Numerical Methods for Partial Differential Equations: Finite Difference and Finite Volume Methods
$97.50
Description
Book Synopsis: Numerical Methods for Partial Differential Equations: Finite Difference and Finite Volume Methods focuses on two popular deterministic methods for solving partial differential equations (PDEs), namely finite difference and finite volume methods. The solution of PDEs can be very challenging, depending on the type of equation, the number of independent variables, the boundary, and initial conditions, and other factors. These two methods have been traditionally used to solve problems involving fluid flow. For practical reasons, the finite element method, used more often for solving problems in solid mechanics, and covered extensively in various other texts, has been excluded. The book is intended for beginning graduate students and early career professionals, although advanced undergraduate students may find it equally useful. The material is meant to serve as a prerequisite for students who might go on to take additional courses in computational mechanics, computational fluid dynamics, or computational electromagnetics. The notations, language, and technical jargon used in the book can be easily understood by scientists and engineers who may not have had graduate-level applied mathematics or computer science courses.
Presents one of the few available resources that comprehensively describes and demonstrates the finite volume method for unstructured mesh used frequently by practicing code developers in industry.
Includes step-by-step algorithms and code snippets in each chapter that enables the reader to make the transition from equations on the page to working codes.
Includes 51 worked out examples that comprehensively demonstrate important mathematical steps, algorithms, and coding practices required to numerically solve PDEs, as well as how to interpret the results from both physical and mathematic perspectives.
Details
Are you struggling with solving complex partial differential equations? Look no further than Numerical Methods for Partial Differential Equations: Finite Difference and Finite Volume Methods. This comprehensive book focuses on two popular deterministic methods - finite difference and finite volume methods - that have been traditionally used to solve problems involving fluid flow. Whether you are a beginning graduate student or a seasoned professional, this book provides step-by-step algorithms and code snippets to help you easily transition from equations to working codes. Don't miss out on this valuable resource that will enhance your computational problem-solving skills.
For those looking to advance their knowledge in computational mechanics, computational fluid dynamics, or computational electromagnetics, this book serves as an essential prerequisite. With 51 worked out examples that demonstrate crucial mathematical steps, algorithms, and coding practices, you can enhance your understanding of how to numerically solve PDEs and interpret results from both physical and mathematical perspectives. The material is presented in a clear and concise manner, making it accessible to scientists and engineers without a graduate-level background in applied mathematics or computer science.
Don't let solving PDEs overwhelm you - equip yourself with the knowledge and tools provided in Numerical Methods for Partial Differential Equations: Finite Difference and Finite Volume Methods. Take the first step towards mastering complex problem-solving techniques and enhancing your computational skills. Purchase your copy today and unlock the secrets to effectively solving PDEs with ease!
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