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Intermolecular Forces

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Cover of 'Intermolecular Forces'

Table of Contents

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    Book Overview
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    Chapter 1 Intermolecular Forces: What can be Learned from Ab Initio Calculations?
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    Chapter 2 Quantum Mechanical Determination of Intermolecular Interactions. Ab Initio Studies
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    Chapter 3 Complexes of Neutral Molecules onto Negative Ions
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    Chapter 4 A Comparison of the Ab Initio Supermolecule and Interaction Approaches: Multipole Moments, Hydrogen Bonding and Ion Pairs
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    Chapter 5 The Extraction of Intermolecular Potentials from Molecular Scattering Data: Direct Inversion Methods
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    Chapter 6 Selective Vibrational Inelasticity in Proton-Molecule Collisions
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    Chapter 7 Accurate Molecular Properties, Their Additivity, and Their Use in Constructing Intermolecular Potentials
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    Chapter 8 Correlated States in Polyenes and Ion-Radical Organic Solids
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    Chapter 9 Theoretical Study of the Intermolecular HCL Potential
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    Chapter 10 “New” Molecular Bound and Resonance States
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    Chapter 11 Comparison between Accurate Ab Initio and Electron Gas Potential Energy Surfaces
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    Chapter 12 Solute-Solute Interactions in Dilute Solutions of Gases in Liquids
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    Chapter 13 Studies of Intermolecular Forces by Vibrational Spectroscopy
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    Chapter 14 Intermolecular Forces and Spectra in Weak Charge Transfer Interactions
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    Chapter 15 Structure Determination of Collision Complexes by NMR Methods
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    Chapter 16 Electrostatic and Topological Interactions in DNA
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    Chapter 17 1 H NMR Study of the Nature of Bonding Interactions Involved in Complexes Between Nucleic Acids and Intercalating Compounds
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    Chapter 18 DNA Mono and Bisintercalators as Models for the Study of Protein Nucleic Acid Interactions: Origin of the High Affinity and Selectivity
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    Chapter 19 Empirical Models of Hydration of Small Peptides
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    Chapter 20 Stacking Interactions in Oligopeptide-Nucleic Acid Complexes
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    Chapter 21 Interaction Models for Water in Relation to Protein Hydration
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    Chapter 22 Investigations on the Role of Electrostatic Intermolecular Forces in Liquids. Ground State Properties of Amides in Solution
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    Chapter 23 On the Role of the Signal Peptide in the Initiation of Protein Exportation
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    Chapter 24 Monte Carlo Calculations of the Dimensions of Model Peptides and Peptide Hormones Related to Energy Transfer
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    Chapter 25 On the Relation Between Charge Redistribution and Intermolecular Forces in Models for Molecular Interactions in Biology
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    Chapter 26 Intermolecular Interactions in an External Electric Field: Application to the Analysis of the Evaluation of Interaction Energies from Field Mass Spectrometry Experiments
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    Chapter 27 Quantitative Structure Activity Relationships of Anthracycline Antitumor Activity and Cardiac Toxicity Based Upon Intercalation Calculations
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    Chapter 28 A Model for Drug-Receptor Interactions: The Opiate Receptor. A Preliminary Report
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    Chapter 29 H-bond-state and Solubility in Aqueous Systems
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    Chapter 30 Experimental Studies of Variations of the State of Water in Living Cells
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    Chapter 31 Structural Variations in a Homologous Series of Fluorinated Tetracyano-p-Quinodimethanes
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    Chapter 32 Interlayer Properties of Expanded Silicate Structures — New Calculational Approaches Concerning Intercalation
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    Chapter 33 Intermolecular Forces and Lattice Dynamics of Molecular Crystals
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    Chapter 34 The Motion of Particles Ahead of a Solidification Front
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Title
Intermolecular Forces
Published by
Springer Netherlands, June 2013
DOI 10.1007/978-94-015-7658-1
ISBNs
978-9-04-818368-5, 978-9-40-157658-1
Editors

Pullman, Bernard

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 28 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Brazil 1 4%
Unknown 27 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 7 25%
Student > Master 6 21%
Student > Bachelor 3 11%
Student > Doctoral Student 1 4%
Researcher 1 4%
Other 1 4%
Unknown 9 32%
Readers by discipline Count As %
Chemistry 6 21%
Agricultural and Biological Sciences 3 11%
Biochemistry, Genetics and Molecular Biology 3 11%
Environmental Science 1 4%
Chemical Engineering 1 4%
Other 4 14%
Unknown 10 36%