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Complex Analysis I: Entire and Meromorphic Functions Polyanalytic Functions and Their Generalizations: Encyclopaedia of Mathematical Sciences, cartea 85

Editat de A.A. Gonchar Traducere de V.I. Rublinetskij Contribuţii de M.B. Balk Editat de Viktor P. Havin Traducere de V. Tkachenko Contribuţii de A.A. Gol'dberg Editat de N.K. Nikolski Contribuţii de B.Ya. Levin, I.V. Ostrovskii
en Limba Engleză Hardback – 18 noi 1996

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Specificații

ISBN-13: 9783540547037
ISBN-10: 3540547037
Pagini: 276
Ilustrații: IX, 261 p.
Dimensiuni: 155 x 235 x 20 mm
Greutate: 0.56 kg
Ediția:1997
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Encyclopaedia of Mathematical Sciences

Locul publicării:Berlin, Heidelberg, Germany

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Research

Cuprins

Entire and Meromorphic Functions.- Polyanalytic Functions and Their Generalizations.

Textul de pe ultima copertă

The first part of the volume contains a comprehensive description of the theory of entire and meromorphic functions of one complex variable and its applications. It includes the fundamental notions, methods and results on the growth of entire functions and the distribution of their zeros, the Rolf Nevanlinna theory of distribution of values of meromorphic functions including the inverse problem, the theory of completely regular growth, the concept of limit sets for entire and subharmonic functions. The authors describe the interpolation by entire functions, to entire and meromorphic solutions of ordinary differential equations, to the Riemann boundary problem with an infinite index and to the arithmetic of the convolution semigroup of probability distributions. Polyanalytic functions form one of the most natural generalizations of analytic functions and are described in Part II. They emerged for the first time in plane elasticity theory where they found important applications (due to Kolossof, Mushelishvili etc.). This book contains a detailed review of recent investigations concerning the function-theoretical pecularities of polyanalytic functions (boundary behavour, value distributions, degeneration, uniqueness etc.). Polyanalytic functions have many points of contact with such fields of analysis as polyharmonic functions, Nevanlinna Theory, meromorphic curves, cluster set theory, functions of several complex variables etc.