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Modulbeschreibung - Detailansicht

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Moduldetails
Nukleare Astrophysik
Fakultät für Physik
TUPHFPH
10
1
4
PH2258
2017w
2017W
Zuordnungen zu SPO-Versionen
Lehrveranstaltungen und Prüfungsveranstaltungen
Beschreibungen
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Allgemeine Daten (Modulhandbuch)
Master
Einsemestrig
Wintersemester
Englisch
Arbeitsaufwand (Work Load)
300
60
240
Studien- und Prüfungsleistungen
siehe englische Beschreibung
N
J
Beschreibung
No preconditions in addition to the requirements for the Master's program in Physics.
After successful completion of this module, the student should be able to
- Know the astrophysical sites for the production of elements origin of the elements from carbon to iron, and the associated hydrostatic burning phases of these sites.
- Know what a thermonuclear reaction rate is, and the inverse photo-disintegration reaction rate.
- Know what a resonate reaction rate is, and how it compares to reaction rates that proceed through pure quantum tunneling.
- Identify the nuclear production processes in our universe that form the elements beyond iron.
- Know about some experimental methods used for measuring nuclear reaction rates.
- Understand the relative timescales involved in explosive stellar phenomena, and how nucleosynthesis is affected by the relative time scales of the reaction rates versus the timescale of the explosion.
- Understand the physical principles of the hydrostatic structure of stars and how the nuclear energy production within them affects their structure.
siehe englische Beschreibung
siehe englische Beschreibung
siehe englische Beschreibung
- C.E. Rolfs & W.S. Rodney: Cauldrons in the Cosmos: Nuclear Astrophysics, University Of Chicago Press, (2005)
- D.D. Clayton: Principles of Stellar Evolution and Nucleosynthesis, University Of Chicago Press, (1984)
- C. Iliadis: Nuclear Physics of Stars, Wiley-VCH, (2007)
- B.E.J. Pagel: Nucleosynthesis and Chemical Evolution of Galaxies, Cambridge University Press, (2009)
- D. Arnett: Supernovae and Nucleosynthesis, Princeton University Press, (1996)
- B.W. Carroll & D.A. Ostlie: An Introduction to Modern Astrophysics, Pearson, (2006)
- G. Faure & T.M. Mensing: Isotopes: Principles and Applications, Johen Wiley & Sons, (2004)
Modulverantwortliche*r
Shawn Bishop