| 1 | <p>Understand and apply the concepts of statistical physics (thermodynamic variables, entropy, partition functions, ensemble theory )</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Sustainability</strong></p><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> |
| 2 | <p>Be familiar with concepts relating to complex networks and understand the relationship between such networks and statistical mechanics</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">Sustainability</strong></p><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><strong style="color: rgb(73, 80, 87);">Communication</strong></p><p><strong style="color: rgb(73, 80, 87);">Collaboration</strong></p> </p> |
| 3 | <p>Explain and communicate understanding of magnetism, phase transitions, surface effects and defects and Monte Carlo techniques</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><strong style="color: rgb(73, 80, 87);">Communication</strong></p><p><strong style="color: rgb(73, 80, 87);">Collaboration</strong></p> </p> |
| 4 | <p>Present (orally) on a modern research topic related to statistical or condensed matter physics concepts discussed in this course.</p> | <p>MSc - Master of Science - Graduate Profile <p><strong style="color: rgb(73, 80, 87);">People and Place</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><strong style="color: rgb(73, 80, 87);">Communication</strong></p><p><strong style="color: rgb(73, 80, 87);">Collaboration</strong></p><p><strong style="color: rgb(73, 80, 87);">Ethics and Professionalism</strong></p> </p> |
| 5 | <p>Be able to solve and present statistical physics/condensed matter problems related to the content of this course.</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><strong style="color: rgb(73, 80, 87);">Communication</strong></p><p><strong style="color: rgb(73, 80, 87);">Collaboration</strong></p><p><strong style="color: rgb(73, 80, 87);">Ethics and Professionalism</strong></p> </p> |
| 6 | <p>Program and execute the two-dimensional square Ising model to identify and discuss a phase transition</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><strong style="color: rgb(73, 80, 87);">Communication</strong></p><p><strong style="color: rgb(73, 80, 87);">Collaboration</strong></p> </p> |