Titre de série : |
The Feynman lectures on physics, [Vol. 3] |
Titre : |
Quantum mechanics |
Type de document : |
texte imprimé |
Auteurs : |
Richard Phillips Feynman (1918-1988), Auteur ; Robert Benjamin Leighton (1919-1997), Auteur ; Matthew Sands (1919-2014), Auteur |
Editeur : |
London : Addison-Wesley |
Année de publication : |
1965 |
Collection : |
World student series |
Importance : |
Pagination multiple |
Présentation : |
ill. |
Format : |
29 cm |
Note générale : |
Notes bibliogr. -Index |
Langues : |
Anglais (eng) |
Mots-clés : |
Quantum theory |
Index. décimale : |
53.01 Physique. Théorie et nature des phénomènes |
Note de contenu : |
Summary :
1. Quantum behavior.
2. The relation of wave and particle viewpoints.
3. Probability amplitudes.
4. Identical particles.
5. Spin one.
6. Spin one-half.
7. The dependence of amplitudes on time.
8. The Hamiltonian matrix.
9. The ammonia maser.
10. Other two-state systems.
11. More two-state systems.
12. The hyperfine splitting in hydrogen.
13. Propagation in a crystal lattice.
14. Semiconductors.
15. The independent particle approximation.
16. The dependence of amplitudes on position.
17. Symmetry and conservation laws.
18. Angular momentum.
19. The hydrogen atom and the periodic table.
20. Operators.
21. The Schrödinger equation in a classical context: a seminar on superconductivity |
The Feynman lectures on physics, [Vol. 3]. Quantum mechanics [texte imprimé] / Richard Phillips Feynman (1918-1988), Auteur ; Robert Benjamin Leighton (1919-1997), Auteur ; Matthew Sands (1919-2014), Auteur . - London : Addison-Wesley, 1965 . - Pagination multiple : ill. ; 29 cm. - ( World student series) . Notes bibliogr. -Index Langues : Anglais ( eng)
Mots-clés : |
Quantum theory |
Index. décimale : |
53.01 Physique. Théorie et nature des phénomènes |
Note de contenu : |
Summary :
1. Quantum behavior.
2. The relation of wave and particle viewpoints.
3. Probability amplitudes.
4. Identical particles.
5. Spin one.
6. Spin one-half.
7. The dependence of amplitudes on time.
8. The Hamiltonian matrix.
9. The ammonia maser.
10. Other two-state systems.
11. More two-state systems.
12. The hyperfine splitting in hydrogen.
13. Propagation in a crystal lattice.
14. Semiconductors.
15. The independent particle approximation.
16. The dependence of amplitudes on position.
17. Symmetry and conservation laws.
18. Angular momentum.
19. The hydrogen atom and the periodic table.
20. Operators.
21. The Schrödinger equation in a classical context: a seminar on superconductivity |
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