Nonconservative Stability Problems of Modern Physics / / Oleg N. Kirillov.

This work gives a complete overview on the subject of nonconservative stability from the modern point of view. Relevant mathematical concepts are presented, as well as rigorous stability results and numerous classical and contemporary examples from mechanics and physics. It deals with both finite- a...

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Superior document:Title is part of eBook package: De Gruyter DG Studies in Mathematical Physics eBook-Package
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Place / Publishing House:Berlin ;, Boston : : De Gruyter, , [2013]
©2013
Year of Publication:2013
Language:English
Series:De Gruyter Studies in Mathematical Physics , 14
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Physical Description:1 online resource (429 p.)
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245 1 0 |a Nonconservative Stability Problems of Modern Physics /  |c Oleg N. Kirillov. 
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505 0 0 |t Frontmatter --   |t Preface --   |t Contents --   |t Chapter 1: Introduction --   |t Chapter 2: Lyapunov stability and linear stability analysis --   |t Chapter 3: Hamiltonian and gyroscopic systems --   |t Chapter 4: Reversible and circulatory systems --   |t Chapter 5: Influence of structure of forces on stability --   |t Chapter 6: Dissipation-induced instabilities --   |t Chapter 7: Nonself-adjoint boundary eigenvalue problems for differential operators and operator matrices dependent on parameters --   |t Chapter 8: The destabilization paradox in continuous circulatory systems --   |t Chapter 9: The MHD kinematic mean field α2-dynamo --   |t Chapter 10: Campbell diagrams of gyroscopic continua and subcritical friction-induced flutter --   |t Chapter 11: Non-Hermitian perturbation of Hermitian matrices with physical applications --   |t Chapter 12: Magnetorotational instability --   |t References --   |t Index 
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520 |a This work gives a complete overview on the subject of nonconservative stability from the modern point of view. Relevant mathematical concepts are presented, as well as rigorous stability results and numerous classical and contemporary examples from mechanics and physics. It deals with both finite- and infinite-dimensional nonconservative systems and covers the fundamentals of the theory, including such topics as Lyapunov stability and linear stability analysis, Hamiltonian and gyroscopic systems, reversible and circulatory systems, influence of structure of forces on stability, and dissipation-induced instabilities, as well as concrete physical problems, including perturbative techniques for nonself-adjoint boundary eigenvalue problems, theory of the destabilization paradox due to small damping in continuous circulatory systems, Krein-space related perturbation theory for the MHD kinematic mean field α²-dynamo, analysis of Campbell diagrams and friction-induced flutter in gyroscopic continua, non-Hermitian perturbation of Hermitian matrices with applications to optics, and magnetorotational instability and the Velikhov-Chandrasekhar paradox. The book serves present and prospective specialists providing the current state of knowledge in the actively developing field of nonconservative stability theory. Its understanding is vital for many areas of technology, ranging from such traditional ones as rotor dynamics, aeroelasticity and structural mechanics to modern problems of hydro- and magnetohydrodynamics and celestial mechanics. 
530 |a Issued also in print. 
538 |a Mode of access: Internet via World Wide Web. 
546 |a In English. 
588 0 |a Description based on online resource; title from PDF title page (publisher's Web site, viewed 28. Feb 2023) 
650 0 |a Eigenvalues. 
650 0 |a Mechanical impedance. 
650 0 |a Oscillations. 
650 0 |a Stability  |x Mathematical models. 
650 4 |a Aerodynamics. 
650 4 |a Control. 
650 4 |a Mechanics. 
650 4 |a Physics. 
650 4 |a Robotics. 
650 4 |a Stability. 
650 7 |a SCIENCE / Physics / General.  |2 bisacsh 
653 |a Mechanics. 
653 |a Nonconservative Systems. 
653 |a Nonself-adjoint Operators. 
653 |a Stability Problems. 
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