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Table 2:

Wavelength ($\lambda $), excitation potential ( $\chi _{\rm l}$), oscillator strength ($\log gf$) and solar equivalent widths ($EW_\odot $) for the lines selected in the present paper.
$\lambda $ $\chi _{\rm l}$ $\log gf$ EW$_\odot$ $\lambda $ $\chi _{\rm l}$ $\log gf$ EW$_\odot$ $\lambda $ $\chi _{\rm l}$ $\log gf$ EW$_\odot$
$[\AA]$ [eV]   [mÅ] [Å] [eV]   [mÅ] [Å] [eV]   [mÅ]

Na I - 2 lines, $\log\epsilon_\circ=6.33$

  5039.96 0.02 -1.199 75.3 5737.07 1.06 -0.815 10.4
5688.22 2.10 -0.628 121.4 5064.06 2.69 -0.471 5.5 6081.45 1.05 -0.692 14.1
6154.23 2.10 -1.622 36.6 5071.49 1.46 -0.797 28.8 6224.51 0.29 -1.935 5.3
6160.75 2.10 -1.363 54.3 5113.44 1.44 -0.861 27.0 6251.83 0.29 -1.431 15.0
Mg I - 3 lines, $\log\epsilon_\circ=$ 7.58   5145.47 1.46 -0.622 37.0 6274.66 0.27 -1.751 8.3
4730.04 4.35 -2.234 69.6 5219.70 0.02 -2.254 28.1 6285.17 0.28 -1.676 9.5
5711.09 4.35 -1.777 105.6 5490.16 1.46 -1.008 21.4 Co I - 9 lines, $\log\epsilon_\circ=$ 4.92  
6319.24 5.11 -2.300 25.2 5503.90 2.58 -0.218 12.3 4594.63 3.63 -0.279 12.5
Al I - 2 lines, $\log\epsilon_\circ=$ 6.47   5648.57 2.49 -0.410 10.1 4792.86 3.25 -0.080 32.7
6696.03 3.14 -1.571 36.2 5662.16 2.32 -0.123 23.5 4813.48 3.22 0.177 45.9
6698.67 3.14 -1.886 21.1 5739.48 2.25 -0.781 7.7 5301.05 1.71 -1.950 19.5
Si I - 18 lines, $\log\epsilon_\circ=$ 7.55   5766.33 3.29 0.326 9.6 5342.71 4.02 0.606 32.3
5517.54 5.08 -2.496 12.9 5965.84 1.88 -0.492 26.7 5352.05 3.58 0.004 24.4
5645.61 4.93 -2.068 35.8 5978.55 1.87 -0.602 22.6 5359.20 4.15 0.040 9.6
5684.49 4.95 -1.642 61.2 6064.63 1.05 -1.941 8.3 5647.24 2.28 -1.594 14.0
5701.11 4.93 -2.034 37.7 6091.18 2.27 -0.445 15.0 6814.95 1.96 -1.822 18.8
5753.64 5.62 -1.333 45.7 6126.22 1.07 -1.416 22.1 Ni I - 48 lines, $\log\epsilon_\circ=$ 6.25  
5772.15 5.08 -1.669 52.0 6258.11 1.44 -0.435 51.5 4512.99 3.71 -1.467 19.4
5797.87 4.95 -1.912 43.9 6261.10 1.43 -0.491 49.2 4811.99 3.66 -1.363 25.6
5948.54 5.08 -1.208 85.4 6599.12 0.90 -2.069 9.3 4814.60 3.60 -1.670 16.7
6125.02 5.61 -1.555 31.7 Ti II - 8 lines, $\log\epsilon_\circ=$ 4.99   4913.98 3.74 -0.661 55.7
6142.49 5.62 -1.520 33.1 4583.41 1.16 -2.840 31.8 4946.04 3.80 -1.224 26.2
6145.02 5.62 -1.425 38.8 4636.33 1.16 -3.152 19.8 4952.29 3.61 -1.261 32.3
6195.46 5.87 -1.666 17.1 4657.20 1.24 -2.379 49.3 4976.33 1.68 -3.002 37.7
6237.33 5.61 -1.116 61.1 4708.67 1.24 -2.392 48.9 4995.66 3.63 -1.611 17.9
6243.82 5.62 -1.331 44.8 4911.20 3.12 -0.537 52.3 5010.94 3.63 -0.901 48.8
6244.48 5.62 -1.310 46.2 5211.54 2.59 -1.490 32.8 5081.11 3.85 0.064 93.5
6527.21 5.87 -1.227 38.9 5381.03 1.57 -1.904 59.1 5094.41 3.83 -1.108 30.3
6721.85 5.86 -1.156 44.0 5418.77 1.58 -2.104 49.5 5392.33 4.15 -1.354 12.0
6741.63 5.98 -1.625 15.5 Mn I - 6 lines, $\log\epsilon_\circ=$ 5.39   5435.86 1.99 -2.432 51.7
Ca I - 12 lines, $\log\epsilon_\circ=$ 6.36   4502.21 2.92 -0.523 57.0 5462.50 3.85 -0.880 41.0
5261.71 2.52 -0.677 97.7 4671.77 2.89 -1.567 14.8 5587.87 1.93 -2.479 52.9
5349.47 2.71 -0.581 94.6 4739.11 2.94 -0.462 60.1 5589.36 3.90 -1.148 26.7
5512.98 2.93 -0.559 84.8 5377.62 3.84 -0.068 40.8 5625.32 4.09 -0.731 37.8
5867.56 2.93 -1.592 25.1 5399.47 3.85 -0.104 38.5 5628.35 4.09 -1.316 14.7
6156.02 2.52 -2.497 9.6 5413.67 3.86 -0.476 21.6 5638.75 3.90 -1.699 9.8
6161.29 2.52 -1.313 60.6 Cr I - 22 lines, $\log\epsilon_\circ=$ 5.67   5641.88 4.11 -1.017 24.1
6166.44 2.52 -1.155 69.9 4575.11 3.37 -1.004 10.0 5643.08 4.16 -1.234 15.1
6169.04 2.52 -0.800 92.2 4600.75 1.00 -1.457 82.3 5694.99 4.09 -0.629 43.1
6449.82 2.52 -0.733 98.1 4626.18 0.97 -1.467 83.3 5748.36 1.68 -3.279 28.0
6455.60 2.52 -1.404 56.3 4633.25 3.13 -1.215 10.4 5805.22 4.17 -0.604 40.8
6471.67 2.53 -0.825 91.2 4700.61 2.71 -1.464 14.0 5847.00 1.68 -3.410 23.0
6499.65 2.52 -0.917 85.8 4708.02 3.17 -0.104 55.0 5996.73 4.24 -1.010 20.3
Sc I - 3 lines, $\log\epsilon_\circ=$ 3.10   4730.72 3.08 -0.345 46.3 6086.29 4.27 -0.471 43.5
4743.82 1.45 0.297 8.0 4767.86 3.56 -0.599 16.1 6108.12 1.68 -2.512 65.0
5520.50 1.87 0.562 6.6 4775.14 3.55 -1.025 6.9 6111.08 4.09 -0.823 34.2
5671.82 1.45 0.533 14.6 4936.34 3.11 -0.343 45.6 6119.76 4.27 -1.316 10.9
Sc II - 6 lines, $\log\epsilon_\circ=$ 3.10   4964.93 0.94 -2.577 38.1 6128.98 1.68 -3.368 25.3
5526.82 1.77 0.140 76.3 5214.14 3.37 -0.784 16.4 6130.14 4.27 -0.938 22.1
5657.88 1.51 -0.326 66.9 5238.97 2.71 -1.427 15.9 6175.37 4.09 -0.534 49.0
5667.14 1.50 -1.025 33.9 5247.57 0.96 -1.618 82.0 6176.82 4.09 -0.266 63.7
5684.19 1.51 -0.946 37.2 5287.18 3.44 -0.954 10.4 6177.25 1.83 -3.538 14.6
6245.62 1.51 -1.022 34.9 5296.70 0.98 -1.373 93.1 6186.72 4.11 -0.888 30.5
6320.84 1.50 -1.863 8.1 5300.75 0.98 -2.125 58.9 6204.61 4.09 -1.112 22.0
Ti I - 30 lines, $\log\epsilon_\circ=$ 4.99   5781.18 3.32 -0.886 15.5 6223.99 4.11 -0.954 27.7
4555.49 0.85 -0.575 63.7 5783.07 3.32 -0.472 31.4 6230.10 4.11 -1.132 20.6
4562.63 0.02 -2.718 10.9 5787.92 3.32 -0.183 46.0 6322.17 4.15 -1.164 18.4
4645.19 1.73 -0.666 22.0 6661.08 4.19 -0.234 12.0 6327.60 1.68 -3.086 38.6
4656.47 0.00 -1.308 68.6 6882.52 3.44 -0.392 32.2 6360.81 4.17 -1.145 18.5
4675.11 1.07 -0.939 38.1 Cr II - 3 lines, $\log\epsilon_\circ=$ 5.67   6378.26 4.15 -0.830 31.8
4722.61 1.05 -1.433 18.7 4588.20 4.07 -0.752 68.5 6598.60 4.24 -0.914 24.9
4820.41 1.50 -0.429 43.1 4592.05 4.07 -1.252 47.6 6635.13 4.42 -0.779 23.6
4913.62 1.87 0.068 50.2 4884.61 3.86 -2.069 23.4 6767.78 1.83 -2.136 79.2
4997.10 0.00 -2.174 31.6 V I - 7 lines, $\log\epsilon_\circ=$ 4.00   6772.32 3.66 -0.963 49.2
5016.17 0.85 -0.657 63.2 5670.85 1.08 -0.482 18.8 6842.04 3.66 -1.496 24.2

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