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Liquid Crystals : Concepts and Physical Properties Illustrated by Experiments, Two Volume Set - Patrick Oswald

Liquid Crystals

Concepts and Physical Properties Illustrated by Experiments, Two Volume Set

By: Patrick Oswald, Pawel Pieranski

Multi-Item Pack | 18 January 2006 | Edition Number 1

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Liquid crystals allow us to perform experiments that provide insight into fundamental problems of modern physics, such as phase transitions, frustration, elasticity, hydrodynamics, defects, growth phenomena, and optics (linear and non linear). This excellent volume meets the need for an up-to-date text on liquid crystals.
Nematic and Cholesteric Liquid Crystals: Concepts and Physical Properties Illustrated by Experiments is a result of personal research and of the graduate lectures given by the authors at the A0/00cole Normale SupA(c)rieure de Lyon and the University of Paris VII, respectively. The first part of the book presents historical background, the modern classification of liquid crystals, and mesogenic anatomy; the second part examines liquid crystals with nematic and cholesteric orientational order. Topics include dielectric and magnetic properties, Frederiks transitions and displays, light scattering, flow and electrohydrodynamic instabilities, surface anchoring transitions, interfaces, equilibrium shapes, and the Mullins-Sekerka instability. Smectic and columnar liquid crystals are covered in more detail by the authors in a separate volume, entitled Smectic and Columnar Liquid Crystals: Concepts and Physical Properties Illustrated by Experiments.
The presentation is illustrated throughout by simple experiments, some of which were performed in class. Nematic and Cholesteric Liquid Crystals: Concepts and Physical Properties Illustrated by Experiments provides a useful reference intended for advanced undergraduate and graduate students and researchers in liquid crystals, condensed matter physics, and materials science.
Industry Reviews

"...authoritative and detailed...one notices the importance given to topics that have only received limited coverage elsewhere in the literature, such as surface phenomena (anchoring, faceting) and the dynamics of growth or deformation."
- Jacques Friedel, Academie des Sciences, Paris, France

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