Computational Methods for Handling Systems of Simultaneous Equations

Computational Methods for Handling Systems of Simultaneous Equations PDF Author: Joan Corinne Friedman
Publisher:
ISBN:
Category : Equations, Simultaneous
Languages : en
Pages : 116

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Computational Methods for Handling Systems of Simultaneous Equations

Computational Methods for Handling Systems of Simultaneous Equations PDF Author: Joan Corinne Friedman
Publisher:
ISBN:
Category : Equations, Simultaneous
Languages : en
Pages : 116

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Computational Methods for Handling Systems of Simultaneous Equations, with Applications to Agriculture

Computational Methods for Handling Systems of Simultaneous Equations, with Applications to Agriculture PDF Author: Joan Corinne Friedman
Publisher:
ISBN:
Category :
Languages : en
Pages : 109

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Computational Methods for Handling Systems of Simultaneous Equations

Computational Methods for Handling Systems of Simultaneous Equations PDF Author: Joan Friedman
Publisher:
ISBN:
Category :
Languages : en
Pages : 109

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Computational Methods for Handling Systems of Simultaneous Equations

Computational Methods for Handling Systems of Simultaneous Equations PDF Author: Joan Corinne Friedman
Publisher:
ISBN:
Category : Equations, Simultaneous
Languages : en
Pages : 116

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Agriculture Handbook

Agriculture Handbook PDF Author:
Publisher:
ISBN:
Category : Agriculture
Languages : en
Pages : 116

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Set includes revised editions of some issues.

An Introduction to Computational Methods

An Introduction to Computational Methods PDF Author: K. A. Redish
Publisher:
ISBN:
Category : Counting
Languages : en
Pages : 228

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Computational Methods for Approximation of Large-Scale Dynamical Systems

Computational Methods for Approximation of Large-Scale Dynamical Systems PDF Author: Mohammad Monir Uddin
Publisher: CRC Press
ISBN: 1351028618
Category : Mathematics
Languages : en
Pages : 312

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Book Description
These days, computer-based simulation is considered the quintessential approach to exploring new ideas in the different disciplines of science, engineering and technology (SET). To perform simulations, a physical system needs to be modeled using mathematics; these models are often represented by linear time-invariant (LTI) continuous-time (CT) systems. Oftentimes these systems are subject to additional algebraic constraints, leading to first- or second-order differential-algebraic equations (DAEs), otherwise known as descriptor systems. Such large-scale systems generally lead to massive memory requirements and enormous computational complexity, thus restricting frequent simulations, which are required by many applications. To resolve these complexities, the higher-dimensional system may be approximated by a substantially lower-dimensional one through model order reduction (MOR) techniques. Computational Methods for Approximation of Large-Scale Dynamical Systems discusses computational techniques for the MOR of large-scale sparse LTI CT systems. Although the book puts emphasis on the MOR of descriptor systems, it begins by showing and comparing the various MOR techniques for standard systems. The book also discusses the low-rank alternating direction implicit (LR-ADI) iteration and the issues related to solving the Lyapunov equation of large-scale sparse LTI systems to compute the low-rank Gramian factors, which are important components for implementing the Gramian-based MOR. Although this book is primarly aimed at post-graduate students and researchers of the various SET disciplines, the basic contents of this book can be supplemental to the advanced bachelor's-level students as well. It can also serve as an invaluable reference to researchers working in academics and industries alike. Features: Provides an up-to-date, step-by-step guide for its readers. Each chapter develops theories and provides necessary algorithms, worked examples, numerical experiments and related exercises. With the combination of this book and its supplementary materials, the reader gains a sound understanding of the topic. The MATLAB® codes for some selected algorithms are provided in the book. The solutions to the exercise problems, experiment data sets and a digital copy of the software are provided on the book's website; The numerical experiments use real-world data sets obtained from industries and research institutes.

Scientific Computing and Differential Equations

Scientific Computing and Differential Equations PDF Author: Gene H. Golub
Publisher: Elsevier
ISBN: 0080516696
Category : Mathematics
Languages : en
Pages : 350

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Book Description
Scientific Computing and Differential Equations: An Introduction to Numerical Methods, is an excellent complement to Introduction to Numerical Methods by Ortega and Poole. The book emphasizes the importance of solving differential equations on a computer, which comprises a large part of what has come to be called scientific computing. It reviews modern scientific computing, outlines its applications, and places the subject in a larger context. This book is appropriate for upper undergraduate courses in mathematics, electrical engineering, and computer science; it is also well-suited to serve as a textbook for numerical differential equations courses at the graduate level. An introductory chapter gives an overview of scientific computing, indicating its important role in solving differential equations, and placing the subject in the larger environment Contains an introduction to numerical methods for both ordinary and partial differential equations Concentrates on ordinary differential equations, especially boundary-value problems Contains most of the main topics for a first course in numerical methods, and can serve as a text for this course Uses material for junior/senior level undergraduate courses in math and computer science plus material for numerical differential equations courses for engineering/science students at the graduate level

Computational Methods in Chemical Engineering with Maple

Computational Methods in Chemical Engineering with Maple PDF Author: Ralph E. White
Publisher: Springer Science & Business Media
ISBN: 3642043119
Category : Science
Languages : en
Pages : 871

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Book Description
This book presents Maple solutions to a wide range of problems relevant to chemical engineers and others. Many of these solutions use Maple’s symbolic capability to help bridge the gap between analytical and numerical solutions. The readers are strongly encouraged to refer to the references included in the book for a better understanding of the physics involved, and for the mathematical analysis. This book was written for a senior undergraduate or a first year graduate student course in chemical engineering. Most of the examples in this book were done in Maple 10. However, the codes should run in the most recent version of Maple. We strongly encourage the readers to use the classic worksheet (*. mws) option in Maple as we believe it is more user-friendly and robust. In chapter one you will find an introduction to Maple which includes simple basics as a convenience for the reader such as plotting, solving linear and nonlinear equations, Laplace transformations, matrix operations, ‘do loop,’ and ‘while loop. ’ Chapter two presents linear ordinary differential equations in section 1 to include homogeneous and nonhomogeneous ODEs, solving systems of ODEs using the matrix exponential and Laplace transform method. In section two of chapter two, nonlinear ordinary differential equations are presented and include simultaneous series reactions, solving nonlinear ODEs with Maple’s ‘dsolve’ command, stop conditions, differential algebraic equations, and steady state solutions. Chapter three addresses boundary value problems.

Improving the Computation of Simultaneous Stochastic Linear Equations Estimates

Improving the Computation of Simultaneous Stochastic Linear Equations Estimates PDF Author: William Lewis Ruble
Publisher:
ISBN:
Category : Equations, Simultaneous
Languages : en
Pages : 954

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Book Description