Note: This schedule will evolve throughout the semster. Therefore, be aware that important content might change over time.

Date Lecture Readings Homework
Mon Jan 15 MLK Day (NO LECTURE)    
Wed Jan 17 Lecture 1: Introduction Griffiths Intro and Ch.1  
Mon Jan 22 Lecture 2: Fundamental Matter Particles: Leptons Griffiths Ch. 1  
Wed Jan 24 Lecture 3: Fundamental Matter Particles: Quarks Griffiths Ch. 1 Homework 1 (Due Jan 31) Solutions 
Mon Jan 29 Lecture 4: Relativistic Kinematics Griffiths Ch. 3 PHYS 325 Relativity Lectures (Sp10)  
Wed Jan 31 Lecture 5: Interactions and Feynmann Diagrams: QED & QCD Griffiths Ch. 2 Homework 2 (Due Feb 07) Solutions 
Mon Feb 05 Lecture 6: Interactions and Feynman Diagrams: Weak Interactions Griffiths Ch. 2  
Wed Feb 07 Lecture 7: Symmetries and Conservation Laws: Groups Griffiths Ch. 4 Homework 3 (Due Feb 14) Solutions 
Mon Feb 12 Lecture 8: Symmetries and Conservation Laws: Spinors Griffiths Ch. 4  
Wed Feb 14 Lecture 9: Symmetries and Conservation Laws: Flavor Griffiths Ch. 4 Homework 4 (Due Feb 21) Solutions 
Mon Feb 19 Lecture 10: Symmetries and Conservation Laws: Discrete Symmetries (Parity, C, G-parity) Griffiths Ch. 4  
Wed Feb 21 Lecture 11: Symmetries and Conservation Laws: Discrete Symmetries (CP, T, and CPT) Griffiths Ch. 4 Homework 5 (Due Feb 28) Solutions 
Mon Feb 26 Lecture 12: Building Hadrons from Quarks: SU(2) Symmetry Griffiths Ch. 5.5-5.6  
Wed Feb 28 Lecture 13: Building Hadrons from Quarks: SU(3) Symmetry Griffiths Ch. 5.5-5.6 Homework 6 (Due Mar 06) Solutions 
Mon Mar 04 Lecture 14: Feynman Calculus, Decays, and Scattering: Decay Rates and Golden Rule Griffiths Ch. 6.1.1, 6.2 Sample Midterm Exam Solutions 
Wed Mar 06 NO LECTURE: APS March Meeting    
Mon Mar 11 NO LECTURE: SPRING BREAK    
Wed Mar 13 NO LECTURE: SPRING BREAK    
Mon Mar 18 Midterm Exam; 9:30 am - 10:50 am; 136 Loomis Laboratory  Solutions    
Wed Mar 20 Lecture 15: Feynman Calculus, Decays, and Scattering: Cross Sections Griffiths Ch. 6.1.2 Homework 7 (Due Mar 27) Solutions 
Mon Mar 25 Lecture 16: Feynman Rules and the Dirac Equation Griffiths Ch. 6.3, 7.1  
Wed Mar 27 Lecture 17: Solutions to the Dirac Equation Griffiths Ch. 7.2 Homework 8 (Due Apr 03) Solutions 
Mon Apr 01 Lecture 18: Bilinear Covariants, Parity, and the Photon Griffiths: Ch. 7.3, 7.4  
Wed Apr 03 Lecture 19: Feynman Rules for QED Griffiths Ch. 7.5, 7.6 Homework 9 (Due Apr 10) Solutions 
Mon Apr 08 Lecture 20: Casimir's Trick, Trace Theorems, and Cross Sections in QED Griffiths Ch. 7.7, 7.8  
Wed Apr 10 Lecture 21: Electromagnetic Interactions with Leptons and Hadrons Griffiths Ch. 8.1, 8.2 Homework 10 (Due Apr 24) Solutions 
Mon Apr 15 Lecture 22: Feynman Rules for QCD and Color Factors Griffiths Ch. 8.3, 8.4  
Wed Apr 17 Lecture 23: Charged Weak Interactions of Leptons and Quarks Griffiths Ch. 9.1, 9.2, 9.5  
Mon Apr 22 Lecture 24: Neutral Currents, Electroweak Unification, and Chiral Fermions Griffiths Ch. 9.4, 9.6, 9.7  
Wed Apr 24 Lecture 25: Weak Currents and Hypercharge in GSW Theory; Lagrangians in Relativistic Field Theory Griffiths Ch. 9.7, 10.1, 10.2 Homework 11 (Due May 01) Solutions 
Mon Apr 29 Lecture 26: Local Gauge Invariance, EWSB, and the Higgs Mechanism Griffiths Ch. 10.3, 10.7-9  
Wed May 01 Lecture 27: Beyond the Standard Model Griffiths Ch. 11 & 12  
Thu May 02 Reading Day    
Fri May 03 Final Exam; 7:00 - 10:00 pm in 4039 Campus Instructional Facility