Viser: Materials Modelling Using Density Functional Theory - Properties and Predictions

Materials Modelling using Density Functional Theory
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Materials Modelling using Density Functional Theory Vital Source e-bog

Feliciano Giustino
(2014)
Oxford University Press
275,00 kr. 247,50 kr.
Leveres umiddelbart efter køb
Materials Modelling using Density Functional Theory

Materials Modelling using Density Functional Theory Vital Source e-bog

Feliciano Giustino
(2014)
Oxford University Press
183,00 kr. 164,70 kr.
Leveres umiddelbart efter køb
Materials Modelling using Density Functional Theory

Materials Modelling using Density Functional Theory Vital Source e-bog

Feliciano Giustino
(2014)
Oxford University Press
199,00 kr. 179,10 kr.
Leveres umiddelbart efter køb
Materials Modelling Using Density Functional Theory - Properties and Predictions

Materials Modelling Using Density Functional Theory

Properties and Predictions
Feliciano Giustino
(2014)
Sprog: Engelsk
Oxford University Press, Incorporated
430,00 kr. 387,00 kr.
Bestil nu og få den leveret inden for 2-3 hverdage

Detaljer om varen

  • Vital Source searchable e-book (Reflowable pages)
  • Udgiver: Oxford University Press (Maj 2014)
  • ISBN: 9780191639432
This book is an introduction to the quantum theory of materials and first-principles computational materials modelling. It explains how to use density functional theory as a practical tool for calculating the properties of materials without using any empirical parameters. The structural, mechanical, optical, electrical, and magnetic properties of materials are described within a single unified conceptual framework, rooted in the Schrödinger equation of quantum mechanics, and powered by density functional theory. This book is intended for senior undergraduate and first-year graduate students in materials science, physics, chemistry, and engineering who are approaching for the first time the study of materials at the atomic scale. The inspiring principle of the book is borrowed from one of the slogans of the Perl programming language, 'Easy things should be easy and hard things should be possible'. Following this philosophy, emphasis is placed on the unifying concepts, and on the frequent use of simple heuristic arguments to build on one's own intuition. The presentation style is somewhat cross disciplinary; an attempt is made to seamlessly combine materials science, quantum mechanics, electrodynamics, and numerical analysis, without using a compartmentalized approach. Each chapter is accompanied by an extensive set of references to the original scientific literature and by exercises where all key steps and final results are indicated in order to facilitate learning. This book can be used either as a complement to the quantum theory of materials, or as a primer in modern techniques of computational materials modelling using density functional theory.
Licens varighed:
Bookshelf online: 365 dage fra købsdato.
Bookshelf appen: ubegrænset dage fra købsdato.

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Detaljer om varen

  • Vital Source 180 day rentals (dynamic pages)
  • Udgiver: Oxford University Press (Maj 2014)
  • ISBN: 9780191639432R180
This book is an introduction to the quantum theory of materials and first-principles computational materials modelling. It explains how to use density functional theory as a practical tool for calculating the properties of materials without using any empirical parameters. The structural, mechanical, optical, electrical, and magnetic properties of materials are described within a single unified conceptual framework, rooted in the Schrödinger equation of quantum mechanics, and powered by density functional theory. This book is intended for senior undergraduate and first-year graduate students in materials science, physics, chemistry, and engineering who are approaching for the first time the study of materials at the atomic scale. The inspiring principle of the book is borrowed from one of the slogans of the Perl programming language, 'Easy things should be easy and hard things should be possible'. Following this philosophy, emphasis is placed on the unifying concepts, and on the frequent use of simple heuristic arguments to build on one's own intuition. The presentation style is somewhat cross disciplinary; an attempt is made to seamlessly combine materials science, quantum mechanics, electrodynamics, and numerical analysis, without using a compartmentalized approach. Each chapter is accompanied by an extensive set of references to the original scientific literature and by exercises where all key steps and final results are indicated in order to facilitate learning. This book can be used either as a complement to the quantum theory of materials, or as a primer in modern techniques of computational materials modelling using density functional theory.
Licens varighed:
Online udgaven er tilgængelig: 180 dage fra købsdato.
Offline udgaven er tilgængelig: 180 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • Vital Source 365 day rentals (dynamic pages)
  • Udgiver: Oxford University Press (Maj 2014)
  • ISBN: 9780191639432R365
This book is an introduction to the quantum theory of materials and first-principles computational materials modelling. It explains how to use density functional theory as a practical tool for calculating the properties of materials without using any empirical parameters. The structural, mechanical, optical, electrical, and magnetic properties of materials are described within a single unified conceptual framework, rooted in the Schrödinger equation of quantum mechanics, and powered by density functional theory. This book is intended for senior undergraduate and first-year graduate students in materials science, physics, chemistry, and engineering who are approaching for the first time the study of materials at the atomic scale. The inspiring principle of the book is borrowed from one of the slogans of the Perl programming language, 'Easy things should be easy and hard things should be possible'. Following this philosophy, emphasis is placed on the unifying concepts, and on the frequent use of simple heuristic arguments to build on one's own intuition. The presentation style is somewhat cross disciplinary; an attempt is made to seamlessly combine materials science, quantum mechanics, electrodynamics, and numerical analysis, without using a compartmentalized approach. Each chapter is accompanied by an extensive set of references to the original scientific literature and by exercises where all key steps and final results are indicated in order to facilitate learning. This book can be used either as a complement to the quantum theory of materials, or as a primer in modern techniques of computational materials modelling using density functional theory.
Licens varighed:
Online udgaven er tilgængelig: 365 dage fra købsdato.
Offline udgaven er tilgængelig: 365 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • Paperback: 304 sider
  • Udgiver: Oxford University Press, Incorporated (Juli 2014)
  • ISBN: 9780199662449
This book is an introduction to the modern quantum theory of materials, and primarily addresses seniorundergraduate and first-year graduate students in the physical and chemical sciences, and in materials science and engineering. As advanced materials are becoming ubiquitous in every aspect of our life, the use of quantum mechanics to understand, predict, and design new materials is experiencing a fast-paced growth in academic and industrial research.Following this trend, atomistic materials modelling is becoming an important component of undergraduate science education, however there is still no book on this subject written primarily for anundergraduate readership. The book explains the fundamental ideas of density functional theory, and how this theory can be used as a powerful method for explaining and even predicting the properties of materials with stunning accuracy. This book can be used either as a complement to the quantum theory of materials, or as a primer in modern techniques of computational materials modelling using quantum mechanics.
1. Computational materials modelling from first principles2. Many-body Schrodinger equation3. Density-functional theory4. Equilibrium structures of materials: fundamentals5. DFT calculations of equilibrium structures6. Elastic properties of materials7. Vibrations of molecules and solids8. Phonons, vibrational spectroscopy, and thermodynamics9. Band structures and photoelectron spectroscopy10. Dielectric function and optical spectra11. Density-functional theory and magnetic materialsAppendix A: Derivation of the Hartree-Fock equationsAppendix B: Derivation of the Kohn-Sham equationsAppendix C: Numerical solution of the Kohn-Sham equationsAppendix D: Reciprocal lattice and Brillouin zoneAppendix E: Pseudopotentials

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