Lie Algebras In Particle Physics : : from Isospin To Unified Theories / / Howard Georgi.

"Howard Georgi is the co-inventor (with Sheldon Glashow) of the SU(5) theory. This extensively revised and updated edition of his classic text makes the theory of Lie groups accessible to graduate students, while offering a perspective on the way in which knowledge of such groups can provide an...

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Superior document:Frontiers in Physics
VerfasserIn:
Place / Publishing House:Boca Raton, FL : : CRC Press,, 2018.
Year of Publication:2000
2018
Edition:Second edition.
Language:English
Series:Frontiers in Physics
Physical Description:1 online resource (339 p.)
Notes:"The Advanced Book Program."
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245 1 0 |a Lie Algebras In Particle Physics :  |b from Isospin To Unified Theories /  |c Howard Georgi. 
250 |a Second edition. 
260 |b Taylor & Francis  |c 2000 
264 1 |a Boca Raton, FL :  |b CRC Press,  |c 2018. 
300 |a 1 online resource (339 p.) 
336 |a text  |b txt 
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490 1 |a Frontiers in Physics 
505 0 |a Frontiers in Physics; Preface to the Revised Edition; Contents; Why Group Theory?; 1 Finite Groups; 2 Lie Groups; 3 SU(2); 4 Tensor Operators; 5 Isospin; 6 Roots and Weights; 7 SU(3); 8 Simple Roots; 9 More SU(3); 10 Tensor Methods; 11 Hypercharge and Strangeness; 12 Young Tableaux; 13 SU(N); 14 3-D Harmonic Oscillator; 15 SU(6) and the Quark Model; 16 Color; 17 Constituent Quarks; 18 Unified Theories and SU(5); 19 The Classical Groups; 20 The Classification Theorem; 21 SO(2n + 1) and Spinors; 22 SO(2n + 2) Spinors; 23 SU(n) in SO(2n); 24 SO(10); 25 Automorphisms; 26 Sp(2n); 27 Odds and Ends 
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546 |a English 
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504 |a Includes bibliographical references and index. 
520 |a "Howard Georgi is the co-inventor (with Sheldon Glashow) of the SU(5) theory. This extensively revised and updated edition of his classic text makes the theory of Lie groups accessible to graduate students, while offering a perspective on the way in which knowledge of such groups can provide an insight into the development of unified theories of strong, weak, and electromagnetic interactions."--Provided by publisher. 
650 0 |a Lie algebras. 
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