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Nanoscale Hydrodynamics of Simple Systems

Nanoscale Hydrodynamics of Simple Systems

Nanoscale Hydrodynamics of Simple Systems

Jesper Schmidt Hansen, Roskilde Universitet, Denmark
September 2022
Hardback
9781009158732
AUD$96.95
inc GST
Hardback
USD
eBook

    Written for graduate students and researchers, Nanoscale Hydrodynamics of Simple Systems covers fundamental aspects of nanoscale hydrodynamics and extends this basis to examples. Covering classical, generalised and extended hydrodynamic theories, the title also discusses their limitations. It introduces the reader to nanoscale fluid phenomena and explores how fluid dynamics on this extreme length scale can be understood using hydrodynamic theory and detailed atomistic simulations. It also comes with additional resources including a series of explanatory videos on the installation of the code package, as well as discussion, analysis and visualisations of simulations. This title primarily focusses on training the reader to identify when classical theory breaks down, how to extend and generalise the theory, as well as assimilate how simulations and theory together can be used to gain fundamental knowledge about the fluid dynamics of small-scale systems.

    • Provides detailed explorations of the theory of nanofluidics and its limitations
    • Provides a series of further exploration exercises used to gain new insight into nanoscale hydrodynamics
    • Includes a series of explanatory videos designed to help young researchers new to the field

    Reviews & endorsements

    '… a useful new treatment of nanoscale fluid dynamics suitable for well-prepared readers. … Recommended.' M. R. King, Choice

    See more reviews

    Product details

    September 2022
    Hardback
    9781009158732
    250 pages
    261 × 185 × 18 mm
    0.6kg
    Available

    Table of Contents

    • Preface
    • Symbol list
    • 1. Introduction
    • 2. Balance equations
    • 3. Nanoscale hydrodynamic relaxations
    • 4. Extensions to classical hydrodynamics
    • 5. Simple nanoscale flows
    • 6. Gradients
    • 7. Epilogue
    • Appendix
    • References
    • Index.
    Resources for
    Type
    Link to additional resources on GitHub