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Quantum Theory for Chemical Applications

- From Basic Concepts to Advanced Topics
Af: Jochen Autschbach Engelsk Hardback

Quantum Theory for Chemical Applications

- From Basic Concepts to Advanced Topics
Af: Jochen Autschbach Engelsk Hardback
Tjek vores konkurrenters priser
Quantum theory and computational chemistry have become integral to the fields of chemistry, chemical engineering, and materials chemistry. Concepts of chemical bonding, band structure, material properties, and interactions between light and matter at the molecular scale tend to be expressed in the framework of orbital theory, even when numerical calculations go beyond simple orbital models. Yet, the connections between these theoretical models and experimental observations are often unclear. It is important--now more than ever--that students master quantum theory if they are going to apply chemical concepts. In this book, Jochen Autschbach connects the abstract with the concrete in an elegant way, creating a guiding text for scholars and students alike. Quantum Theory for Chemical Applications covers the quantum theory of atoms, molecules, and extended periodic systems. Autschbach goes beyond standard textbooks by connecting the molecular and band structure perspectives, covering response theory, and more. The book is broken into four parts: Basic Theoretical Concepts; Atomic, Molecular, and Crystal Orbitals; Further Basic Concepts of Quantum Theory; and Advanced Topics, such as relativistic quantum chemistry and molecule-light interactions. The foresight Autschbach provides is immense, and he sets up a solid theoretical background for nearly every quantum chemistry method used in contemporary research. Because quantum theory tells us what the electrons do in atoms, molecules, and extended systems, the pages in this book are full of answers to questions both long-held and never-before considered.
Tjek vores konkurrenters priser
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kr 850
Fragt: 39 kr
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20 kr
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God 4 anmeldelser på
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Quantum theory and computational chemistry have become integral to the fields of chemistry, chemical engineering, and materials chemistry. Concepts of chemical bonding, band structure, material properties, and interactions between light and matter at the molecular scale tend to be expressed in the framework of orbital theory, even when numerical calculations go beyond simple orbital models. Yet, the connections between these theoretical models and experimental observations are often unclear. It is important--now more than ever--that students master quantum theory if they are going to apply chemical concepts. In this book, Jochen Autschbach connects the abstract with the concrete in an elegant way, creating a guiding text for scholars and students alike. Quantum Theory for Chemical Applications covers the quantum theory of atoms, molecules, and extended periodic systems. Autschbach goes beyond standard textbooks by connecting the molecular and band structure perspectives, covering response theory, and more. The book is broken into four parts: Basic Theoretical Concepts; Atomic, Molecular, and Crystal Orbitals; Further Basic Concepts of Quantum Theory; and Advanced Topics, such as relativistic quantum chemistry and molecule-light interactions. The foresight Autschbach provides is immense, and he sets up a solid theoretical background for nearly every quantum chemistry method used in contemporary research. Because quantum theory tells us what the electrons do in atoms, molecules, and extended systems, the pages in this book are full of answers to questions both long-held and never-before considered.
Produktdetaljer
Sprog: Engelsk
Sider: 760
ISBN-13: 9780190920807
Indbinding: Hardback
Udgave:
ISBN-10: 0190920807
Udg. Dato: 1 mar 2021
Længde: 42mm
Bredde: 262mm
Højde: 186mm
Forlag: Oxford University Press Inc
Oplagsdato: 1 mar 2021
Forfatter(e): Jochen Autschbach
Forfatter(e) Jochen Autschbach


Kategori Kvantekemi og teoretisk kemi


ISBN-13 9780190920807


Sprog Engelsk


Indbinding Hardback


Sider 760


Udgave


Længde 42mm


Bredde 262mm


Højde 186mm


Udg. Dato 1 mar 2021


Oplagsdato 1 mar 2021


Forlag Oxford University Press Inc