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Lattice models for fluctuating hydro...
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Manacorda, Alessandro.
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Lattice models for fluctuating hydrodynamics in granular and active matter
Record Type:
Electronic resources : Monograph/item
Title/Author:
Lattice models for fluctuating hydrodynamics in granular and active matter/ by Alessandro Manacorda.
Author:
Manacorda, Alessandro.
Published:
Cham :Springer International Publishing : : 2018.,
Description:
xix, 200 p. :digital ;24 cm.
[NT 15003449]:
Part I: Granular and Active Matter -- Granular Matter -- Active Matter -- Hydrodynamic Description and Lattice Models -- Part II: Fluctuating Hydrodynamics of Granular and Active Matter: Lattice Models -- Granular Lattice: Fluctuating Hydrodynamics -- Granular Lattice: Beyond Molecular Chaos -- Active Lattice Fluctuating Hydrodynamics -- Conclusions.
Contained By:
Springer eBooks
Subject:
Hydrodynamics. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-95080-8
ISBN:
9783319950808
Lattice models for fluctuating hydrodynamics in granular and active matter
Manacorda, Alessandro.
Lattice models for fluctuating hydrodynamics in granular and active matter
[electronic resource] /by Alessandro Manacorda. - Cham :Springer International Publishing :2018. - xix, 200 p. :digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Part I: Granular and Active Matter -- Granular Matter -- Active Matter -- Hydrodynamic Description and Lattice Models -- Part II: Fluctuating Hydrodynamics of Granular and Active Matter: Lattice Models -- Granular Lattice: Fluctuating Hydrodynamics -- Granular Lattice: Beyond Molecular Chaos -- Active Lattice Fluctuating Hydrodynamics -- Conclusions.
This book investigates the common nature of granular and active systems, which is rooted in their intrinsic out-of-equilibrium behavior, with the aim of finding minimal models able to reproduce and predict the complex collective behavior observed in experiments and simulations. Granular and active matter are among the most studied systems in out-of-equilibrium statistical physics. The book guides readers through the derivation of a fluctuating hydrodynamic description of granular and active matter by means of controlled and transparent mathematical assumptions made on a lattice model. It also shows how a macroscopic description can be provided from microscopic requirements, leading to the prediction of collective states such as cooling, swarming, clustering and the transitions among them. The analytical and numerical results shed new light on the physical connection between the local, microscopic properties of few particles and the macroscopic collective motion of the whole system.
ISBN: 9783319950808
Standard No.: 10.1007/978-3-319-95080-8doiSubjects--Topical Terms:
561030
Hydrodynamics.
LC Class. No.: QA911 / .M363 2018
Dewey Class. No.: 532.5
Lattice models for fluctuating hydrodynamics in granular and active matter
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Part I: Granular and Active Matter -- Granular Matter -- Active Matter -- Hydrodynamic Description and Lattice Models -- Part II: Fluctuating Hydrodynamics of Granular and Active Matter: Lattice Models -- Granular Lattice: Fluctuating Hydrodynamics -- Granular Lattice: Beyond Molecular Chaos -- Active Lattice Fluctuating Hydrodynamics -- Conclusions.
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This book investigates the common nature of granular and active systems, which is rooted in their intrinsic out-of-equilibrium behavior, with the aim of finding minimal models able to reproduce and predict the complex collective behavior observed in experiments and simulations. Granular and active matter are among the most studied systems in out-of-equilibrium statistical physics. The book guides readers through the derivation of a fluctuating hydrodynamic description of granular and active matter by means of controlled and transparent mathematical assumptions made on a lattice model. It also shows how a macroscopic description can be provided from microscopic requirements, leading to the prediction of collective states such as cooling, swarming, clustering and the transitions among them. The analytical and numerical results shed new light on the physical connection between the local, microscopic properties of few particles and the macroscopic collective motion of the whole system.
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Physics and Astronomy (Springer-11651)
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EB QA911 .M363 2018
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