Description

This second edition of the book, Nonlinear Random Vibration: Analytical Techniques and Applications, expands on the original edition with additional detailed steps in various places in the text. It is a first systematic presentation on the subject. Its features include:
• a concise treatment of Markovian and non- Markovian solutions of nonlinear stochastic differential equations,
• exact solutions of Fokker-Planck-Kolmogorov equations,
• methods of statistical linearization,
• statistical nonlinearization techniques,
• methods of stochastic averaging,
• truncated hierarchy techniques, and
• an appendix on probability theory.

A special feature is its incorporation of detailed steps in many examples of engineering applications.

Targeted audience: Graduates, research scientists and engineers in mechanical, aerospace, civil and environmental (earthquake, wind and transportation), automobile, naval, architectural, and mining engineering.

Nonlinear Random Vibration: Analytical Techniques and Applications

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£145.00

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Hardback by Cho W.S. To

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This second edition of the book, Nonlinear Random Vibration: Analytical Techniques and Applications, expands on the original edition with additional... Read more

    Publisher: Taylor & Francis Ltd
    Publication Date: 10/08/2011
    ISBN13: 9780415898973, 978-0415898973
    ISBN10: 0415898978

    Number of Pages: 312

    Non Fiction , Technology, Engineering & Agriculture , Education

    Description

    This second edition of the book, Nonlinear Random Vibration: Analytical Techniques and Applications, expands on the original edition with additional detailed steps in various places in the text. It is a first systematic presentation on the subject. Its features include:
    • a concise treatment of Markovian and non- Markovian solutions of nonlinear stochastic differential equations,
    • exact solutions of Fokker-Planck-Kolmogorov equations,
    • methods of statistical linearization,
    • statistical nonlinearization techniques,
    • methods of stochastic averaging,
    • truncated hierarchy techniques, and
    • an appendix on probability theory.

    A special feature is its incorporation of detailed steps in many examples of engineering applications.

    Targeted audience: Graduates, research scientists and engineers in mechanical, aerospace, civil and environmental (earthquake, wind and transportation), automobile, naval, architectural, and mining engineering.

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