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Symmetry in inorganic and coordinati...
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Morazzoni, Franca.
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Symmetry in inorganic and coordination compounds = a student's guide to understanding electronic structure /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Symmetry in inorganic and coordination compounds/ by Franca Morazzoni.
Reminder of title:
a student's guide to understanding electronic structure /
Author:
Morazzoni, Franca.
Published:
Cham :Springer International Publishing : : 2021.,
Description:
xvii, 185 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
The electronic structure determination and its symmetry aspects -- Symmetry orbitals for different di- and poly-atomic molecules -- Perturbation theory -- Magnetism -- Use of symmetry properties to describe the electronic structure of coordination compounds and minerals.
Contained By:
Springer Nature eBook
Subject:
Inorganic compounds - Structure. -
Online resource:
https://doi.org/10.1007/978-3-030-62996-0
ISBN:
9783030629960
Symmetry in inorganic and coordination compounds = a student's guide to understanding electronic structure /
Morazzoni, Franca.
Symmetry in inorganic and coordination compounds
a student's guide to understanding electronic structure /[electronic resource] :by Franca Morazzoni. - Cham :Springer International Publishing :2021. - xvii, 185 p. :ill. (some col.), digital ;24 cm. - Lecture notes in chemistry,v.1060342-4901 ;. - Lecture notes in chemistry ;v.106..
The electronic structure determination and its symmetry aspects -- Symmetry orbitals for different di- and poly-atomic molecules -- Perturbation theory -- Magnetism -- Use of symmetry properties to describe the electronic structure of coordination compounds and minerals.
This book addresses the nature of the chemical bond in inorganic and coordination compounds. In particular, it explains how general symmetry rules can describe chemical bond of simple inorganic molecules. Since the complexity of studying even simple molecules requires approximate methods, this book introduces a quantum mechanical treatment taking into account the geometric peculiarities of the chemical compound. In the case of inorganic molecules, a convenient approximation comes from symmetry, which constrains both the electronic energies and the chemical bonds. The book also gives special emphasis on symmetry rules and compares the use of symmetry operators with that of Hamiltonian operators. Where possible, the reactivity of molecules is also rationalized in terms of these symmetry properties. As practical examples, electronic spectroscopy and magnetism give experimental confirmation of the predicted electronic energy levels. Adapted from university lecture course notes, this book is the ideal companion for any inorganic chemistry course dealing with group theory.
ISBN: 9783030629960
Standard No.: 10.1007/978-3-030-62996-0doiSubjects--Topical Terms:
3493883
Inorganic compounds
--Structure.
LC Class. No.: QD151.3 / .M673 2021
Dewey Class. No.: 541.22
Symmetry in inorganic and coordination compounds = a student's guide to understanding electronic structure /
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The electronic structure determination and its symmetry aspects -- Symmetry orbitals for different di- and poly-atomic molecules -- Perturbation theory -- Magnetism -- Use of symmetry properties to describe the electronic structure of coordination compounds and minerals.
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This book addresses the nature of the chemical bond in inorganic and coordination compounds. In particular, it explains how general symmetry rules can describe chemical bond of simple inorganic molecules. Since the complexity of studying even simple molecules requires approximate methods, this book introduces a quantum mechanical treatment taking into account the geometric peculiarities of the chemical compound. In the case of inorganic molecules, a convenient approximation comes from symmetry, which constrains both the electronic energies and the chemical bonds. The book also gives special emphasis on symmetry rules and compares the use of symmetry operators with that of Hamiltonian operators. Where possible, the reactivity of molecules is also rationalized in terms of these symmetry properties. As practical examples, electronic spectroscopy and magnetism give experimental confirmation of the predicted electronic energy levels. Adapted from university lecture course notes, this book is the ideal companion for any inorganic chemistry course dealing with group theory.
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Chemistry and Materials Science (SpringerNature-11644)
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EB QD151.3 .M673 2021
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