A discussion of complex analysis now forms the first three chapters of the book, with a description of conformal mapping and its application to boundary value problems for the two-dimensional Laplace equation forming the final two chapters. This new structure enables students to study theory and applications separately, as needed.
In order to maintain brevity and clarity, the text limits the application of complex analysis to two-dimensional boundary value problems related to temperature distribution, fluid flow, and electrostatics. In each case, in order to show the relevance of complex analysis, each application is preceded by mathematicalbackground that demonstrates how a real valued potential function and its related complex potential can be derived from the mathematics that describes the physical situation.
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A discussion of complex analysis now forms the first three chapters of the book, with a description of conformal mapping and its application to boundary value problems for the two-dimensional Laplace equation forming the final two chapters. This new structure enables students to study theory and applications separately, as needed.
In order to maintain brevity and clarity, the text limits the application of complex analysis to two-dimensional boundary value problems related to temperature distribution, fluid flow, and electrostatics. In each case, in order to show the relevance of complex analysis, each application is preceded by mathematicalbackground that demonstrates how a real valued potential function and its related complex potential can be derived from the mathematics that describes the physical situation.
Imprint | Chapman & Hall/CRC |
Country of origin | United States |
Release date | November 2005 |
Availability | Expected to ship within 12 - 17 working days |
First published | 2006 |
Authors | Alan Jeffrey |
Dimensions | 234 x 156 x 38mm (L x W x T) |
Format | Paperback |
Pages | 592 |
Edition | 2nd edition |
ISBN-13 | 978-1-58488-553-5 |
Barcode | 9781584885535 |
Categories | |
LSN | 1-58488-553-X |