Formulations Of Classical And Quantum Dynamical Theory


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Formulations of Classical and Quantum Dynamical Theory


Formulations of Classical and Quantum Dynamical Theory

Author:

language: en

Publisher: Elsevier

Release Date: 2014-05-14


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In this book, we study theoretical and practical aspects of computing methods for mathematical modelling of nonlinear systems. A number of computing techniques are considered, such as methods of operator approximation with any given accuracy; operator interpolation techniques including a non-Lagrange interpolation; methods of system representation subject to constraints associated with concepts of causality, memory and stationarity; methods of system representation with an accuracy that is the best within a given class of models; methods of covariance matrix estimation;methods for low-rank matrix approximations; hybrid methods based on a combination of iterative procedures and best operator approximation; andmethods for information compression and filtering under condition that a filter model should satisfy restrictions associated with causality and different types of memory.As a result, the book represents a blend of new methods in general computational analysis,and specific, but also generic, techniques for study of systems theory ant its particularbranches, such as optimal filtering and information compression.- Best operator approximation,- Non-Lagrange interpolation,- Generic Karhunen-Loeve transform- Generalised low-rank matrix approximation- Optimal data compression- Optimal nonlinear filtering

Formulations of Classical and Quantum Dynamical Theory


Formulations of Classical and Quantum Dynamical Theory

Author: Gerald Rosen

language: en

Publisher:

Release Date: 1969


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Geometric Formulation of Classical and Quantum Mechanics


Geometric Formulation of Classical and Quantum Mechanics

Author: G. Giachetta

language: en

Publisher: World Scientific

Release Date: 2011


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The geometric formulation of autonomous Hamiltonian mechanics in the terms of symplectic and Poisson manifolds is generally accepted. This book provides the geometric formulation of non-autonomous mechanics in a general setting of time-dependent coordinate and reference frame transformations.