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  1. -2010
  2. 1. Gauge invariance, large transformations, Wilson loop, Yang-Mills theories, SU(2)
  3. 1. Introduction: units, known particles, special relativity
  4. 1. Introduction: units,particles known, secial relativity
  5. 1. The idea of renormalisation and its consequences
  6. 10. Gravitational waves: detections and future telescopes
  7. 18. violation CP et mélange de saveurs
  8. 19. les oscillations de neutrinos
  9. 2. Gauge invariance, relation with GR, large transformations, Wilson loop.
  10. 2. Quantum theory, diagrams
  11. 2010
  12. 2011
  13. 3. Hadrons and quarks
  14. 3. SU(3): Lagrangian, Feynman rules
  15. 3. Yang-Mills theories, SU(2), SU(3)
  16. 4. Cosmic Rays
  17. 4. Cosmic Rays - air shower arrays
  18. 4. SU(3): Lagrangian, Feynman rules
  19. 5. Cosmic Rays - Satellites
  20. 6. Neutrino astronomy
  21. 7. Dark matter: observational evidence and possible explanations
  22. 9) Electroweak interactions, flavour mixing
  23. 9. Gravitational waves: nature; origin, detection principles
  24. AIP postdocs
  25. AMS02, Fermi
  26. A short course on QCD
  27. Academic Calendar
  28. Accélérateurs
  29. Advanced quantum field theory 2011-2012
  30. Advanced quantum physics 2011-2012
  31. Applications de la physique nucléaire
  32. Astroparticles
  33. Athina Meli
  34. Baltus Grégory
  35. Bhattacharya Atri
  36. Bootstrap:Footer
  37. Bootstrap:Subnav
  38. Brief
  39. CMB
  40. CP violation
  41. CR
  42. Char Prasanta
  43. Collisions en mécanique quantique
  44. Coming seminars in our group
  45. Computing
  46. Contact
  47. Cosmic rays, Auger
  48. Cosmic rays, Auger, AMS02, Fermi, Integral
  49. Courses
  50. Cudell Jean-Rene

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