A volume in the Applied Mathematical Sciences series, presenting optimal control theory with 10 illustrations. Includes bibliography and index. Published by Springer-Verlag in 1974.
This book provides an introduction to the mathematical methods used in physics, focusing on applying mathematical techniques to physical problems and concepts.
A concise monograph on integral transforms and their applications in applied mathematics, focusing on analytical techniques useful in physics and engineering.
A classic introductory text on differential equations by H. T. H. Piaggio, covering fundamental methods and practical applications. Widely used by undergraduate students, the book emphasizes problem-solving techniques and real-world applications in science and engineering.
A graduate-level applied mathematics textbook introducing complex variable theory with emphasis on applications in engineering and physical sciences.
A comprehensive textbook covering mathematical techniques used in physics, including differential equations, vector analysis, complex variables, and special functions.
This graduate-level text provides a concise, rigorous, and readable introduction to the principles of continuum mechanics, aimed at students in applied mathematics, physics, and engineering. The author presents a unified treatment of both solid and fluid mechanics using the tools of modern mathematical analysis.
This textbook provides essential mathematical tools for physics students, especially at the undergraduate and early graduate levels. It covers linear algebra, differential equations, Fourier series, special functions, and complex analysis with examples.