
Some Applications of Modular Forms
Peter Sarnak(Author)
Cambridge University Press
Published on 10. July 2008
Book
Paperback/Softback
124 pages
978-0-521-06770-6 (ISBN)
Description
The theory of modular forms and especially the so-called 'Ramanujan Conjectures' have been applied to resolve problems in combinatorics, computer science, analysis and number theory. This tract, based on the Wittemore Lectures given at Yale University, is concerned with describing some of these applications. In order to keep the presentation reasonably self-contained, Professor Sarnak begins by developing the necessary background material in modular forms. He then considers the solution of three problems: the Ruziewicz problem concerning finitely additive rotationally invariant measures on the sphere; the explicit construction of highly connected but sparse graphs: 'expander graphs' and 'Ramanujan graphs'; and the Linnik problem concerning the distribution of integers that represent a given large integer as a sum of three squares. These applications are carried out in detail. The book therefore should be accessible to a wide audience of graduate students and researchers in mathematics and computer science.
Reviews / Votes
Review of the hardback: '... fascinating book ...' Monatshefte fuer MathematikMore details
Series
Language
English
Place of publication
Cambridge
United Kingdom
Target group
Professional and scholarly
Product notice
Paperback (trade)
Illustrations
7 Line drawings, unspecified
Dimensions
Height: 229 mm
Width: 152 mm
Thickness: 8 mm
Weight
192 gr
ISBN-13
978-0-521-06770-6 (9780521067706)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
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Peter Sarnak
Some Applications of Modular Forms
E-Book
10/2015
1st Edition
Cambridge University Press
€39.99
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Peter Sarnak
Some Applications of Modular Forms
Book
11/1990
Cambridge University Press
€153.00
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Content
Introduction; 1. Modular forms; 2. Invariant means on L?(Sn); 3. Ramanujan graphs; 4. Bounds for Fourier coefficients of 1/2-integral weight; Bibliogrpahy; Index.