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Table 8:

Results from the abundance analysis of HD 36960 (B0.5 V).

HD 36960
$T_{\rm eff}$ = 28 900 K, log g = 3.9 dex $\xi_{\rm t}$(Si)=5.4
Line EW $\Delta$EW $\epsilon_{\rm Si}$ $\Delta\epsilon_{\rm Si}$
  (mÅ) (mÅ) (dex) (dex)
SiIII4552 211 5 7.53 0.06
SiIII4567 179 5 7.51 0.06
SiIII4574 116 5 7.52 0.07
SiIV4089 160 11 7.55 0.15
SiIV4116 127 9 7.52 0.14
SiIV4212 28 4 7.50 0.14
SiIV4631 37 3 7.54 0.08
  $\epsilon_{\rm Si}$ = 7.53 $\Delta\epsilon_{\rm Si}$($\sigma $) = 0.02
  $\Delta$ $\xi_{\rm t}$(Si) = 0.6 $\Rightarrow$ $\Delta\epsilon_{\rm Si}$( $\xi_{\rm t}$) = 0.06
  HD 36960 $T_{\rm eff}$ = 28 900 K, log g = 3.9 dex $\xi_{\rm t}$(O)=5.9
OII3945 68 6 8.78 0.11
OII3954 96 7 8.71 0.10
OII3982 61 6 8.63 0.11
OII4317 125 7 8.71 0.08
OII4319 125 6 8.78 0.08
OII4366 113 5 8.66 0.07
OII4414 165 5 8.66 0.06
OII4416 141 5 8.75 0.06
OII4452 50 5 8.54 0.10
OII4661 127 5 8.87 0.08
OII4673 46 5 8.85 0.12
OII4676 101 5 8.66 0.08
OII4696 30 3 8.78 0.09
OII6641 47 6 8.81 0.12
OII6721 76 9 8.77 0.12
OII4078 60 4 8.81 0.09
OII4891 34 10 8.64 0.27
OII4906 61 6 8.71 0.11
OII4941 54 10 8.54 0.19
OII4943 75 4 8.54 0.06
OII4956 23 4 8.72 0.14
  $\epsilon_{\rm O}$ =  8.71 $\Delta\epsilon_{\rm O}$($\sigma $) = 0.10
  $\Delta$ $\xi_{\rm t}$(O) = 0.8 $\Rightarrow$ $\Delta\epsilon_{\rm O}$( $\xi_{\rm t}$) = 0.04


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