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" The Physics and Chemistry of Liquid Crystal Devices "
edited by Gerald J. Sprokel.
Document Type
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BL
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Record Number
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575651
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Doc. No
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b404870
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Main Entry
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Sprokel, Gerald J.
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Title & Author
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The Physics and Chemistry of Liquid Crystal Devices\ edited by Gerald J. Sprokel.
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Publication Statement
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Boston, MA :: Springer US :: Imprint: Springer,, 1980.
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Series Statement
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IBM Research Symposia Series
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ISBN
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9781489921833
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: 9781489921857
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Contents
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Physics -- Surface Orientation and Compliance Effects on Twist-Cell Performance -- Molecular Orientation of Monomolecular Liquid Crystal Layers on Various Substrates -- An R.F. Plasma Technique for Producing Twisted Nematic Liquid Crystal Cells -- Liquid Crystal - Surface Interactions by Surface Plasmons -- Anchoring Properties of Liquid Crystals at the Substrates: Temperature Dependence of Pretilt -- Optical Characteristics of Liquid Crystal Displays -- Multiplexing Limits of Twisted Nematic Liquid Crystal Displays and Implications for the Future of High Information Content LCDs -- Influence of the Device Parameters on the Performance of Twisted-Nematic Liquid-Crystal Matrix Displays -- Ultimate Limits for RMS Matrix Addressing -- Accurate Optical Measurement of Small Tilt Angles in Thin Twisted Nematic Layers -- Effects of Cell and Material Properties on Multiplexing Levels of Twisted Nematic Liquid Crystal Displays -- Sensitive Measurement of Twist in LCD's -- Liquid Crystal Devices -- Liquid Crystal for Multiplexed Twisted Nematic Displays - Its Philosophy and Practice -- Guest-Host Displays -- Analog Displays - The Other Approach to LCD's -- Projection Storage Displays Using Laser-Addressed Smectic Liquid Crystals -- The Role of Shadows in the Viewability of Twisted Nematic Liquid Crystal Displays -- Directly Driven Liquid Crystal Analogue Meter and Horological Displays -- Liquid Crystal Materials -- Liquid Crystal Materials for Display Devices -- Synthesis of Trans-4-Alkylcyclohexane Carboxylic Acids and their Nematogenic Esters -- Preparation and Characterization of a Series of Liquid Crystalline Diesters -- Effect of Molecular Structure on Mesomorphism. 101. Design of Materials having Smectic-Isotropic Maxima in Binary Mixtures -- Thermodynamics of the Liquid Two-Phase Regions in Binary Mixtures of Mesogenic Materials -- The Analysis of Liquid Crystal Mixtures.
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Subject
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Surfaces (Physics).
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Added Entry
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SpringerLink (Online service)
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