Phase Separation in Soft Matter Physics
Author | : Pulat K. Khabibullaev |
Publisher | : |
Total Pages | : 200 |
Release | : 2014-01-15 |
Genre | : |
ISBN | : 9783662092798 |
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Author | : Pulat K. Khabibullaev |
Publisher | : |
Total Pages | : 200 |
Release | : 2014-01-15 |
Genre | : |
ISBN | : 9783662092798 |
Author | : Pulat K. Khabibullaev |
Publisher | : Springer Science & Business Media |
Total Pages | : 200 |
Release | : 2003-04-11 |
Genre | : Science |
ISBN | : 9783540438908 |
This is the first monograph devoted to investigation of the most complex physical processes of soft systems, including a wide class of solutions. It blends modern theoretical understanding and experimental results, proposing new methods and models for the description of several soft systems.
Author | : Pulat K. Khabibullaev |
Publisher | : Springer Science & Business Media |
Total Pages | : 190 |
Release | : 2013-04-17 |
Genre | : Science |
ISBN | : 3662092786 |
This is the first monograph devoted to investigation of the most complex physical processes of soft systems, including a wide class of solutions. It blends modern theoretical understanding and experimental results, proposing new methods and models for the description of several soft systems.
Author | : Masao Doi |
Publisher | : Oxford University Press, USA |
Total Pages | : 271 |
Release | : 2013-07-04 |
Genre | : Science |
ISBN | : 0199652953 |
Soft matter (polymers, colloids, surfactants, liquid crystals) are an important class of materials for modern and future technologies. They are complex materials that behave neither like a fluid nor a solid. This book describes the characteristics of such materials and how we can understand such characteristics in the language of physics.
Author | : Shigeyuki Komura |
Publisher | : World Scientific |
Total Pages | : 435 |
Release | : 2012-02-03 |
Genre | : Science |
ISBN | : 9814458430 |
Soft matter is a concept which covers polymers, liquid crystals, colloids, amphiphilic molecules, glasses, granular and biological materials. One of the fundamental characteristic features of soft matter is that it exhibits various mesoscopic structures originating from a large number of internal degrees of freedom of each molecule. Due to such intermediate structures, soft matter can easily be brought into non-equilibrium states and cause non-linear responses by imposing external fields such as an electric field, a mechanical stress or a shear flow. Volume 4 of the series in Soft Condensed Matter focuses on the non-linear and non-equilibrium properties of soft matter. It contains a collection of review articles on the current topics of non-equilibrium soft matter physics written by leading experts in the field. The topics dealt with in this volume includes rheology of polymers and liquid crystals, dynamical properties of Langmuir monolayers at the air/water interface, hydrodynamics of membranes and twisted filaments as well as dynamics of deformable self-propelled particles and migration of biological cells. This book serves both as an introduction to students as well as a useful reference to researchers.
Author | : Richard A. L. Jones |
Publisher | : Oxford University Press |
Total Pages | : 207 |
Release | : 2002-06-20 |
Genre | : Science |
ISBN | : 019888656X |
The physics of soft condensed matter is probably one of the most 'fashionable' areas in the physical sciences today. This book offers a coherent and clear introduction to the properties and behaviour of soft matter. It begins with a treatment of the general underlying principles: the relation of the structure and dynamics of solids and liquids to intermolecular forces, the thermodynamics and kinetics of phase transitions, and the principles of self-assembly. Then the specific properties of colloids, polymers, liquid crystals and self-assembling amphiphilic systems are treated within this framework. A concluding chapter illustrates how principles of soft matter physics can be used to understand properties of biological systems. The focus on the essentials and the straightforward approach make the book suitable for students with either a theoretical or an experimental bias. The level is appropriate for final year undergraduates and beginning graduate students in physics, chemistry, materials science, and chemical engineering.
Author | : Masao Doi |
Publisher | : OUP Oxford |
Total Pages | : 492 |
Release | : 2013-07-04 |
Genre | : Science |
ISBN | : 0191503517 |
Soft matter (polymers, colloids, surfactants and liquid crystals) are an important class of materials in modern technology. They also form the basis of many future technologies, for example in medical and environmental applications. Soft matter shows complex behaviour between fluids and solids, and used to be a synonym of complex materials. Due to the developments of the past two decades, soft condensed matter can now be discussed on the same sound physical basis as solid condensed matter. The purpose of this book is to provide an overview of soft matter for undergraduate and graduate students in physics and materials science. The book provides an introduction to soft matter (what it is, and what are the characteristics of such materials), and also provides the reader with the physical basis for understanding and discussing such characteristics in more detail. Many basic concepts, which are required in advanced courses of condensed matter physics, such as coarse graining, scaling, phase separation, order-disorder transition, Brownian motion, and fluctuation-dissipation theorem, are explained in detail with various forms of soft matter used as examples.
Author | : Richard A.L. Jones |
Publisher | : Oxford University Press |
Total Pages | : 220 |
Release | : 2002-06-20 |
Genre | : Science |
ISBN | : 9780198505891 |
This text offers an introduction to the properties and behaviour of soft matter. It begins with a treatment of the underlying principles, then discusses how the properties of certain substances and systems are treated within this framework.
Author | : Eugene Michael Terentjev |
Publisher | : Oxford University Press, USA |
Total Pages | : 605 |
Release | : 2015 |
Genre | : Science |
ISBN | : 0199667926 |
This handbook will provide the reader with a profound introduction to the key subjects comprising the relatively new topic of Soft Condensed Matter. It will provide students and researchers with an authoritative overview of the field, identify key principles at play, and the most prominent ways of further development.
Author | : Michael P. Marder |
Publisher | : John Wiley & Sons |
Total Pages | : 985 |
Release | : 2010-11-17 |
Genre | : Science |
ISBN | : 0470949945 |
Now updated—the leading single-volume introduction to solid state and soft condensed matter physics This Second Edition of the unified treatment of condensed matter physics keeps the best of the first, providing a basic foundation in the subject while addressing many recent discoveries. Comprehensive and authoritative, it consolidates the critical advances of the past fifty years, bringing together an exciting collection of new and classic topics, dozens of new figures, and new experimental data. This updated edition offers a thorough treatment of such basic topics as band theory, transport theory, and semiconductor physics, as well as more modern areas such as quasicrystals, dynamics of phase separation, granular materials, quantum dots, Berry phases, the quantum Hall effect, and Luttinger liquids. In addition to careful study of electron dynamics, electronics, and superconductivity, there is much material drawn from soft matter physics, including liquid crystals, polymers, and fluid dynamics. Provides frequent comparison of theory and experiment, both when they agree and when problems are still unsolved Incorporates many new images from experiments Provides end-of-chapter problems including computational exercises Includes more than fifty data tables and a detailed forty-page index Offers a solutions manual for instructors Featuring 370 figures and more than 1,000 recent and historically significant references, this volume serves as a valuable resource for graduate and undergraduate students in physics, physics professionals, engineers, applied mathematicians, materials scientists, and researchers in other fields who want to learn about the quantum and atomic underpinnings of materials science from a modern point of view.