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Principles of Applied Mathematics provides a comprehensive look at how classical methods are used in many fields and contexts. Updated to reflect developments of the last twenty years, it shows how two areas of classical applied mathematics—spectral theory of operators and asymptotic analysis—are useful for solving a wide range of applied science problems. Topics such as asymptotic expansions, inverse scattering theory, and perturbation methods are combined in a unified way with classical theory of linear operators. Several new topics, including wavelength analysis, multigrid methods, and homogenization theory, are blended into this mix to amplify this theme.This book is ideal as a survey course for graduate students in applied mathematics and theoretically oriented engineering and science students. This most recent edition, for the first time, now includes extensive corrections collated and collected by the author.
This text investigates the application of classical mathematical methods, specifically spectral theory and asymptotic analysis, to solve complex problems across the applied sciences. James P. Keener, a professor of mathematics, synthesizes decades of research to provide a unified framework for understanding how these analytical tools function in modern scientific contexts. The book bridges the gap between theoretical linear operator theory and practical problem-solving techniques, offering a structured approach for advanced students to master these methodologies.
What You Will Find
Experts and educators recognize this work as a foundational survey for graduate students entering the field of applied mathematics. Readers frequently note the technical density of the prose, which requires a strong background in undergraduate calculus and linear algebra to fully grasp the presented concepts.
Page Count:
560
Publication Date:
1988-01-21
Publisher:
Basic Books
ISBN-10:
0201156741
ISBN-13:
9780201156744
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