Operational Calculus in Two Variables and Its Applications

Nonfiction, Science & Nature, Mathematics, Calculus
Cover of the book Operational Calculus in Two Variables and Its Applications by V.A. Ditkin, A.P. Prudnikov, Dover Publications
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Author: V.A. Ditkin, A.P. Prudnikov ISBN: 9780486823416
Publisher: Dover Publications Publication: June 15, 2017
Imprint: Dover Publications Language: English
Author: V.A. Ditkin, A.P. Prudnikov
ISBN: 9780486823416
Publisher: Dover Publications
Publication: June 15, 2017
Imprint: Dover Publications
Language: English

A concise monograph by two Russian experts provides an account of the operational calculus in two variables based on the two-dimensional Laplace transform. Suitable for advanced undergraduates and graduate students in mathematics, the treatment requires some familiarity with operational calculus in one variable.
Part One of the two-part approach presents the fundamental theory in two chapters, examining the two-dimensional Laplace transform and offering basic definitions and theorems of the operational calculus in two variables and its applications. Part Two presents tables of formulae for various categories of functions, including rational and irrational functions; exponential and logarithmic functions; cylinder, integral, and confluent hypergeometric functions; and other areas.

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A concise monograph by two Russian experts provides an account of the operational calculus in two variables based on the two-dimensional Laplace transform. Suitable for advanced undergraduates and graduate students in mathematics, the treatment requires some familiarity with operational calculus in one variable.
Part One of the two-part approach presents the fundamental theory in two chapters, examining the two-dimensional Laplace transform and offering basic definitions and theorems of the operational calculus in two variables and its applications. Part Two presents tables of formulae for various categories of functions, including rational and irrational functions; exponential and logarithmic functions; cylinder, integral, and confluent hypergeometric functions; and other areas.

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