
Data File: DDTcb_0_02_2_00_1000.dat
Lines read = 2311
Time = 3.15505e+10 seconds, 999.8 years.
Total layers: 162
Total Mass (M_solar): 1.35927
Max radius (pc) and velocity (km/s): 3.27735 1709.10
(angular radius if in LMC/SMC is about 12.2909 arc seconds.)
Max density (amu/cm^3): 1.25976
Max T_e (K): 1.52080e+08
Max n_e (cm^-3): 0.505290
Max T_i (K): 1.63980e+10
Max n_i (cm^-3): 0.0551813
Max number of elements in a layer: 14
Max Z-value in model: 28
Sum of Z abundances of all layers: 162.000
(should equal number of layers)
Zs in this model:
2 6 8 14 16 17 18 19 20 22 23 24 25 26 27 28
... number of layers they're in:
61 3 7 56 80 1 82 2 83 66 40 109 79 158 30 157
... approx. mass of each element, milli-Solar-masses:
2 <1 1 21 19 <1 5 <1 6 <1 <1 13 4 1138 <1 305
... abundance relative to Solar(AG89), normalized to Fe (all layers):
0.000 0.000 0.000 0.046 0.079 0.000 0.087 0.000 0.158 0.078 0.010 1.268 0.772 1.000 0.001 6.561
... abundance relative to Solar(AG89), normalized to Fe (high-T layers only):
0.000 0.000 0.001 0.169 0.292 0.000 0.321 0.000 0.581 0.288 0.000 1.091 0.087 1.000 0.000 1.064
![]() | Mass | ![]() |
![]() | ion density n_i | ![]() |
![]() | electron temp T_e | ![]() |
![]() | n_e * n_Ni (z=28) | ![]() |
![]() | n_e * n_Fe (z=26) | ![]() |
![]() | n_e * n_Si (z=14) | ![]() |