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Matrix, Numerical, and Optimization Methods in Science and Engineering (Hardcover): Kevin W. Cassel Matrix, Numerical, and Optimization Methods in Science and Engineering (Hardcover)
Kevin W. Cassel
R3,033 Discovery Miles 30 330 Ships in 12 - 19 working days

Address vector and matrix methods necessary in numerical methods and optimization of linear systems in engineering with this unified text. Treats the mathematical models that describe and predict the evolution of our processes and systems, and the numerical methods required to obtain approximate solutions. Explores the dynamical systems theory used to describe and characterize system behaviour, alongside the techniques used to optimize their performance. Integrates and unifies matrix and eigenfunction methods with their applications in numerical and optimization methods. Consolidating, generalizing, and unifying these topics into a single coherent subject, this practical resource is suitable for advanced undergraduate students and graduate students in engineering, physical sciences, and applied mathematics.

Variational Methods with Applications in Science and Engineering (Hardcover, New): Kevin W. Cassel Variational Methods with Applications in Science and Engineering (Hardcover, New)
Kevin W. Cassel
R3,896 Discovery Miles 38 960 Ships in 12 - 19 working days

There is a resurgence of applications in which the calculus of variations has direct relevance. In addition to application to solid mechanics and dynamics, it is now being applied in a variety of numerical methods, numerical grid generation, modern physics, various optimization settings and fluid dynamics. Many applications, such as nonlinear optimal control theory applied to continuous systems, have only recently become tractable computationally, with the advent of advanced algorithms and large computer systems. This book reflects the strong connection between calculus of variations and the applications for which variational methods form the fundamental foundation. The mathematical fundamentals of calculus of variations (at least those necessary to pursue applications) is rather compact and is contained in a single chapter of the book. The majority of the text consists of applications of variational calculus for a variety of fields.

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