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(2) In future presentations of the research findings, in addition to the course project website and public presentations, your real name and personal information will not appear in this research report. If you are interested in the research results, we can provide you with an executive summary after the study is completed.
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Uedu Open / Introduction to Nuclear and Particle Physics / L6.2 Weak Interactions: Electroweak Unification

L6.2 Weak Interactions: Electroweak Unification

8.701 - Introduction to Nuclear and Particle Physics
逐字稿
English 中文
其他影片 (67)
1 L0.1 Introduction to Nuclear and Particle Physics: Course Overview 2 L0.2 Introduction to Nuclear and Particle Physics: Course Organization 3 L0.3 Introduction to Nuclear and Particle Physics: Teaching Staff 4 L0.4 Introduction to Nuclear and Particle Physics: Literature 5 L0.5 Introduction: Early History and People in Nuclear and Particle Physics 6 L0.6 Introduction to Nuclear and Particle Physics: Particles 7 L0.7 Introduction to Nuclear and Particle Physics: Units 8 L0.8 Introduction to Nuclear and Particle Physics: Relativistic Kinematics 9 L0.9 Introduction to Nuclear and Particle Physics: Spin 10 L1.1 Fermions, Bosons, and Fields: Quantum Field and Matter 11 L1.2 Fermions, Bosons, and Fields: Feynman Diagram 12 L1.3 Fermions, Bosons, and Fields: Ranges of Forces 13 L1.4 Fermions, Bosons, and Fields: Decays 14 L1.5 Fermions, Bosons, and Fields: Reactions 15 L2.1 Symmetries: Introduction 16 L2.2 Symmetries: Flavor Symmetry 17 L2.3 Symmetries: Parity 18 L2.4 Symmetries: Charge Conjugation 19 L2.5 Symmetries: CP 20 L3.1 Feynman Calculus: Introduction 21 L3.2 Feynman Calculus: Fermi's Golden Rule 22 L3.3 Feynman Calculus: Toy Theory 23 L3.4 Feynman Calculus: Higher-Order Diagrams 24 L3.5 Feynman Calculus: Divergency 25 L4.1 QED: Free Wave Equation 26 L4.2 QED: Dirac Equation Solutions 27 L4.3 QED: Antiparticles 28 L4.4 QED: Photon 29 L4.5 QED: Feynman Rules for QED 30 L4.6 QED: Examples 31 L4.7 QED: Casimir's Trick 32 L4.8 QED: Cross Sections 33 L4.9 QED: Renormalization and Higher-Order QED Diagrams 34 L4.10 QED: Noether's Theorem 35 L5.1 QCD: Hadron Production 36 L5.2 QCD: Elastic Electron-Positron Scattering 37 L5.3 QCD: Feynman Rules in QCD 38 L5.4 QCD: Deep Inelastic Scattering 39 L5.5 QCD: Asymptotic Freedom 40 L5.6 QCD: Hadron Collider 41 L6.1 Weak Interactions: Feynman Rules 42 L6.2 Weak Interactions: Electroweak Unification 43 L6.3 Weak Interactions: Pion Decay 44 L6.4 Weak Interactions: Quarks 45 L6.5 Weak Interactions: Neutral Current 46 L7.1 Higgs Physics: Higgs Mechanism 47 L7.2 Higgs Physics: Fermion Masses 48 L7.3 Higgs Physics: Production and Decay 49 L7.4 Higgs Physics: Current Status 50 L8.1 Neutrino Physics: In the Standard Model 51 L8.2 Neutrino Physics: Mass 52 L8.3 Neutrino Physics: Mixing 53 L8.4 Neutrino Physics: Experimental Study 54 L8.5 Neutrino Physics: Results of Neutrino Oscillation Experiments 55 L8.6 Neutrino Physics: Mass Scale and Nature 56 L9.1 Nuclear Physics: Introduction 57 L9.2 Nuclear Physics: Binding Energies 58 L9.3 Nuclear Physics: Stability 59 L9.4 Nuclear Physics: Nuclear Force 60 L9.5 Nuclear Physics: Shell Model 61 L9.6 Nuclear Physics: Gamma Decay 62 L9.7 Nuclear Physics: Fission 63 L9.8 Nuclear Physics: Fusion 64 L10.1 Instrumentation: Particle Interaction with Matter 65 L10.2 Instrumentation: Tracking Detectors 66 L10.3 Instrumentation: Calorimetry 67 L10.4 Instrumentation: Accelerators
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Introduction to Nuclear and Particle Physics
課程影片 (67)
1 L0.1 Introduction to Nuclear and Particle Physics: Course Overview 2 L0.2 Introduction to Nuclear and Particle Physics: Course Organization 3 L0.3 Introduction to Nuclear and Particle Physics: Teaching Staff 4 L0.4 Introduction to Nuclear and Particle Physics: Literature 5 L0.5 Introduction: Early History and People in Nuclear and Particle Physics 6 L0.6 Introduction to Nuclear and Particle Physics: Particles 7 L0.7 Introduction to Nuclear and Particle Physics: Units 8 L0.8 Introduction to Nuclear and Particle Physics: Relativistic Kinematics 9 L0.9 Introduction to Nuclear and Particle Physics: Spin 10 L1.1 Fermions, Bosons, and Fields: Quantum Field and Matter 11 L1.2 Fermions, Bosons, and Fields: Feynman Diagram 12 L1.3 Fermions, Bosons, and Fields: Ranges of Forces 13 L1.4 Fermions, Bosons, and Fields: Decays 14 L1.5 Fermions, Bosons, and Fields: Reactions 15 L2.1 Symmetries: Introduction 16 L2.2 Symmetries: Flavor Symmetry 17 L2.3 Symmetries: Parity 18 L2.4 Symmetries: Charge Conjugation 19 L2.5 Symmetries: CP 20 L3.1 Feynman Calculus: Introduction 21 L3.2 Feynman Calculus: Fermi's Golden Rule 22 L3.3 Feynman Calculus: Toy Theory 23 L3.4 Feynman Calculus: Higher-Order Diagrams 24 L3.5 Feynman Calculus: Divergency 25 L4.1 QED: Free Wave Equation 26 L4.2 QED: Dirac Equation Solutions 27 L4.3 QED: Antiparticles 28 L4.4 QED: Photon 29 L4.5 QED: Feynman Rules for QED 30 L4.6 QED: Examples 31 L4.7 QED: Casimir's Trick 32 L4.8 QED: Cross Sections 33 L4.9 QED: Renormalization and Higher-Order QED Diagrams 34 L4.10 QED: Noether's Theorem 35 L5.1 QCD: Hadron Production 36 L5.2 QCD: Elastic Electron-Positron Scattering 37 L5.3 QCD: Feynman Rules in QCD 38 L5.4 QCD: Deep Inelastic Scattering 39 L5.5 QCD: Asymptotic Freedom 40 L5.6 QCD: Hadron Collider 41 L6.1 Weak Interactions: Feynman Rules 42 L6.2 Weak Interactions: Electroweak Unification 43 L6.3 Weak Interactions: Pion Decay 44 L6.4 Weak Interactions: Quarks 45 L6.5 Weak Interactions: Neutral Current 46 L7.1 Higgs Physics: Higgs Mechanism 47 L7.2 Higgs Physics: Fermion Masses 48 L7.3 Higgs Physics: Production and Decay 49 L7.4 Higgs Physics: Current Status 50 L8.1 Neutrino Physics: In the Standard Model 51 L8.2 Neutrino Physics: Mass 52 L8.3 Neutrino Physics: Mixing 53 L8.4 Neutrino Physics: Experimental Study 54 L8.5 Neutrino Physics: Results of Neutrino Oscillation Experiments 55 L8.6 Neutrino Physics: Mass Scale and Nature 56 L9.1 Nuclear Physics: Introduction 57 L9.2 Nuclear Physics: Binding Energies 58 L9.3 Nuclear Physics: Stability 59 L9.4 Nuclear Physics: Nuclear Force 60 L9.5 Nuclear Physics: Shell Model 61 L9.6 Nuclear Physics: Gamma Decay 62 L9.7 Nuclear Physics: Fission 63 L9.8 Nuclear Physics: Fusion 64 L10.1 Instrumentation: Particle Interaction with Matter 65 L10.2 Instrumentation: Tracking Detectors 66 L10.3 Instrumentation: Calorimetry 67 L10.4 Instrumentation: Accelerators