Rotational Spectroscopy of Diatomic Molecules
Book Details
Format
Paperback / Softback
Book Series
Cambridge Molecular Science
ISBN-10
0521530784
ISBN-13
9780521530781
Publisher
Cambridge University Press
Imprint
Cambridge University Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Apr 10th, 2003
Print length
1046 Pages
Weight
2,128 grams
Dimensions
24.30 x 17.30 x 4.80 cms
Product Classification:
Spectrum analysis, spectrochemistry, mass spectrometry
Ksh 32,550.00
Manufactured on Demand
Delivery in 29 days
Delivery Location
Delivery fee: Select location
Delivery in 29 days
Secure
Quality
Fast
Written to be the definitive text on the rotational spectroscopy of diatomic molecules, this book develops the theory behind the energy levels of diatomic molecules and then summarises the many experimental methods used to study their spectra in the gaseous state.
Written to be the definitive text on the rotational spectroscopy of diatomic molecules, this book develops the theory behind the energy levels of diatomic molecules and then summarises the many experimental methods used to study their spectra in the gaseous state. After a general introduction, the methods used to separate nuclear and electronic motions are described. Brown and Carrington then show how the fundamental Dirac and Breit equations may be developed to provide comprehensive descriptions of the kinetic and potential energy terms which govern the behaviour of the electrons. One chapter is devoted solely to angular momentum theory and another describes the development of the so-called effective Hamiltonians used to analyse and understand the experimental spectra of diatomic molecules. The remainder of the book concentrates on experimental methods. This book will be of interest to graduate students and researchers interested in the rotational spectroscopy of diatomic molecules.
Get Rotational Spectroscopy of Diatomic Molecules by at the best price and quality guaranteed only at Werezi Africa's largest book ecommerce store. The book was published by Cambridge University Press and it has pages.