| 1 | <p>Describe, discuss, and utilise the Klein-Gordon and Dirac equations and their solutions</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Communication</strong></p> </p> |
| 2 | <p>Understand and use bosonic and fermionic field operators and the formalism of second quantisation</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Solution-Seeking</strong></p> </p> |
| 3 | <p>Explain and apply the Lagrangian formulation of the theory of fields</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Solution-Seeking</strong></p> </p> |
| 4 | <p>Explain the concept of symmetry and Noether's theorem</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Communication</strong></p> </p> |
| 5 | <p>Understand and explain the canonical quantisation of the Klein-Gordon, Dirac, and electromagnetic fields</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Communication</strong></p> </p> |
| 6 | <p>Show that the role of propagators and Feynman diagrams are related</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Critical Thinking</strong></p><p><strong style="color: rgb(73, 80, 87);">Communication</strong></p> </p> |
| 7 | <p>Understand and describe the derivation of the scattering (S) matrix for interacting systems</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Solution-Seeking</strong></p><p><strong style="color: rgb(73, 80, 87);">Communication</strong></p> </p> |
| 8 | <p>Understand and use Wick's theorem relating time-ordered and normally-ordered operator products</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Critical Thinking</strong></p><p><strong style="color: rgb(73, 80, 87);">Solution-Seeking</strong></p> </p> |
| 9 | <p>Understand and use Feynman diagrams and rules to compute scattering amplitudes</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Critical Thinking</strong></p><p><strong style="color: rgb(73, 80, 87);">Solution-Seeking</strong></p> </p> |
| 10 | <p>Show how broken symmetry leads to the Higgs mechanism</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Knowledge and Practice</strong></p><p><strong style="color: rgb(73, 80, 87);">Communication</strong></p> </p> |