The Lattice Boltzmann Equation: For Complex States of Flowing Matter
Autor Sauro Succien Limba Engleză Paperback – 21 mai 2022
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|---|---|---|
| Paperback (2) | 376.83 lei 41-52 zile | |
| Oxford University Press – 21 mai 2022 | 376.83 lei 41-52 zile | |
| OUP OXFORD – 23 mai 2013 | 474.92 lei 41-52 zile | |
| Hardback (2) | 877.88 lei 20-31 zile | |
| OUP OXFORD – 19 apr 2018 | 877.88 lei 20-31 zile | |
| OUP OXFORD – 28 iun 2001 | 1188.38 lei 41-52 zile |
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Specificații
ISBN-13: 9780192862808
ISBN-10: 0192862804
Pagini: 800
Ilustrații: Over 280 illustrations/figures
Dimensiuni: 175 x 244 x 40 mm
Greutate: 1.54 kg
Editura: Oxford University Press
Locul publicării:Oxford, United Kingdom
ISBN-10: 0192862804
Pagini: 800
Ilustrații: Over 280 illustrations/figures
Dimensiuni: 175 x 244 x 40 mm
Greutate: 1.54 kg
Editura: Oxford University Press
Locul publicării:Oxford, United Kingdom
Recenzii
this book may provide a source information and possibly inspiration to a broad audience of scientists dealing with the physics of classical and quantum flowing matter across many scales of motion
It is important to register that this book in underpinned by strong pedagogical principles. This is not an arcane monograph but rather a text to get to grips with this extremely disparate topic. One is confident that this book will serve very well the community of researchers who ply their trade using the Lattice Boltzmann equation.
It is important to register that this book in underpinned by strong pedagogical principles. This is not an arcane monograph but rather a text to get to grips with this extremely disparate topic. One is confident that this book will serve very well the community of researchers who ply their trade using the Lattice Boltzmann equation.
Notă biografică
Dr Sauro Succi holds a degree in Nuclear Engineering from the University of Bologna and a PhD in Plasma Physics from the EPFL, Lausanne. Since 1995 he serves as a Director of Research at the Istituto Applicazioni Calcolo of the Italian National Research Council in Rome and also as Research Associate of the Physics Department of Harvard University and a Visiting Professor at the Institute of Applied Computational Science at the School of Engineering and Applied Sciences of Harvard University. He has published extensively on a broad range of topics in computational kinetic theory and non-equilibrium statistical physics, including thermonuclear plasmas, fluid turbulence, micro and nanofluidics, as well as quantum-relativistic flows.