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ISBN 10: 0854043551 ISBN 13: 9780854043552
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Published by Royal Society of Chemistry, GB, 2007
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Hardback. Condition: New. This book describes in mathematical terms the extraction of useful information from ESR spectra as applied to paramagnetic organic, inorganic and organometalic molecules. It lays a firm groundwork for understanding more sophisticated experiments, which the availability of newer commercial instruments has made possible. It takes the reader step by step through obtaining and interpretating ESR spectra of paramagnetic molecules. The mathematical basis of each observed phenomena are detailed and examples given. In particular there is a detailed discussion of 2nd order pertubation theory treatment of the Spin Hamiltonian for non-coincident G and A axes.
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Published by Royal Society of Chemistry, GB, 2007
ISBN 10: 0854043551 ISBN 13: 9780854043552
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Hardback. Condition: New. This book describes in mathematical terms the extraction of useful information from ESR spectra as applied to paramagnetic organic, inorganic and organometalic molecules. It lays a firm groundwork for understanding more sophisticated experiments, which the availability of newer commercial instruments has made possible. It takes the reader step by step through obtaining and interpretating ESR spectra of paramagnetic molecules. The mathematical basis of each observed phenomena are detailed and examples given. In particular there is a detailed discussion of 2nd order pertubation theory treatment of the Spin Hamiltonian for non-coincident G and A axes.
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Published by Royal Society of Chemistry, GB, 2007
ISBN 10: 0854043551 ISBN 13: 9780854043552
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Add to basketHardback. Condition: New. This book describes in mathematical terms the extraction of useful information from ESR spectra as applied to paramagnetic organic, inorganic and organometalic molecules. It lays a firm groundwork for understanding more sophisticated experiments, which the availability of newer commercial instruments has made possible. It takes the reader step by step through obtaining and interpretating ESR spectra of paramagnetic molecules. The mathematical basis of each observed phenomena are detailed and examples given. In particular there is a detailed discussion of 2nd order pertubation theory treatment of the Spin Hamiltonian for non-coincident G and A axes.
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Published by ROYAL SOCIETY OF CHEMISTRY, 2007
ISBN 10: 0854043551 ISBN 13: 9780854043552
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Gebunden. Condition: New. This book describes in mathematical terms the extraction of useful information from ESR spectraInhaltsverzeichnisChapter 1: What is ESR Spectroscopy The ESR Experiment Sensitivity Saturation Nuclear Hyperfine Interaction Operati.
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Published by Royal Society of Chemistry, 2007
ISBN 10: 0854043551 ISBN 13: 9780854043552
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Add to basketHardback. Condition: New. This book describes in mathematical terms the extraction of useful information from ESR spectra as applied to paramagnetic organic, inorganic and organometalic molecules. It lays a firm groundwork for understanding more sophisticated experiments, which the availability of newer commercial instruments has made possible. It takes the reader step by step through obtaining and interpretating ESR spectra of paramagnetic molecules. The mathematical basis of each observed phenomena are detailed and examples given. In particular there is a detailed discussion of 2nd order pertubation theory treatment of the Spin Hamiltonian for non-coincident G and A axes.
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Published by RSC Publishing Jul 2007, 2007
ISBN 10: 0854043551 ISBN 13: 9780854043552
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Buch. Condition: Neu. Neuware - This book describes in mathematical terms the extraction of useful information from ESR spectra as applied to paramagnetic organic, inorganic and organometalic molecules. It lays a firm groundwork for understanding more sophisticated experiments, which the availability of newer commercial instruments has made possible. It takes the reader step by step through obtaining and interpretating ESR spectra of paramagnetic molecules. The mathematical basis of each observed phenomena are detailed and examples given. In particular there is a detailed discussion of 2nd order pertubation theory treatment of the Spin Hamiltonian for non-coincident G and A axes.