Guide Normal Forms and Unfoldings for Local Dynamical Systems

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Normal Systems Local Forms Dynamical and Unfoldings for
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The Resource Normal forms and unfoldings for local dynamical systems, James Murdock, electronic resource.

Normal forms and unfoldings for local dynamical systems, James Murdock, electronic resource Resource Information. The item Normal forms and unfoldings for local dynamical systems, James Murdock, electronic resource represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in University Of Pikeville.

Normal Forms and Unfoldings for Local Dynamical Systems - PDF Free Download

This item is available to borrow from 1 library branch. Creator Murdock, James A. Contributor NetLibrary, Inc.

Dynamical Systems and Chaos: Computational Solutions Part 1

Language eng. Publication New York, Springer, c Extent xix, p. Isbn Label Normal forms and unfoldings for local dynamical systems, James Murdock, electronic resource Instantiates Normal forms and unfoldings for local dynamical systems Publication New York, Springer, c Antecedent source unknown Bibliography note Includes bibliographical references p.


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Dimensions unknown Extent xix, p. File format unknown Form of item electronic Isbn Isbn Type electronic bk. Level of compression unknown Other physical details ill. Quality assurance targets not applicable Reformatting quality unknown Reproduction note Electronic reproduction. Sound unknown sound Specific material designation remote.

Normal Forms and Unfoldings for Local Dynamical Systems

Label Normal forms and unfoldings for local dynamical systems, James Murdock, electronic resource Publication New York, Springer, c Antecedent source unknown Bibliography note Includes bibliographical references p. Subject Differentiable dynamical systems Electronic books Normal forms Mathematics Genre Electronic books Member of Springer monographs in mathematics. Library Locations Map Details. Allalra Library Borrow it. Normal-form theory has become a celebrated topic which is widely used in nonlinear science.

Its basic application is the classification of dynamical systems into categories by transforming nonlinear vector fields into a standard form which is determined by their linear part; one expects that the solution sets of those dynamical systems whose vector fields lie in the same category should exhibit similar features.

Normal Forms and Unfoldings for Local Dynamical Systems

The book under review is chiefly concerned with the mechanics of carrying out this procedure. Elphick and G. Iooss , simplified and sl 2 previously championed by R.


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Cushman and J. The following Chapters 3 and 4 on respectively linear and nonlinear normal forms make up the heart of the book. Chapter 3 is dedicated to normal forms related to unfoldings of linear vector fields.


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Ring and module theory are brought to bear on the former, while algorithmic methods suitable for symbolic computation are developed for the latter. The final two chapters are devoted to some central applications of nonlinear normal forms.