The Static and Dynamic Continuum Theory of Liquid Crystals : A Mathematical Introduction
Book Details
Format
Paperback / Softback
Book Series
Liquid Crystals Book Series
ISBN-10
0748408967
ISBN-13
9780748408962
Publisher
Taylor & Francis Ltd
Imprint
Taylor & Francis Ltd
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jun 25th, 2004
Print length
372 Pages
Weight
578 grams
Dimensions
23.40 x 15.20 x 2.40 cms
Product Classification:
Maths for scientistsMaths for engineers
Ksh 14,200.00
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Introduces the basic continuum theory for nematic liquid crystals in equilibria, then proceeds to simple applications of this theory. This work includes a discussion of electrical and magnetic field effects that give rise to Freedericksz transitions, followed by an account of dynamic theory and elementary viscometry of nemantics.
Given the widespread interest in macroscopic phenomena in liquid crystals, stemming from their applications in displays and devices. The need has arisen for a rigorous yet accessible text suitable for graduate students, whatever their scientific background. This book satisfies that need.
The approach taken in this text, is to introduce the basic continuum theory for nematic liquid crystals in equilibria, then it proceeds to simple application of this theory- in particular, there is a discussion of electrical and magnetic field effects which give rise to Freedericksz transitions, which are important in devices. This is followed by an account of dynamic theory and elementary viscometry of nemantics Discussions of backflow and flow-induced instabilities are also included. Smetic theory is also briefly introduced and summarised with some examples of equilibrium solutions as well as those with dynamic effects. A number of mathematical techniques, such as Cartesian tensors and some variational calculus, are presented in the appendices.
The approach taken in this text, is to introduce the basic continuum theory for nematic liquid crystals in equilibria, then it proceeds to simple application of this theory- in particular, there is a discussion of electrical and magnetic field effects which give rise to Freedericksz transitions, which are important in devices. This is followed by an account of dynamic theory and elementary viscometry of nemantics Discussions of backflow and flow-induced instabilities are also included. Smetic theory is also briefly introduced and summarised with some examples of equilibrium solutions as well as those with dynamic effects. A number of mathematical techniques, such as Cartesian tensors and some variational calculus, are presented in the appendices.
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