Pattern Formation and Stability in Magnetic Colloids / / edited by Nicolás O. Rojas.

This book presents a selection of works on pattern formation and stability of magnetic colloids. Magnetic liquids can be investigated in different scenarios. Geometry (quasi 1, 2 and 3 dimensional vessels ), scales (molecules, macroscopic particles) and the type of suspension (e.g., ferromagnetic, s...

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Place / Publishing House:London : : IntechOpen,, 2020.
Year of Publication:2020
Language:English
Physical Description:1 online resource (116 pages) :; illustrations
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245 0 0 |a Pattern Formation and Stability in Magnetic Colloids /  |c edited by Nicolás O. Rojas. 
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520 |a This book presents a selection of works on pattern formation and stability of magnetic colloids. Magnetic liquids can be investigated in different scenarios. Geometry (quasi 1, 2 and 3 dimensional vessels ), scales (molecules, macroscopic particles) and the type of suspension (e.g., ferromagnetic, superparamagnetic) employed in experiments completely modify the aggregation process. The observed patterns in the fluid range from surface waves to bulk chains and bundles. The approaches presented in this book use standard statistical means such as the Gibbs free energy and chemical potential. Numerical works are implemented employing methods such as Monte Carlo or Langevin dynamics simulations. Kinetic theory is used in theoretical approaches being successfully applied to algorithms such as the Lattice-Boltzmann method. 
504 |a Includes bibliographical references. 
505 0 |a Preface Chapter1 Introductory Chapter: An Example in Superparamagnetic Colloids Chapter2 Interaction of Magnetic Fields on FerrofluidicTaylor-Couette Flow Chapter3 Equilibrium Structures and Stationary Patterns on Magnetic Colloidal Fluids Chapter4 The Study of Magneto-Convection HeatTransfer in a Partially Open Cavity Based on LBM Chapter5 Convection Flow of MHD Couple Stress Fluid inVertical Microchannel with Entropy Generation Chapter6 Free Convection in a MHD Open Cavity with a Linearly Heated Wall Using LBM. 
650 0 |a Fluid mechanics. 
776 |z 1-83880-275-4 
700 1 |a Rojas, Nicolás O.,  |e editor. 
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