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Lyotropic Chromonic Liquid Crystals - From Viscoelastic Properties to Living Liquid Crystals (Hardcover, 1st ed. 2017): Shu-ang... Lyotropic Chromonic Liquid Crystals - From Viscoelastic Properties to Living Liquid Crystals (Hardcover, 1st ed. 2017)
Shu-ang Zhou
R3,172 Discovery Miles 31 720 Ships in 12 - 17 working days

This thesis describes lyotropic chromonic liquid crystals (LCLCs) with exotic elastic and viscous properties. The first part of the thesis presents a thorough analysis of the elastic and viscous properties of LCLCs as functions of concentration, temperature and ionic contents, while the second part explores an active nematic system: living liquid crystals, which represent a combination of LCLC and living bacteria. LCLCs are an emerging class of liquid crystals that have shown profound connections to biological systems in two aspects. First, the assembly process of the chromonic aggregates is essentially the same as DNA oligomers and other super-molecular assemblies of biological origin. LCLCs thus provide an excellent model system for studying physical properties such as the elasticity and viscosity of these supramolecular assemblies. Second, LCLCs are biocompatible, thus serving as a unique anisotropic matrix to interface with living systems such as bacteria. This thesis deepens our understanding of both aspects. The noncovalent nature of chromonic aggregation produces the unique viscoelasticity to be found in LCLCs, which differs dramatically from that of traditional LCs. Anisotropic interactions between LCLCs and bacteria lead to fascinating phenomena such as the deformation of LCLCs with a characteristic wavelength determined by the elasticity of the LCLCs and the activity of the bacteria, orientationally controlled trajectories of bacteria and visualization of 24 nm flagella motion.

Lyotropic Chromonic Liquid Crystals - From Viscoelastic Properties to Living Liquid Crystals (Paperback, Softcover reprint of... Lyotropic Chromonic Liquid Crystals - From Viscoelastic Properties to Living Liquid Crystals (Paperback, Softcover reprint of the original 1st ed. 2017)
Shu-ang Zhou
R2,849 R2,689 Discovery Miles 26 890 Save R160 (6%) Out of stock

This thesis describes lyotropic chromonic liquid crystals (LCLCs) with exotic elastic and viscous properties. The first part of the thesis presents a thorough analysis of the elastic and viscous properties of LCLCs as functions of concentration, temperature and ionic contents, while the second part explores an active nematic system: living liquid crystals, which represent a combination of LCLC and living bacteria. LCLCs are an emerging class of liquid crystals that have shown profound connections to biological systems in two aspects. First, the assembly process of the chromonic aggregates is essentially the same as DNA oligomers and other super-molecular assemblies of biological origin. LCLCs thus provide an excellent model system for studying physical properties such as the elasticity and viscosity of these supramolecular assemblies. Second, LCLCs are biocompatible, thus serving as a unique anisotropic matrix to interface with living systems such as bacteria. This thesis deepens our understanding of both aspects. The noncovalent nature of chromonic aggregation produces the unique viscoelasticity to be found in LCLCs, which differs dramatically from that of traditional LCs. Anisotropic interactions between LCLCs and bacteria lead to fascinating phenomena such as the deformation of LCLCs with a characteristic wavelength determined by the elasticity of the LCLCs and the activity of the bacteria, orientationally controlled trajectories of bacteria and visualization of 24 nm flagella motion.

Electrodynamic Theory of Superconductors (Hardcover): Shu-ang Zhou Electrodynamic Theory of Superconductors (Hardcover)
Shu-ang Zhou
R2,191 Discovery Miles 21 910 Out of stock

Electrodynamic Theory of Superconductors is the first book of its kind. It gives a unified and comprehensive theoretical treatment of electromagnetic, thermal and mechanical phenomena in superconductors. Basic concepts and principles in continuum electrodynamics are introduced, with particular emphasis on methodology. Electrodynamic models are developed to study magnetoelastic and thermoelastic superconductors. The author also introduces phenomenological London theory, Cinzburg-Landau theory, electrodynamic models for superconducting thin films, AC losses and Josephson junctions, and BCS microscopic theory of superconductivity. This book can be used as a post graduate level text and as a reference book for researchers and engineers working in the field of applied superconductivity and related areas.

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