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1. Introduction
2. Relativistic notation, Lagrangians, and interactions
3. Gauge invariance
4. Non-abelian gauge theories
5. Dirac notation for spin
6. The Standard Model Lagrangian
7. The electroweak theory and quantum chromodynamics
8. Masses and the Higgs mechanism
9. Cross sections, decay widths, and lifetimes: W and Z decays
10. Production and properties of W+- and Z
11. measurement of electroweak and QCD parameters: the muon lifetime
12. Accelerators - present and future
13. Experiments and detectors
14. Low energy and non-accelerator experiments
15. Observation of the Higgs boson at the CERN LHC: is it the Higgs boson?
16. Colliders and tests of the Standard Model: particles are pointlike
17. Quarks and gluons, confinement and jets
18. Hadrons, heavy quarks, and strong isospin invariance
19. Coupling strengths depend on momentum transfer and on virtual particles
20. Quark (and lepton) mixing angles
21. C P violation
22. Overview of physics beyond the Standard Model
23. Grand unification
24. Neutrino masses
25. Dark matter
26. Supersymmetry
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