinear evolution equations or frequency-modulated signals. Most of the material in the book did not appear previously inmonograph literature.