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Relaxation of the Chemical Bond

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Cover of 'Relaxation of the Chemical Bond'

Table of Contents

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    Book Overview
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    Chapter 1 Introduction
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    Chapter 2 Theory: Bond–Band–Barrier (3B) Correlation
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    Chapter 3 STM and LEED: Atomic Valences and Bond Geometry
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    Chapter 4 STS and PES: Valence DOS
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    Chapter 5 TDS: Bond Nature and Bond Strength
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    Chapter 6 EELS and Raman: Nonbond Interactions
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    Chapter 7 Kinetics of Bond Forming and Bond Switching
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    Chapter 8 Design Materials and Processes
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    Chapter 9 Concluding Remarks
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    Chapter 10 Introduction
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    Chapter 11 Theory: BOLS and NEP
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    Chapter 12 Skin Bond Relaxation and Nanosolid Densification
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    Chapter 13 End and Edge States: Entrapment and Polarization
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    Chapter 14 Thermal Stability: Atomic Cohesive Energy
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    Chapter 15 Lattice Dynamics: Phonon Relaxation
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    Chapter 16 Electrons: Entrapment and Polarization
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    Chapter 17 Bandgap Expansion: Photon Emission and Absorption
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    Chapter 18 Dielectric Suppression: Electron Polarization
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    Chapter 19 Magnetic Modulation: Atomic CN and Thermal Coupling
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    Chapter 20 Functionalities of Non-Bonding Electrons: Size Emergence
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    Chapter 21 Concluding Remarks
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    Chapter 22 Introduction
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    Chapter 23 Theory: Multiple-Field Coupling
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    Chapter 24 Liquid and Solid Skins
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    Chapter 25 Monatomic Chains: Strength and Extensibility
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    Chapter 26 Atomic Sheets, Nanotubes, and Nanowires
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    Chapter 27 Nanograins: I. Elasticity and Compressibility
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    Chapter 28 Nanograins: II. Plasticity and Yield Stress
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    Chapter 29 Atomic Vacancy, Nanocavity, and Porous Foams
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    Chapter 30 Compounds and Nanocomposites: Hetero-Coordination
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    Chapter 31 Concluding Remarks
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    Chapter 32 Introduction
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    Chapter 33 Theory: Hydrogen Bond Cooperativity
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    Chapter 34 Compressed Ice: Inter Electron-Pair Repulsion
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    Chapter 35 Molecular Clusters, Skins, and Ultrathin Films
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    Chapter 36 Thermally Driven Density and Phonon-Stiffness Oscillation
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    Chapter 37 H-Bond Asymmetric Local Potentials
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    Chapter 38 Molecular Size, Separation, Packing Order, and Density
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    Chapter 39 Skin Supersolidity of Water and Ice
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    Chapter 40 P , T , and z Coupling Effect
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    Chapter 41 Mpemba Paradox: H-Bond Memory and Skin Supersolidity
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    Chapter 42 Prospects
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    Chapter 43 Conclusion
Attention for Chapter 38: Molecular Size, Separation, Packing Order, and Density
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Chapter title
Molecular Size, Separation, Packing Order, and Density
Chapter number 38
Book title
Relaxation of the Chemical Bond
Published by
Springer, Singapore, January 2014
DOI 10.1007/978-981-4585-21-7_38
Book ISBNs
978-9-81-458520-0, 978-9-81-458521-7
Authors

Chang Q. Sun