Introduction to Complex Analysis
Edition: 2nd 2003 (Revised)
List price: $53.00
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Description: Complex analysis is a classic and central area of mathematics, which is studied and exploited in a range of important fields, from number theory to engineering. Introduction to Complex Analysis was first published in 1985, and for this much awaited second edition the text has been considerably expanded, while retaining the style of the original. More detailed presentation is given of elementary topics, to reflect the knowledge base of current students. Exercise sets have been substantially revised and enlarged, with carefully graded exercises at the end of each chapter. This is the latest addition to the growing list of Oxford undergraduate textbooks in mathematics, which includes: Biggs: Discrete Mathematics 2nd Edition, Cameron: Introduction to Algebra, Needham: Visual Complex Analysis, Kaye and Wilson: Linear Algebra, Acheson: Elementary Fluid Dynamics, Jordan and Smith: Nonlinear Ordinary Differential Equations, Smith: Numerical Solution of Partial Differential Equations, Wilson: Graphs, Colourings and the Four-Colour Theorem, Bishop: Neural Networks for Pattern Recognition, Gelman and Nolan: Teaching Statistics.
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All the information you need in one place! Each Study Brief is a summary of one specific subject; facts, figures, and explanations to help you learn faster.
List price: $53.00
Copyright year: 2003
Publisher: Oxford University Press, Incorporated
Publication date: 10/30/2003
Size: 6.00" wide x 9.00" long x 0.75" tall
|Geometry in the complex plane|
|Topology and analysis in the complex plane|
|Complex series and power series|
|A menagerie of holomorphic functions|
|Multifunctions: basic track|
|Cauchy's theorem: basic track|
|Cauchy's theorem: advanced track|
|Power series representation|
|Zeros of holomorphic functions|
|Further theory of holomorphic functions|
|Cauchy's residue theorem|
|Contour integration: a technical toolkit|
|Applications of contour integration|
|The Laplace transform|
|The Fourier transform|
|Harmonic functions and holomorphic functions|