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Algebraic Approach To Differential Equations

Algebraic Approach To Differential Equations
Author: Dung Trang Le
Publisher: World Scientific
Total Pages: 320
Release: 2010-05-18
Genre: Mathematics
ISBN: 9814467960

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Mixing elementary results and advanced methods, Algebraic Approach to Differential Equations aims to accustom differential equation specialists to algebraic methods in this area of interest. It presents material from a school organized by The Abdus Salam International Centre for Theoretical Physics (ICTP), the Bibliotheca Alexandrina, and the International Centre for Pure and Applied Mathematics (CIMPA).


Algebraic Approach to Differential Equations

Algebraic Approach to Differential Equations
Author: D?ng Tr ng Lˆ
Publisher: World Scientific
Total Pages: 320
Release: 2010
Genre: Mathematics
ISBN: 9814273244

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Mixing elementary results and advanced methods, Algebraic Approach to Differential Equations aims to accustom differential equation specialists to algebraic methods in this area of interest. It presents material from a school organized by The Abdus Salam International Centre for Theoretical Physics (ICTP), the Bibliotheca Alexandrina, and the International Centre for Pure and Applied Mathematics (CIMPA).


Differential Equations

Differential Equations
Author: Anindya Dey
Publisher: CRC Press
Total Pages: 522
Release: 2021-09-27
Genre: Mathematics
ISBN: 1000436799

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Differential Equations: A Linear Algebra Approach follows an innovative approach of inculcating linear algebra and elementary functional analysis in the backdrop of even the simple methods of solving ordinary differential equations. The contents of the book have been made user-friendly through concise useful theoretical discussions and numerous illustrative examples practical and pathological.


Algebraic Approach to Differential Equations

Algebraic Approach to Differential Equations
Author: International Centre for Theoretical Physics
Publisher:
Total Pages: 312
Release: 2010
Genre: Differential equations
ISBN: 9789784273237

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Differential-Algebraic Equations: A Projector Based Analysis

Differential-Algebraic Equations: A Projector Based Analysis
Author: René Lamour
Publisher: Springer Science & Business Media
Total Pages: 667
Release: 2013-01-19
Genre: Mathematics
ISBN: 3642275559

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Differential algebraic equations (DAEs), including so-called descriptor systems, began to attract significant research interest in applied and numerical mathematics in the early 1980s, no more than about three decades ago. In this relatively short time, DAEs have become a widely acknowledged tool to model processes subjected to constraints, in order to simulate and to control processes in various application fields such as network simulation, chemical kinematics, mechanical engineering, system biology. DAEs and their more abstract versions in infinite-dimensional spaces comprise a great potential for future mathematical modeling of complex coupled processes. The purpose of the book is to expose the impressive complexity of general DAEs from an analytical point of view, to describe the state of the art as well as open problems and so to motivate further research to this versatile, extra-ordinary topic from a broader mathematical perspective. The book elaborates a new general structural analysis capturing linear and nonlinear DAEs in a hierarchical way. The DAE structure is exposed by means of special projector functions. Numerical integration issues and computational aspects are treated also in this context.


Computational Flexible Multibody Dynamics

Computational Flexible Multibody Dynamics
Author: Bernd Simeon
Publisher: Springer Science & Business Media
Total Pages: 254
Release: 2013-06-14
Genre: Mathematics
ISBN: 3642351581

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This monograph, written from a numerical analysis perspective, aims to provide a comprehensive treatment of both the mathematical framework and the numerical methods for flexible multibody dynamics. Not only is this field permanently and rapidly growing, with various applications in aerospace engineering, biomechanics, robotics, and vehicle analysis, its foundations can also be built on reasonably established mathematical models. Regarding actual computations, great strides have been made over the last two decades, as sophisticated software packages are now capable of simulating highly complex structures with rigid and deformable components. The approach used in this book should benefit graduate students and scientists working in computational mechanics and related disciplines as well as those interested in time-dependent partial differential equations and heterogeneous problems with multiple time scales. Additionally, a number of open issues at the frontiers of research are addressed by taking a differential-algebraic approach and extending it to the notion of transient saddle point problems.


Burnside Groups

Burnside Groups
Author: Michihiko Matsuda
Publisher:
Total Pages: 109
Release: 1980
Genre: Burnside problem
ISBN: 9780387099972

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Differential Equations from the Algebraic Standpoint

Differential Equations from the Algebraic Standpoint
Author: Joseph Fels Ritt
Publisher: American Mathematical Soc.
Total Pages: 184
Release: 1932-12-31
Genre: Mathematics
ISBN: 0821846051

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This book can be viewed as a first attempt to systematically develop an algebraic theory of nonlinear differential equations, both ordinary and partial. The main goal of the author was to construct a theory of elimination, which ``will reduce the existence problem for a finite or infinite system of algebraic differential equations to the application of the implicit function theorem taken with Cauchy's theorem in the ordinary case and Riquier's in the partial.'' In his 1934 review of the book, J. M. Thomas called it ``concise, readable, original, precise, and stimulating'', and his words still remain true. A more fundamental and complete account of further developments of the algebraic approach to differential equations is given in Ritt's treatise Differential Algebra, written almost 20 years after the present work (Colloquium Publications, Vol. 33, American Mathematical Society, 1950).