1. Observations of compact star (CS) properties
2. Equation of state for the CS crust
3. Dense nuclear and quark matter in the CS interior
4. General relativistic CS structure
5. Neutrino processes and CS cooling
6. CS at birth: Supernovae and protoneutron stars
7. Gravitational wave signals and black hole formation
Norman Glendenning: Compact Stars (Springer, 2000)
Pawel Haensel et al.: Neutron Stars (Springer, 2007)
Fridolin Weber: Pulsars as astrophysical laboratories for particle and nuclear physics (IoP Publ., 1999)
Stuart Shapiro & Saul Teukolsky: Black Holes, White Dwarfs and Neutron Stars (Wiley, 1983)
David Blaschke et al. (Eds.): Physics of Neutron Star Interiors (Springer, 2001)
Frequency | Weekday | Time | Format / Place | Period | |
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weekly | Di | 10-12 | D6-135 | 09.04.-19.07.2013 | |
weekly | Mi | 12-14 | D6-135 | 09.04.-19.07.2013 |
Module | Course | Requirements | |
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28-M-VP Vertiefung | Vertiefung (A.1) | Graded examination
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Student information |
The binding module descriptions contain further information, including specifications on the "types of assignments" students need to complete. In cases where a module description mentions more than one kind of assignment, the respective member of the teaching staff will decide which task(s) they assign the students.
Degree programme/academic programme | Validity | Variant | Subdivision | Status | Semester | LP | |
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Physik / Master | (Enrollment until SoSe 2012) | Modul 54.1 | Wahlpflicht | 6 | benotet |