
Stereochemical Applications of Gas-Phase Electron Diffraction
Part A
Wiley-VCH (Publisher)
Published on 1. October 1988
Book
Hardback
564 pages
978-0-471-18689-2 (ISBN)
Description
This collection of twenty-six articles by leading experts is the first truly comprehensive account of the gas-phase electron diffraction technique. It is written for the non-specialist users of structural information.
Part A discusses the development and present capabilities of gas electron diffraction. Several contributions deal with the combined application of various techniques. Part B contains the structural information and also presents trends and interpretations of structural variations.
More details
Product info
gebunden
Series
Edition
1. Auflage
Language
English
Place of publication
United States
Publishing group
John Wiley & Sons Inc
Target group
College/higher education
Professional and scholarly
Laboratorien, analytische, Spektroskopiker, Bibliotheken
Illustrations
270
206 s/w Abbildungen, 64 s/w Tabellen
Dimensions
Height: 24 cm
Width: 17 cm
Thickness: 3 cm
Weight
992 gr
ISBN-13
978-0-471-18689-2 (9780471186892)
Schweitzer Classification
Persons
Istvan Hargittai is a University Professor at the Institute of General and Analytical Chemistry, Budapest Technical University.
Magdolna Hargittai is Research Professor at the Budapest University of Technology and Economics. She is a Member of the Hungarian Academy of Sciences and of the Academia Europaea.
Magdolna Hargittai is Research Professor at the Budapest University of Technology and Economics. She is a Member of the Hungarian Academy of Sciences and of the Academia Europaea.
Editor
Eotyos Univ. Budapest,Hungaria
Eotyos Univ. Budapest,Hungaria
Series Editor
Content
Part A: Fundamentals and Experimental Techniques Chapter 1: Introduction to Gas-Phase Electron Diffraction
Historical Perspective
Basic Principles of Electron Diffraction
Molecular Scattering and Diffraction Pattern Formation
Information Content in a Diffraction Pattern
Chapter 2: Instrumentation and Experimental Procedures
Electron Gun Design
Sample Introduction Systems
Diffraction Pattern Recording (Photographic and Digital Methods)
Calibration and Data Reduction
Chapter 3: Molecular Vibrations and Their Effect on Diffraction Patterns
Normal Coordinate Analysis
Vibrational Averaging and Root-Mean-Square Amplitudes
The Effect of Large Amplitude Motions
Chapter 4: Data Analysis and Structural Refinement
Least-Squares Refinement Procedures
Model Building and Constraints
Error Analysis and Reliability Factors
Chapter 5: Advanced Techniques in Gas-Phase Electron Diffraction
Time-Resolved Electron Diffraction
Electron Diffraction with Molecular Beams
Combined Electron Diffraction and Microwave Spectroscopy
Historical Perspective
Basic Principles of Electron Diffraction
Molecular Scattering and Diffraction Pattern Formation
Information Content in a Diffraction Pattern
Chapter 2: Instrumentation and Experimental Procedures
Electron Gun Design
Sample Introduction Systems
Diffraction Pattern Recording (Photographic and Digital Methods)
Calibration and Data Reduction
Chapter 3: Molecular Vibrations and Their Effect on Diffraction Patterns
Normal Coordinate Analysis
Vibrational Averaging and Root-Mean-Square Amplitudes
The Effect of Large Amplitude Motions
Chapter 4: Data Analysis and Structural Refinement
Least-Squares Refinement Procedures
Model Building and Constraints
Error Analysis and Reliability Factors
Chapter 5: Advanced Techniques in Gas-Phase Electron Diffraction
Time-Resolved Electron Diffraction
Electron Diffraction with Molecular Beams
Combined Electron Diffraction and Microwave Spectroscopy