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Table 3

Derived wind parameters.

Star log Lbol L logM˙Mathematical equation: $\log \dot M$ v km s-1 vesc,1-Γ km s-1 β fvol,∞ vCl km s-1
AzV 469 5.55 -7.00 1800 628 1.0 0.2 30
AzV 372 5.68 -6.76 1620 509 1.0 0.1 30
AzV 456 5.91 -7.57 1313 740 1.0 0.1 30
AzV 327 5.47 -8.12 1551 658 1.0 0.03 35
AzV 235 5.86 -6.66 1300 553 1.5 0.05 30
AzV 215 5.62 -7.17 1585 497 1.7 0.1 35
AzV 104 5.42 -7.75 996 637 1.0 0.1 35
AzV 410 5.26 -7.651 403 564 1.0 0.1 30
AzV 242 5.71 -7.47 942 424 3.1 0.03 30
AzV 96 5.41 -7.43 758 409 2.6 0.1 30
AzV 264 5.44 -7.32 656 363 3.0 0.1 30
AzV 175 4.97 -7.55t 437 498 1.0 0.2 30
Sk 191 5.67 -6.811 381 753 2.5 0.2 30
AzV 18 5.45 -7.19 388 310 3.5 0.1 25
NGC330-ELS-04 4.93 -7.71t 301 490 1.0 0.2 25
AzV 187 5.37 -7" 307 627 1.0 0.2 25
AzV 22 5.22 -6.75 160 220 2.5 0.1 25
AzV 393 5.53 -5.94 237 206 2.5 0.1 25
AzV 343 4.65 -8.20+ 200 244 1.0 0.1 25
AzV 324 4.70 -8.05t 178 310 1.0 0.1 25

Notes. The † in the superscript indicates an upper limit. Mevo (474+6M)Mathematical equation: ${M_{{\rm{evo }}}}\left( { \approx 47_{ - 4}^{ + 6}{M_ \odot }} \right)$ is subject to an average uncertainty of 0.4 dex. vesc is the escape velocity at the photosphere.

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