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Table 3:

Similar to Table 1, but for DB white dwarfs.
$T_{\rm eff}$ $\log M_{\rm cvz}/M$ $\log P $ $\log T$ $\log
\rho$
6000. -4.840 17.243 5.938 2.868
7000. -4.754 17.330 6.098 2.909
8000. -4.760 17.324 6.275 2.882
9000. -4.789 17.296 6.440 2.825
10 000. -4.833 17.253 6.551 2.754
11 000. -4.954 17.131 6.598 2.636
12 000. -5.132 16.954 6.603 2.486
13 000. -5.332 16.752 6.589 2.322
14 000. -5.545 16.538 6.565 2.151
15 000. -5.780 16.303 6.532 1.964
16 000. -6.059 16.023 6.486 1.743
17 000. -6.413 15.668 6.421 1.462
18 000. -6.884 15.196 6.331 1.086
19 000. -7.572 14.507 6.202 0.531
20 000. -8.657 13.421 5.992 -0.333
21 000. -10.046 12.031 5.727 -1.470
22 000. -11.368 10.708 5.493 -2.567
23 000. -11.581 10.495 5.463 -2.751
24 000. -11.746 10.330 5.441 -2.895
25 000. -11.911 10.165 5.419 -3.038

Convection parameters are ML2/1.25 for atmosphere and envelope models.


Source LaTeX | All tables | In the text

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