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Phase Transitions and Self-Organization in Electronic and Molecular Networks

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Cover of 'Phase Transitions and Self-Organization in Electronic and Molecular Networks'

Table of Contents

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    Book Overview
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    Chapter 1 Mathematical Principles of Intermediate Phases in Disordered Systems
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    Chapter 2 Reduced Density Matrices and Correlation Matrix
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    Chapter 3 The Sixteen-Percent Solution: Critical Volume Fraction for Percolation
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    Chapter 4 The Intermediate Phase and Self-organization in Network Glasses
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    Chapter 5 Evidence for the Intermediate Phase in Chalcogenide Glasses
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    Chapter 6 Thermal Relaxation and Criticality of the Stiffness Transition
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    Chapter 7 Solidity of Viscous Liquids
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    Chapter 8 Non-Ergodic Dynamics in Supercooled Liquids
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    Chapter 9 Network Stiffening and Chemical Ordering in Chalcogenide Glasses: Compositional Trends of T g in Relation to Structural Information From Solid and Liquid State NMR
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    Chapter 10 Glass Transition Temperature Variation as a Probe for Network Connectivity
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    Chapter 11 Floppy Modes Effects in the Thermodynamical Properties of Chalcogenide Glasses
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    Chapter 12 The Dalton-Maxwell-Pauling Recipe for Window Glass
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    Chapter 13 Local Bonding, Phase Stability and Interface Properties of Replacement Gate Dielectrics, Including Silicon Oxynitride Alloys and Nitrides, and Film ‘Amphoteric’ Elemental Oxides and Silicates
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    Chapter 14 Experimental Methods for Local Structure Determination on the Atomic Scale
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    Chapter 15 Zeolite Instability and Collapse
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    Chapter 16 Thermodynamics and Transport Properties of Interacting Systems with Localized Electrons
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    Chapter 17 The Metal-Insulator Transition in Doped Semiconductors: Transport Properties and Critical Behavior
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    Chapter 18 Metal-Insulator Transition in Homogeneously Doped Germanium
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    Chapter 19 Experimental Evidence for Ferroelastic Nanodomains in HTSC Cuprates and Related Oxides
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    Chapter 20 Role of Sr Dopants in the Inhomogeneous Ground State of La 2-x Sr x CuO 4
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    Chapter 21 Universal Phase Diagrams and “Ideal” High Temperature Superconductors: HgBa 2 CuO 4+δ
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    Chapter 22 Coexistence of Superconductivity and Weak Ferromagnetism in Eu 1.5 Ce 0.5 RuSr 2 Cu 2 O 10
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    Chapter 23 Quantum Percolation in High Tc Superconductors
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    Chapter 24 Superstripes
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    Chapter 25 Electron Strings in Oxides
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    Chapter 26 High-Temperature Superconductivity is Charge-Reservoir Superconductivity
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    Chapter 27 Electronic Inhomogeneities in High-Tc Superconductors Observed by NMR
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    Chapter 28 Tailoring the Properties of High-T c and Related Oxides
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    Chapter 29 Designing Protein Structures
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Title
Phase Transitions and Self-Organization in Electronic and Molecular Networks
Published by
Springer Science & Business Media, July 2001
DOI 10.1007/b113936
ISBNs
978-0-306-46568-0, 978-0-306-47113-1
Editors

Thorpe, M. F., Phillips, J. C.