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Real Analysis: Series, Functions of Several Variables, and Applications

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This book develops the theory of multivariable analysis, building on the single variable foundations established in the companion volume, Real Analysis: Foundations and Functions of One Variable. Together, these volumes form the first English edition of the popular Hungarian original, Valós Analízis I & II, based on courses taught by the authors at Eötvös Loránd University, Hungary, for more than 30 years. Numerous exercises are included throughout, offering ample opportunities to master topics by progressing from routine to difficult problems. Hints or solutions to many of the more challenging exercises make this book ideal for independent study, or further reading.

Intended as a sequel to a course in single variable analysis, this book builds upon and expands these ideas into higher dimensions. The modular organization makes this text adaptable for either a semester or year-long introductory course. Topics include: differentiation and integration of functions of several variables; infinite numerical series; sequences and series of functions; and applications to other areas of mathematics. Many historical notes are given and there is an emphasis on conceptual understanding and context, be it within mathematics itself or more broadly in applications, such as physics. By developing the student’s intuition throughout, many definitions and results become motivated by insights from their context.

Authors: Laczkovich Miklos, Sos Vera
Publisher: SPRINGER
Pages: 392
ISBN: 9781493984640
Cover: Paperback
Edition Number: 1
Release Year: 2017

Miklos Laczkovich is Professor of Mathematics at Eotvos Lorand University and the University College London, and was awarded the Ostrowski Prize in 1993 and the Széchenyi Prize in 1998.

Vera T. Sos is a Research Fellow at the Alfred Renyi Institute of Mathematics, and was awarded the Szechenyi Prize in 1997.

Vera T. Sós is a member of the Hungarian Academy of Sciences and professor emeritus at Eötvös Loránd Univesity Budapest and the Alfred Renyi Mathematical Institute of the Hungarian Academy of Sciences. She was awarded the Széchenyi Prize in 1997.

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