This course completes the knowledge in plasma physics that students have acquired in the previous two courses, with a discussion of different applications, in the fields of magnetic confinement and controlled fusion, astrophysical and space plasmas, and societal and industrial applications.
-
Active diagnostics
13, PHYS-424 \ Week 13: Diagnostics 2 - Part 2
-
Passive diagnostics Bolometers Magnetic sensors
13, PHYS-424 \ Week 13: Diagnostics 2 - Part 1
-
More passive diagnostics
12, PHYS-424 \ Week 12: Diagnostics 1 - Part 2
-
Introduction Examples of passive plasma diagnostics
12, PHYS-424 \ Week 12: Diagnostics 1 - Part 1
-
Solar wind
11, PHYS-424 \ Week 11: Magnetic reconnection and…
-
Magnetic reconnection
11, PHYS-424 \ Week 11: Magnetic reconnection and…
-
The solar dynamo
10, PHYS-424 \ Week 10: Solar dynamo - Part 2
-
The structure of the sun's magnetic field
10, PHYS-424 \ Week 10: Solar dynamo - Part 1
-
Transport processes
9, PHYS-424 \ Week 9: Introduction into solar…
-
The sun's nuclear energy source
9, PHYS-424 \ Week 9: Introduction into solar…
-
Sheath and plasma etching Plasma with insulating electrodes
8, PHYS-424 \ Week 8: Industrial plasmas 2
-
Introduction to basic industrial plasmas Plasma medicine Breakdown and Paschen’s law Communication satellite
7, PHYS-424 \ Week 7: Industrial plasmas 1
-
Plasma heating Wave heating ITER as the first burning plasma Alpha-particle heating Towards a fusion power plant …
6, PHYS-424 \ Week 6: Heating - Part 2
-
Plasma heating Need for (auxiliary) heating Neutral beam heating
6, PHYS-424 \ Week 6: Heating - Part 1
-
Neo-classical transport (cont.) Anomalous transport
5, PHYS-424 \ Week 5: Transport - Part 3
Search for ""