Table 8: For each high excitation line we give: (1) the laboratory wavelength, (2) upper and lower term of the transition, (3) upper and lower term excitation potential, (4) logarithm of oscillator strength, (5) log ratio of observed flux to calculated flux according to the lower excitation lines parameters.
Wavelength upper Term

lower Term

$\chi_{\rm up}$

$\chi_{\rm low}$

$\log~ gf$ $\log~\frac{F_{\rm obs}}{F_{\rm calc}}$

6158.019

(3G)4p x4F

(3F)4s c4F

8.23

6.22

-3.09 4.1
6160.755 (3H)4p z4H

(1F)4s c2F

7.58

5.57

-3.63 3.5
6233.534 d5 4s2 c4D

(5D)4p z4F

7.47

5.48

-2.94 2.7
6248.898 d5 4s2 c4D

(5D)4p z4D

7.49

5.51

-2.70 2.9
6317.983 d5 4s2 c4D

(5D)4p z4D

7.47

5.51

-1.99 2.6
6371.125 d5 4s2 c4D

(5D)4p z4F

7.49

5.55

-3.56 2.8
6383.722 d5 4s2 c4D

(5D)4p z4D

7.49

5.55

-2.27 2.7
6385.451 d5 4s2 c4D

(5D)4p z4D

7.49

5.55

-2.62 2.9
6442.955 d5 4s2 c4D

(5D)4p z4F

7.47

5.55

-2.88 2.9
6455.837 d5 4s2 c4D

(5D)4p z4D

7.47

5.55

-2.95 3.0
6482.204 (3G)4p x4G

(3F)4s c4F

8.13

6.22

-2.27 3.3
6491.246 d5 4s2 c4D

(5D)4p z4D

7.49

5.58

-2.79 3.0
6493.035 d5 4s2 c4D

(5D)4p z4D

7.49

5.58

-2.58 2.9
6506.333 d5 4s2 c4D

(5D)4p z4F

7.49

5.59

-3.11 3.1
6517.018 d5 4s2 c4D

(5D)4p z4D

7.49

5.58

-2.76 3.1


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