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  • 1
    Online Resource
    Online Resource
    Cambridge : Cambridge University Press
    UID:
    b3kat_BV048537140
    Format: 1 Online-Ressource (xii, 200 Seiten)
    ISBN: 9781009158749
    Content: 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
    Note: Title from publisher's bibliographic system (viewed on 22 Sep 2022)
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-1-00-915873-2
    Language: English
    Subjects: Physics
    RVK:
    URL: Volltext  (URL des Erstveröffentlichers)
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Online Resource
    Online Resource
    Cambridge:Cambridge University Press,
    UID:
    almafu_9960846625402883
    Format: 1 online resource (xii, 200 pages) : , digital, PDF file(s).
    Edition: 1st ed.
    ISBN: 1-009-19148-9 , 1-009-15874-0
    Content: 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.
    Note: Title from publisher's bibliographic system (viewed on 22 Sep 2022). , Cover -- Half-title Page -- Title Page -- Copyright Page -- Contents -- Preface -- Symbol List -- 1 Introduction -- 1.1 Nanoscale Fluid Phenomena -- 1.2 Nanoscale Hydrodynamic Modelling -- 1.3 Molecular Dynamics -- 2 Balance Equations -- 2.1 The Microscopic Operators -- 2.2 Application of the Operators -- 2.3 More Examples -- 2.4 Further Explorations -- 3 Nanoscale Hydrodynamic Relaxations -- 3.1 Classical Hydrodynamics -- 3.2 Single-Particle Dynamics -- 3.3 Further Explorations -- 4 Extensions to Classical Hydrodynamics -- 4.1 Viscoelastic Relaxations -- 4.2 Non-local Viscous Response -- 4.3 Relaxation Phenomena in Molecular Fluids -- 4.4 Polarisation Relaxation -- 4.5 Further Explorations -- 5 Simple Nanoscale Flows -- 5.1 Homogeneous Flows -- 5.2 Effects of Confinement -- 5.3 The Planar Poiseuille Flow and the Navier Boundary Condition -- 5.4 Other Simple Flows -- 5.5 Theory for the Slip Length -- 5.6 Molecular Flows -- 5.7 Further Explorations -- 6 Gradients -- 6.1 Phenomena in Temperature Gradients -- 6.2 Charged Systems in Confinement -- 6.3 Reactive Fluids -- 6.4 Further Explorations -- 7 Epilogue -- Appendix: A Bit of Help -- A.1 The Fourier Transform -- A.2 The Dirac Delta -- A.3 Expected Value, Average, and Correlation Functions -- A.4 Method of Undetermined Coefficients -- A.5 Computational Resources -- References -- Index.
    Additional Edition: ISBN 9781009158732
    Additional Edition: Print version: Hansen, Jesper Schmidt, 1973- Nanoscale hydrodynamics of simple systems New York : Cambridge University Press, 2022 ISBN 9781009158732
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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