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Introduction to Quantum Mechanics with Applications to Chemistry

Introduction to Quantum Mechanics with Applications to Chemistry

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Authors: Linus Pauling, E. Bright Wilson
Publisher: Dover Publications
Category: Book

List Price: $16.95
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New (18) Used (18) from $5.00

Rating: 5.0 out of 5 stars 15 reviews
Sales Rank: 117056

Media: Paperback
Pages: 468
Number Of Items: 1
Shipping Weight (lbs): 1.2
Dimensions (in): 8.3 x 5.4 x 1

ISBN: 0486648710
Dewey Decimal Number: 530.12
EAN: 9780486648712

Publication Date: March 1, 1985
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Editorial Reviews:

Product Description
This widely adopted undergraduate-level text applies quantum mechanics to a broad range of chemical and physical problems, covering such subjects as wave functions for the hydrogen atom, perturbation theory, the Pauli exclusion principle, and the structure of simple and complex molecules. Numerous tables and figures.



Customer Reviews:   Read 10 more reviews...

5 out of 5 stars Richly historical account of molecular quantum mechanics   June 12, 2002
Bosco Ho (San Francisco, USA)
29 out of 29 found this review helpful

In many ways, this is still my favourite quantum mechanics text. Why? Because the text is completely grounded in the quantum mechanics of atoms and molecules.

Historically, Linus Pauling spent his post-doc working throughout Europe where he absorbed the, then, new theory of quantum mechanics. However, the physicists that he learnt q.m. from only analysed the physics of, relatively simple, atomic systems. It would require someone with an immense breadth of knowledge in chemistry to make quantum mechanics come alive for molecules. This was Linus Pauling. Pauling first applied q.m. to such diverse topics as: the chemical bond, resonance energy, electronegativity, crystal structure of molecules and hydrogen bonds.

And it shows. The uniqueness of this q.m. textbook is that it gives immensely detailed references to the different ways the early physicists/chemists attacked the q.m. of bonds in molecules. Many different ansatz's and approximations to pertubation problems are given. And Pauling should know, for he was right in the thick of it. The historical value of these references alone is worth the price of this book. It's a real shame that most modern books leave these out, because a discussion of these approximations methods give a lot of insight to q.m. in molecules.

In contrast, I find modern textbooks on physical chemistry to be often lacking in deep physical insight. However, textbooks written by physicists run into all sorts of esoteric directions like quantum entanglement and the uncertainty principle and as a previous reviewer noted, Pauling's books says nothing about scattering and hardly anything on spin. This is probably because chemists aren't interested in what happens to particles in beams or Stern-Gerlach experiments. They are more interested in ionisation energy, enthalpies and bond energies.

Nevertheless, for out-and-out modern-day quantum physicists, Pauling's explanation of aspects of quantum mechanics will seem quaint, overly pictorial and concrete, e.g. discussion of *actual* orbits. And it is. However, for chemists and even atomic physicists, pondering such esoteric questions clouds the immense power of quantum mechanics in explaining the detailed properties of atoms and molecules.


5 out of 5 stars Good book in introduction to quantum mechanics   August 27, 1999
46 out of 49 found this review helpful

In my opinion I found this book very useful if you start studying QM, it describe in very interesting way how the modern QM theory was develop from the old one, it use simple mathematics to describe the physical phenomena compare to the other books in the same subject, and the chemistry application is something definitely you need to understand the applied theory, with this amazing low price and the material inside the book it worth every penny.


5 out of 5 stars Second Pauling Book Review on the Roll   October 14, 2000
Matthew M. Yau (San Francisco, CA)
35 out of 37 found this review helpful

Linus Pauling's treatise on quantum chemistry is even more brilliant than that on general chemistry. His vivid and clear explanation makes quantum theory so interesting and appealing to learn. Instead of going through the obscure mathematics and operator mechanics, Pauling conveys the essence of quantum mechanics in very simple language. Maybe this is how Pauling distinguishes himself as a Nobel Prize laureate. I studied Donald McQuarrie "Physical Chemistry: A Molecular Approach" (you may find my review for McQuarrie here as well) and found McQuarrie so much more understandable than Atkins. Yet Pauling's account on the subject is even more concise and motivating. The book teaches basic concepts but also ensures understanding of applied theory. While "Introduction to Quantum Mechanics" might not be as reader-friendly as its counterpart in general chemistry, I highly recommend this book for all chemistry students and those who want to adventure in advanced chemistry.


5 out of 5 stars Hone your technical skills with Pauling.   September 29, 2001
15 out of 15 found this review helpful

Pauling and Wilson's introduction to quantum mechanics is an excellent text for students of quantum chemistry, and students of physics who are interested in the details of molecular wave-functions and perturbation techniques for extracting such wave-functions.

There is also a chapter devoted to "old quantum theory," which students of history of science may find interesting. In it, Pauling describes some incipient theories which predate QM, such as elliptical orbit corrections to the putative hydrogen electron orbit, the Wilson-Sommerfeld quantization rules and its apparently successful application to hydrogenic atomic spectra, particle in a box, and the rigid rotator.

A primer on classical mechanics and the Hamiltonian formulation is included, as is the standard wave mechanics treatment of basic quantum mechanics: Schrodinger's wave eqn, harmonic oscillator, hydrogen atom, etc. This exposition was clear.

Where the book shines is its several chapters on techniques of perturbation theory, and multi-particle theory. Pauling presents virtually step-by-step calculations, showing clearly what sorts of tricks and techniques one uses to calculate certain integrals, and what coordinate systems are appropriate for particular problems (e.g. elliptical coordinates for hydrogen molecule ion.) The Slater determinant is also introduced for the generalization of the multi-particle problem. For the biophysical chemist, there is a short section on van der Waal's forces from a QM perspective. And a chapter is devoted to QM in statistical mechanics. These chapters are indispensable for the aspiring quantum chemistry student, if even just for the sake of owning something from an old master. If you're poor, you should buy this book given that it gives a big bang for the buck. If you're not poor, you should buy this book given that you're not poor.

This book is extremely dense in terms of material. But that's not to say that there are a few shortcomings. The treatment of spin is not so clear- Pauling works completely in terms of wave functions and spin functions, and the reader does not have the benefits of Dirac notation in Pauling's treatment. There is also no discussion of scattering. The theoretically-minded student will also find that Pauling's treatment is lacking in explaining the deeper meanings of fundamental QM ideas, such as the commutation relations, or the time evolution of states. In short, this is not a heavily theoretical text, but rather a book of technical brilliance for applications of quantum mechanics.


5 out of 5 stars Quantum Chemistry at its best   May 7, 2000
Nuno Bandeira (Lisbon, Portugal)
27 out of 30 found this review helpful

Linus Pauling revolutionised the chemical world by his magnum opus 'The Nature of the Chemical Bond' which would come out a few years after this book. This work first came out in the 30s when people were beginning to perceive the potential uses of quantum mechanics in Chemistry, it reveals everything you need to know about the foundations of quantum chemistry and it's indeed a priceless gem for any aspiring chemist. The problem with newer books is that they present the subject in a very dogmatic and, at times, superficial way leaving the student often puzzled and confused with all the mathematical formalities. This book has everything and I mean EVERYTHING ! At the risk of becoming pedantic for those more knowledgeable in calculus and linear algebra, every calculation and every reasoning is justified. The formalities are all unveiled and minimized but it still digs deep into the characterization of the theories of the chemical bond, electronic structure, the infamous group theory and some basic spectroscopy.

 
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