| 1 | Ability to explain the historical development of low-temperature physics. |
| 2 | Ability to understand temperature scales and temperature measurement techniques. |
| 3 | Ability to analyze temperature reduction (cooling) methods. |
| 4 | Ability to explain quantum phase transitions such as Bose-Einstein condensation, superfluidity, and superconductivity. |
| 5 | Develop modern approaches to condensed matter physics problems at low temperatures. |
| 6 | Interpret experimental setups and measurement techniques at low temperatures. |
| 7 | Evaluate the application areas of low-temperature technologies (e.g., quantum computing, MRI, space technologies). |