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An Introduction to Supersymmetry

✍ Scribed by Drees M.


Year
1996
Tongue
English
Leaves
43
Category
Library

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πŸ“œ SIMILAR VOLUMES


Introduction to Supersymmetry
✍ Peter G. O. Freund πŸ“‚ Library πŸ“… 1988 πŸ› Cambridge University Press 🌐 English

Just as ordinary symmetries relate various forms of matter to each other, and various basic forces to each other, so the novel concept of supersymmetry relates (Fermi) matter to (Bose) force. It is the aim of this book to provide a brief introductory description of the new physical and mathematical

Introduction to supersymmetry
✍ Peter G O Freund πŸ“‚ Library πŸ“… 1988 πŸ› Cambridge University Press 🌐 English

Just as ordinary symmetries relate various forms of matter to each other, and various basic forces to each other, so the novel concept of supersymmetry relates (Fermi) matter to (Bose) force. It is the aim of this book to provide a brief introductory description of the new physical and mathematical

Introduction to Supersymmetry
✍ Harald J. W. Muller-Kirsten, Armin Wiedemann πŸ“‚ Library πŸ“… 2010 πŸ› World Scientific Publishing Company 🌐 English

Supersymmetry is a symmetry which combines bosons and fermions in the same multiplet of a larger group which unites the transformations of this symmetry with that of spacetime. Thus every bosonic particle must have a fermionic partner and vice versa. Since this is not what is observed, this symmetry

Introduction to supersymmetry
✍ Peter G. O. Freund πŸ“‚ Library πŸ“… 1988 πŸ› Cambridge University Press 🌐 English

Just as ordinary symmetries relate various forms of matter to each other, and various basic forces to each other, so the novel concept of supersymmetry relates (Fermi) matter to (Bose) force. It is the aim of this book to provide a brief introductory description of the new physical and mathematical

Introduction to Supersymmetry
✍ MΓΌller-Kirsten, H. J. W.; Wiedemann, A.; MΓΌller-Kirsten, H. J. W πŸ“‚ Library πŸ“… 2010 πŸ› World Scientific Publishing Company 🌐 English

Supersymmetry is a symmetry which combines bosons and fermions in the same multiplet of a larger group which unites the transformations of this symmetry with that of spacetime. Thus every bosonic particle must have a fermionic partner and vice versa. Since this is not what is observed, this symmetry