Quantum Mechanics for Chemists

Quantum Mechanics for Chemists PDF Author: David O. Hayward
Publisher: Royal Society of Chemistry
ISBN: 9780854046072
Category : Education
Languages : en
Pages : 196

Get Book

Book Description
This book is designed to provide chemistry undergraduates with a basic understanding of the principles of quantum mechanics.

Quantum Mechanics for Chemists

Quantum Mechanics for Chemists PDF Author: David O. Hayward
Publisher: Royal Society of Chemistry
ISBN: 9780854046072
Category : Education
Languages : en
Pages : 196

Get Book

Book Description
This book is designed to provide chemistry undergraduates with a basic understanding of the principles of quantum mechanics.

Quantum Mechanics in Chemistry

Quantum Mechanics in Chemistry PDF Author: George C. Schatz
Publisher: Courier Corporation
ISBN: 0486136728
Category : Science
Languages : en
Pages : 384

Get Book

Book Description
Advanced graduate-level text looks at symmetry, rotations, and angular momentum addition; occupation number representations; and scattering theory. Uses concepts to develop basic theories of chemical reaction rates. Problems and answers.

Principles of Quantum Mechanics

Principles of Quantum Mechanics PDF Author: Donald D. Fitts
Publisher: Cambridge University Press
ISBN: 0521651247
Category : Science
Languages : en
Pages : 366

Get Book

Book Description
This text presents a rigorous mathematical account of the principles of quantum mechanics, in particular as applied to chemistry and chemical physics. Applications are used as illustrations of the basic theory. The first two chapters serve as an introduction to quantum theory, although it is assumed that the reader has been exposed to elementary quantum mechanics as part of an undergraduate physical chemistry or atomic physics course. Following a discussion of wave motion leading to Schrödinger's wave mechanics, the postulates of quantum mechanics are presented along with essential mathematical concepts and techniques. The postulates are rigorously applied to the harmonic oscillator, angular momentum, the hydrogen atom, the variation method, perturbation theory, and nuclear motion. Modern theoretical concepts such as hermitian operators, Hilbert space, Dirac notation, and ladder operators are introduced and used throughout. This text is appropriate for beginning graduate students in chemistry, chemical physics, molecular physics and materials science.

Quantum Mechanics in Chemistry

Quantum Mechanics in Chemistry PDF Author: Jack Simons
Publisher: Oxford University Press on Demand
ISBN: 9780195082005
Category : History
Languages : en
Pages : 612

Get Book

Book Description
Written for beginning graduate students and advanced undergraduates in all areas of chemistry, this text offers great flexibility. It is unique in that it combines both introductory and modern quantum chemistry in a single book. The introductory material is covered in less detail, allowing the instructor to extend the coverage into areas of greater importance, including introductions to molecular spectroscopy and chemical dynamics and a very thorough group of chapters on computational chemistry as applied to electronic structures. A large number of exercises, problems, and solutions, and a disk of text-related computer programs are also included, further enhancing the utility value of the text.

Modern Quantum Chemistry

Modern Quantum Chemistry PDF Author: Attila Szabo
Publisher: Courier Corporation
ISBN: 0486134598
Category : Science
Languages : en
Pages : 480

Get Book

Book Description
This graduate-level text explains the modern in-depth approaches to the calculation of electronic structure and the properties of molecules. Largely self-contained, it features more than 150 exercises. 1989 edition.

Introduction to Quantum Mechanics

Introduction to Quantum Mechanics PDF Author: S.M. Blinder
Publisher: Academic Press
ISBN: 0128223111
Category : Science
Languages : en
Pages : 436

Get Book

Book Description
Introduction to Quantum Mechanics, 2nd Edition provides an accessible, fully updated introduction to the principles of quantum mechanics. It outlines the fundamental concepts of quantum theory, discusses how these arose from classic experiments in chemistry and physics, and presents the quantum-mechanical foundations of current scientific developments.Beginning with a solid introduction to the key principles underpinning quantum mechanics in Part 1, the book goes on to expand upon these in Part 2, where fundamental concepts such as molecular structure and chemical bonding are discussed. Finally, Part 3 discusses applications of this quantum theory across some newly developing applications, including chapters on Density Functional Theory, Statistical Thermodynamics and Quantum Computing.Drawing on the extensive experience of its expert author, Introduction to Quantum Mechanics, 2nd Edition is a lucid introduction to the principles of quantum mechanics for anyone new to the field, and a useful refresher on fundamental knowledge and latest developments for those varying degrees of background. Presents a fully updated accounting that reflects the most recent developments in Quantum Theory and its applications Includes new chapters on Special Functions, Density Functional Theory, Statistical Thermodynamics and Quantum Computers Presents additional problems and exercises to further support learning

Theoretical and Quantum Mechanics

Theoretical and Quantum Mechanics PDF Author: Stefan Ivanov
Publisher: Springer Science & Business Media
ISBN:
Category : Science
Languages : en
Pages : 548

Get Book

Book Description
Theoretical and Quantum Mechanics: Fundamentals provides an introduction to theoretical and quantum mechanics for chemists. The book includes carefully selected quantum mechanics topics of the most fundamental interest and use for chemists and classical mechanics topics that relate and illuminate these. A comprehensive treatment is given wherever possible. The book acquaints the chemists with the quantum structure of the basic object of chemistry – the atom – and the author bridges the gap between classical physics, general and inorganic chemistry, and quantum mechanics. The book provides the basics of theoretical and quantum mechanics in one place and emphasizes the continuity between them. Key topics include: applications of quantum methods to simple systems, e.g. one-dimensional potential, harmonic oscillator, hydrogen atom, hydrogen-like atoms. introduction of representation theory and elements of matrix mechanics development of the perturbation theory physical explanation of the interaction of an electron with magnetic field generalization to many-particles systems. Each chapter includes a detailed outline, a summary, self-assessment questions for which answers are in the text, a varied set of problems. In addition, the book contains many summary tables to ensure clarity of the subject. This book will be invaluable for chemistry undergraduate and graduate students, chemists, other non-physical scientists, engineering students of modern techniques and technology, specialists who need a better understanding of quantum mechanics. The book is uniquely presented to be used for self-taught courses covering theoretical and quantum mechanics. "I like the approach followed very much. ... He shows clearly that these more advanced and powerful methods can be straightforwardly applied to these problems. His transparant and elegant way of presentation will bring a deeper and more bountiful insight to the student in classical and quantum mechanics..." Steven Stolte, Department of Chemistry, Vrije Universiteit, The Netherlands. "...I think it is a very useful book to have on my bookshelves, especially since it makes a clear connection between classical and quantum mechanics. ...it is very useful for me and theoretically oriented chemists ...I found the book very useful in preparing my lectures for my first-year quantum chemistry course as it gave me more insight into the connection between quantum and classical mechanics. ...' Joop van Lenthe, Theoretical Chemistry Group, Utrecht University, The Netherlands.

Quantum Mechanics For Organic Chemists

Quantum Mechanics For Organic Chemists PDF Author: Howard Zimmerman
Publisher: Academic Press
ISBN:
Category : Science
Languages : en
Pages : 234

Get Book

Book Description
Quantum Mechanics for Organic Chemists is based on the author's first-year graduate course on quantum mechanics for Organic Chemistry majors. The book not only makes a gradual transition from elementary to advanced, but also tries an approach that allows students to have a more intuitive learning. The book covers concepts in quantum physics and topics such as the LCAO-MO Huckel Approach; group theory; and extensions, modifications, and applications of the Huckel approach. Also included in the book are the areas of three-dimensional treatments; polyelectron wave functions; the Slater determinant; and Pople's SCF equations. The text is recommended for graduate students of organic chemistry who would like to know more about the applications of quantum mechanics in their field. Quantum physicists who are interested in the field of organic chemistry would also find the book appealing.

Introduction to Quantum Mechanics in Chemistry

Introduction to Quantum Mechanics in Chemistry PDF Author: Mark A. Ratner
Publisher: Pearson
ISBN:
Category : Science
Languages : en
Pages : 328

Get Book

Book Description
This book serves as a self-study guide to familiarize users with the crucial language of modern chemistry science. It provides a background of electronic structure programs, and includes worked examples in problem solving and computer exercises. For computational chemists, materials scientists, and chemical engineers who want to learn more about their field without unnecessary complexity, detail, or formalism.

Quantum Chemistry

Quantum Chemistry PDF Author: Walter Kauzmann
Publisher: Elsevier
ISBN: 1483270807
Category : Science
Languages : en
Pages : 757

Get Book

Book Description
Quantum Chemistry: An Introduction provides information pertinent to the fundamental aspects of quantum mechanics. This book presents the theory of partial differentiation equations by using the classical theory of vibrations as a means of developing physical insight into this essential branch of mathematics. Organized into five parts encompassing 16 chapters, this book begins with an overview of how quantum mechanical deductions are made. This text then describes the achievements and limitations of the application of quantum mechanics to chemical problems. Other chapters provide a brief survey of some essential properties of the associated Legendre functions. The final chapter deals with the Franck-Condon principle, which states that transitions tend to occur between vibrational levels of two different electronic states for which either the minimum or maximum values of the internuclear distance in the potential energy diagram occur with the same nuclear configuration. This book is a valuable resource for chemists.