Extracurricular Education
Beyond my learning during working horus, I spend a lot of time studying outside univeristy, much to my family's dismay.
I am familiar with Group Theory from Riley's Mathematical Methods for Physics and Engineering. Additionally, I have explored
Tensors from the same text.
Currently I am studying Quantum Field Theory (Canonical Quantisation) by David Tong.
FOURTH YEAR
- MPhys Project: The total cross section of $e^+e^- \xrightarrow{} \mu^+\mu^-$ annihilation
- Quantum Field Theory (M)
- Gravitation (M)
- Meteorology and Forecasting (EART)
- Climate Change (HIST)
- The Nuclear Age (HIST)
THIRD YEAR
- Introduction to Nuclear and Particle Physics
- Laboratory Year 3 Semester 1
- Condensed Matter
- Mathematical Fundamentals of Quantum Mechanics (M)
- Electrodynamics (M)
- Introduction to Non-Linear Physics
- General Physics
- Nuclear Physics
- Particle Physics
- Cosmology
- Advanced Quantum Mechanics (M)
- Mathematical Methods for Physics (M)
SECOND YEAR
- Mathematics of Waves and Fields
- Introduction to Quantum Mechanics
- Laboratory Year 2 Semester 1
- Lagrangian Dynamics (M)
- Introduction to Programming for Physicists
- Electromagnetism
- Complex Variables and Vector Spaces (M)
- Wave Optics
- Statistical Mechanics
- Fundamentals of Solid State Physics
- Theory Computing Project
- Astrophysical Processes
FIRST YEAR
- Maths I
- Dynamics
- Quantum Physics and Relativity
- Laboratory Year 1 Semester 1
- Random Processes in Physics (M)
- Introduction to Astrophysics and Cosmology
- Maths II
- Electricity and Magnetism
- Vibrations and Waves
- Physics of Energy Sources
- Advanced Dynamics (M)
- Properties of Matter