📖Program Curriculum
Semester 1 & 2
Compulsory
Mathematics for Physics I
Fundamentals of Laboratory Physics
Computational Physics: Modelling, Simulation and Good Practice
Methods, Philosophy and Frontiers of Physical Science
Semester 1
Compulsory
Core Physics I: Foundations of Physics
Semester 2
Compulsory
Core Physics II: Classical Physics of Particles, Fields and DevicesSemester 1 & 2
Compulsory
Mathematics for Physics II
Physics Laboratory: Design and analysis for science and industry
Advanced Computational Modelling and Simulation
Semester 1
Compulsory
Probability Theory
Core Physics III: Quantum Physics
Semester 2
Compulsory
Complex Analysis
Core Physics IV: Thermal and Statistical Physics
Core Physics V: Solid State Physics
Semester 1 & 2
Compulsory
Group Project
Research Methods in Physics
Semester 1
Optional
Introduction to Differential Geometry
Introduction to Dynamical Systems
Advanced Statistical Physics
Condensed Matter Physics
Nuclear Physics
Semester 2
Optional
Studies in Science and Mathematics Education
Linear Differential Equations
Vibrations and Waves
Modern Optics
Medical Physics
High Energy and Plasma Physics
Physics of Devices
Semester 1 & 2
Compulsory
Physics Research Project (MPhys Project)
Semester 1
Optional
Programming and Numerical Methods
Mathematical Modelling I
Fluid Mechanics
Characterisation Techniques in Solid State Physics
Topics in Advanced Quantum Mechanics
Mathematical Methods for Interdisciplinary Sciences
Semester 2
Optional
Spectral Theory
Nonlinear Waves
Mathematical Modelling II
Physics of Complex Systems
Superconductivity and Nanoscience
Quantum Computing