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Introduction to Numerical Methods, Aniruddha Mitra


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Автор: Aniruddha Mitra
Название:  Introduction to Numerical Methods
ISBN: 9781516500147
Издательство: Mare Nostrum (Eurospan)
Классификация:

ISBN-10: 1516500148
Обложка/Формат: Paperback
Страницы: 122
Вес: 0.26 кг.
Дата издания: 30.08.2016
Серия: Mathematics
Язык: English
Размер: 254 x 203 x 7
Читательская аудитория: Professional and scholarly
Ключевые слова: Mathematics,Mechanical engineering
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Поставляется из: Англии
Описание: Written for sophomore-level students in mechanical engineering programs and designed to give them the maths preparation they need to succeed in higher level mechanical engineering courses, Introduction to Numerical Methods incorporates theory and worked-out engineering-related problems that apply that theory, as well as relevant laboratory exercises.

Introduction to linear control systems

Автор: Bavafa-toosi Yazdan
Название: Introduction to linear control systems
ISBN: 0128127481 ISBN-13(EAN): 9780128127483
Издательство: Elsevier Science
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Цена: 105330.00 T
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Описание:

Introduction to Linear Control Systems is designed as a standard introduction to linear control systems for all those who one way or another deal with control systems. It can be used as a comprehensive up-to-date textbook for a one-semester 3-credit undergraduate course on linear control systems as the first course on this topic at university. This includes the faculties of electrical engineering, mechanical engineering, aerospace engineering, chemical and petroleum engineering, industrial engineering, civil engineering, bio-engineering, economics, mathematics, physics, management and social sciences, etc.

The book covers foundations of linear control systems, their raison detre, different types, modelling, representations, computations, stability concepts, tools for time-domain and frequency-domain analysis and synthesis, and fundamental limitations, with an emphasis on frequency-domain methods. Every chapter includes a part on further readings where more advanced topics and pertinent references are introduced for further studies. The presentation is theoretically firm, contemporary, and self-contained. Appendices cover Laplace transform and differential equations, dynamics, MATLAB and SIMULINK, treatise on stability concepts and tools, treatise on Routh-Hurwitz method, random optimization techniques as well as convex and non-convex problems, and sample midterm and endterm exams.

The book is divided to the sequel 3 parts plus appendices.

PART I: In this part of the book, chapters 1-5, we present foundations of linear control systems. This includes: the introduction to control systems, their raison detre, their different types, modelling of control systems, different methods for their representation and fundamental computations, basic stability concepts and tools for both analysis and design, basic time domain analysis and design details, and the root locus as a stability analysis and synthesis tool.

PART II: In this part of the book, Chapters 6-9, we present what is generally referred to as the frequency domain methods. This refers to the experiment of applying a sinusoidal input to the system and studying its output. There are basically three different methods for representation and studying of the data of the aforementioned frequency response experiment: these are the Nyquist plot, the Bode diagram, and the Krohn-Manger-Nichols chart. We study these methods in details. We learn that the output is also a sinusoid with the same frequency but generally with different phase and magnitude. By dividing the output by the input we obtain the so-called sinusoidal or frequency transfer function of the system which is the same as the transfer function when the Laplace variable s is substituted with . Finally we use the Bode diagram for the design process.

PART III: In this part, Chapter 10, we introduce some miscellaneous advanced topics under the theme fundamental limitations which should be included in this undergraduate course at least in an introductory level. We make bridges between some seemingly disparate aspects of a control system and theoretically complement the previously studied subjects.

Appendices: The book contains seven appendices. Appendix A is on the Laplace transform and differential equations. Appendix B is an introduction to dynamics. Appendix C is an introduction to MATLAB, including SIMULINK. Appendix D is a survey on stability concepts and tools. A glossary and road map of the available stability concepts and tests is provided which is missing even in the research literature. Appendix E is a survey on the Routh-Hurwitz method, also missing in the literature. Appendix F is an introduction to random optimization techniques and convex and non-convex problems. Finally, appendix G presents sample midterm and endterm exams, which are class-tested several times.

Introduction to numerical methods

Автор: Kharab, Abdelwahab (department Of Mathematics, Abu Dhabi University, United Arab Emirates) Guenther, Ronald
Название: Introduction to numerical methods
ISBN: 1138093076 ISBN-13(EAN): 9781138093072
Издательство: Taylor&Francis
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Цена: 86760.00 T
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Описание: An Introduction to Numerical Methods: A MATLAB (R) Approach, Fourth Edition presents a wide range of useful and important algorithms for scientific and engineering applications.

Classical and Modern Engineering Methods in Fluid Flow and Heat Transfer: An Introduction for Engineers and Students

Автор: Abram Dorfman
Название: Classical and Modern Engineering Methods in Fluid Flow and Heat Transfer: An Introduction for Engineers and Students
ISBN: 1606502697 ISBN-13(EAN): 9781606502693
Издательство: McGraw-Hill
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Цена: 115550.00 T
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Описание: Offer an overview of conjugate methods and their more typical applications, with an emphasis on the advantages and benefits of this type of engineering analysis. This title reviews basics of heat conduction in solids and convective heat transfer. It also offers both analytic and numerical methods for solving conjugate boundary condition problems.

Introduction To Finite Element, Boundary Element, And Meshless Methods

Автор: Pepper, Kassab & Divo
Название: Introduction To Finite Element, Boundary Element, And Meshless Methods
ISBN: 0791860337 ISBN-13(EAN): 9780791860335
Издательство: Mare Nostrum (Eurospan)
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Цена: 145070.00 T
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Описание: When students once master the concepts of the finite element method (and meshing), it’s not long before they begin to look at other numerical techniques and applications, especially the boundary element and meshless methods (since a mesh is not required). The expert authors of this book provide a simple explanation of these three powerful numerical schemes and show how they all fall under the umbrella of the more universal method of weighted residuals.The book is structured in four sections. The first introductory section provides the method of weighted residuals development of finite differences, finite volume, finite element, boundary element, and meshless methods along with 1D examples of each method. The following three sections of the book present a more detailed development of the finite element method, then progress through the boundary element method, and end with meshless methods. Each section serves as a stand-alone description, but it is apparent how each conveniently leads to the other techniques. It is recommended that the reader begin with the finite element method, as this serves as the primary basis for defining the method of weighted residuals.

Introduction to Finite Element Methods

Автор: P. N. Godbole
Название: Introduction to Finite Element Methods
ISBN: 9382332200 ISBN-13(EAN): 9789382332206
Издательство: Mare Nostrum (Eurospan)
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Цена: 48970.00 T
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Описание: Discusses the basics of the finite element method in a simple and systematic way. The book can serve as a basic learning tool for undergraduate and postgraduate students in civil and mechanical engineering whose main interest is to carry out stress analysis.


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