
An Introduction to Groups and their Matrices for Science Students
Robert Kolenkow(Author)
Cambridge University Press
Published on 2. June 2022
Book
Hardback
338 pages
978-1-108-83108-6 (ISBN)
Description
Group theory, originating from algebraic structures in mathematics, has long been a powerful tool in many areas of physics, chemistry and other applied sciences, but it has seldom been covered in a manner accessible to undergraduates. This book from renowned educator Robert Kolenkow introduces group theory and its applications starting with simple ideas of symmetry, through quantum numbers, and working up to particle physics. It features clear explanations, accompanying problems and exercises, and numerous worked examples from experimental research in the physical sciences. Beginning with key concepts and necessary theorems, topics are introduced systematically including: molecular vibrations and lattice symmetries; matrix mechanics; wave mechanics; rotation and quantum angular momentum; atomic structure; and finally particle physics. This comprehensive primer on group theory is ideal for advanced undergraduate topics courses, reading groups, or self-study, and it will help prepare graduate students for higher-level courses.
More details
Language
English
Place of publication
Cambridge
United Kingdom
Target group
College/higher education
Illustrations
Worked examples or Exercises
Dimensions
Height: 260 mm
Width: 183 mm
Thickness: 23 mm
Weight
832 gr
ISBN-13
978-1-108-83108-6 (9781108831086)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

E-Book
06/2022
Cambridge University Press
€47.49
Available for download
Person
Robert Kolenkow was formerly Associate Professor of Physics at Massachusetts Institute of Technology and was awarded the Everett Moore Baker Award for Outstanding Teaching. He was the lead author of the Physical Geography Today series of texts and coauthor, with Daniel Kleppner, of An Introduction to Mechanics (also published by Cambridge University Press).
Content
1. Fundamental concepts; 2. Matrix representations of discrete groups; 3. Molecular vibrations; 4. Crystalline solids; 5. Bohr's quantum theory and matrix mechanics; 6. Wave mechanics, measurement, and entanglement; 7. Rotation; 8. Quantum angular momentum; 9. The structure of atoms; 10. Particle physics. Appendices.