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  • 1
    Language: English
    Pages: 2 Bände , Illustrationen , 26 cm
    Keywords: Vibration / Mathematical models ; Vibration / Computer simulation ; Vibration / Computer simulation ; Vibration / Mathematical models ; Aufsatzsammlung
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  • 2
    ISBN: 9780750334815
    Language: English
    Pages: ca. 300 Seiten , Illustrationen. - Illustrationen , 26 cm
    Parallel Title: Erscheint auch als
    Angaben zur Quelle: 1
    Keywords: Aufsatzsammlung
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  • 3
    ISBN: 9780750334853
    Language: English
    Pages: ca. 300 Seiten , Illustrationen. - Illustrationen , 26 cm
    Parallel Title: Erscheint auch als
    Angaben zur Quelle: 2
    Keywords: Aufsatzsammlung
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  • 4
    Online Resource
    Online Resource
    London, United Kingdom ; : Academic Press
    ISBN: 9780128129746 , 0128129743
    Language: English
    Pages: 1 online resource (1 volume) , illustrations
    Edition: First edition.
    Parallel Title: Erscheint auch als Nayak, Sukanta Interval finite element method with MATLAB
    Keywords: MATLAB ; Finite element method ; Computer programs ; Interval analysis (Mathematics) ; Electronic books ; local ; Electronic books ; Finite-Elemente-Methode ; MATLAB ; Intervallmathematik
    Abstract: Interval Finite Element Method with MATLAB provides a thorough introduction to an effective way of investigating problems involving uncertainty using computational modeling. The well-known and versatile Finite Element Method (FEM) is combined with the concept of interval uncertainties to develop the Interval Finite Element Method (IFEM). An interval or stochastic environment in parameters and variables is used in place of crisp ones to make the governing equations interval, thereby allowing modeling of the problem. The concept of interval uncertainties is systematically explained. Several examples are explored with IFEM using MATLAB on topics like spring mass, bar, truss and frame. Provides a systematic approach to understanding the interval uncertainties caused by vague or imprecise data Describes the interval finite element method in detail Gives step-by-step instructions for how to use MATLAB code for IFEM Provides a range of examples of IFEM in use, with accompanying MATLAB codes
    Note: Includes bibliographical references and index. - Description based on print record
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  • 5
    Online Resource
    Online Resource
    Boca Raton : CRC Press, Taylor & Francis Group
    ISBN: 9781003328032 , 1003328032 , 9781000833805 , 1000833801
    Language: English
    Pages: 1 online resource
    Edition: First edition.
    Parallel Title: Erscheint auch als
    DDC: 620.001/13
    Keywords: System analysis Mathematics ; Differentiable dynamical systems Mathematical models ; Dynamics Mathematics ; Analyse de systèmes ; Mathématiques ; Dynamique différentiable ; Modèles mathématiques ; Dynamique ; Mathématiques ; Differentiable dynamical systems ; Mathematical models ; Dynamics ; Mathematics
    Abstract: "The art of applying mathematics to real world dynamical problems such as structural dynamics, fluid dynamics, wave dynamics, robot dynamics, etc., can be extremely challenging. Mathematical Methods in Dynamical Systems offers problem solving techniques and includes different analytical, semi-analytical, numerical and machine intelligence methods for finding exact and/or approximate solutions of governing equations arising in dynamical systems. It provides a singular source of computationally efficient methods to investigate these systems, and includes coverage of various industrial applications in a simple yet comprehensive way"--
    Note: Includes bibliographical references and index. - Description based on print version record and CIP data provided by publisher
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  • 6
    Language: English
    Pages: 1 online resource (256 pages)
    Edition: 1st edition
    Keywords: Electronic books ; local
    Abstract: Examines numerical and semi-analytical methods for differential equations that can be used for solving practical ODEs and PDEs This student-friendly book deals with various approaches for solving differential equations numerically or semi-analytically depending on the type of equations and offers simple example problems to help readers along. Featuring both traditional and recent methods, Advanced Numerical and Semi Analytical Methods for Differential Equations begins with a review of basic numerical methods. It then looks at Laplace, Fourier, and weighted residual methods for solving differential equations. A new challenging method of Boundary Characteristics Orthogonal Polynomials (BCOPs) is introduced next. The book then discusses Finite Difference Method (FDM), Finite Element Method (FEM), Finite Volume Method (FVM), and Boundary Element Method (BEM). Following that, analytical/semi analytic methods like Akbari Ganji's Method (AGM) and Exp-function are used to solve nonlinear differential equations. Nonlinear differential equations using semi-analytical methods are also addressed, namely Adomian Decomposition Method (ADM), Homotopy Perturbation Method (HPM), Variational Iteration Method (VIM), and Homotopy Analysis Method (HAM). Other topics covered include: emerging areas of research related to the solution of differential equations based on differential quadrature and wavelet approach; combined and hybrid methods for solving differential equations; as well as an overview of fractal differential equations. Further, uncertainty in term of intervals and fuzzy numbers have also been included, along with the interval finite element method. This book: Discusses various methods for solving linear and nonlinear ODEs and PDEs Covers basic numerical techniques for solving differential equations along with various discretization methods Investigates nonlinear differential equations using semi-analytical methods Examines differential equations in an uncertain environment Includes a new scenario in which uncertainty (in term of intervals and fuzzy numbers) has been included in differential equations Contains solved example problems, as well as some unsolved problems for self-validation of the topics covered Advanced Numerical and Semi Analytical Methods for Differential Equations is an excellent text for graduate as well as post graduate students and researchers studying various methods for solving differential equations, numerically and semi-analyti...
    Note: Online resource; Title from title page (viewed April 16, 2019)
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  • 7
    Online Resource
    Online Resource
    [Erscheinungsort nicht ermittelbar] : Wiley | Boston, MA : Safari
    ISBN: 9781119585503
    Language: English
    Pages: 1 online resource (464 pages)
    Edition: 1st edition
    Keywords: Electronic books ; local
    Abstract: Brings mathematics to bear on your real-world, scientific problems Mathematical Methods in Interdisciplinary Sciences provides a practical and usable framework for bringing a mathematical approach to modelling real-life scientific and technological problems. The collection of chapters Dr. Snehashish Chakraverty has provided describe in detail how to bring mathematics, statistics, and computational methods to the fore to solve even the most stubborn problems involving the intersection of multiple fields of study. Graduate students, postgraduate students, researchers, and professors will all benefit significantly from the author's clear approach to applied mathematics. The book covers a wide range of interdisciplinary topics in which mathematics can be brought to bear on challenging problems requiring creative solutions. Subjects include: Structural static and vibration problems Heat conduction and diffusion problems Fluid dynamics problems The book also covers topics as diverse as soft computing and machine intelligence. It concludes with examinations of various fields of application, like infectious diseases, autonomous car and monotone inclusion problems.
    Note: Online resource; Title from title page (viewed July 15, 2020) , Mode of access: World Wide Web.
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