PART I The Physics 1. Setting the Scene 2. The Standard Model: Our Picture of the Microcosm 3. Electroweak and Standard Model Tests: The Quest for Precision 4. Hard QCD: Still going strong 5. Monte Carlo Generators and Fixed-order Calculations: Predicting the (Un)expected 6. The Higgs Boson: Still Elusive after 40 Years 7. Supersymmetry 8. Quark Flavour Physics 9. Top Quarks: The Peak of the Mass Hierarchy? 10. Beyond SUSY and the Standard Model: Exotica 11. Forward and Diffractive Physics: Of Rapidity Gaps and Small Angles PART II The Technology 12. Accelerators: The Particle Smashers 13. Detector Concepts: From Technologies to Physics Results 14. Tracking Detectors: Following the Charges 15. Calorimeters: Precise Energy Measurements 16. Muon Detectors: Catching Penetrating Particles 17. Luminosity Determination: Normalising the Rates 18. Trigger Systems in High Energy Physics Experiments 19. Grid Computing in High-Energy Physics PART III The Organisation 20. The Sociology and Management of Terascale Experiments: Organisation and Community 21. Funding of High Energy Physics 22. The Role of the Big Labs 23. Communication, Outreach and the Terascale PART IV Appendices Index
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