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culinary_services [2014/06/05 15:07]
warren
culinary_services [2014/06/05 15:14]
warren
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 \end{equation} ​ \end{equation} ​
  
-Where $\tau$ is some static ​free-fall timescale.+Where $\tau$ is the free-fall timescale. ​ 
 This leads to temperature and density trajectories:​ This leads to temperature and density trajectories:​
  
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 **REFERENCES** \\ **REFERENCES** \\
-[[http://iopscience.iop.org/0067-0049/191/1/66|Trends in 44Ti and 56Ni from Core-Collapse Supernovae (Magkotsios et al 2010)]]\\ +[[http://adsabs.harvard.edu/abs/2010ApJS..191...66M|Trends in 44Ti and 56Ni from Core-Collapse Supernovae (Magkotsios et al 2010)]]\\ 
-[[http://iopscience.iop.org/0004-637X/504/1/500|Nuclear Reactions Governing the Nucleosynthesis of 44Ti (The et al 1998)]]\\ +[[http://adsabs.harvard.edu/abs/1998ApJ...504..500T|Nuclear Reactions Governing the Nucleosynthesis of 44Ti (The et al 1998)]]\\ 
-[[http://www.sciencedirect.com/science/article/​pii/​S1387647303002707|X-ray and gamma-ray studies of Cas A (Vink 2004)]]+[[http://adsabs.harvard.edu/abs/2004NewAR..48...61V|X-ray and gamma-ray studies of Cas A (Vink 2004)]] 
 +[[http://​adsabs.harvard.edu/​abs/​2007ApJ...664.1033Y|Uncertainties in Supernova Yields I One-dimensional Explosions (Young & Fryer 2007)]] 
 +[[http://​adsabs.harvard.edu/​abs/​2014Natur.506..339G|Asymmetries in core-collapse supernovae from maps of radioactive <​sup>​44</​sup>​Ti in Cassiopeia A (Grefenstette et al 2014)]]
culinary_services.txt · Last modified: 2014/06/06 15:52 by long