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Table A.2

Some properties of the single and binary models for initial masses equal to 50 M and 60 M.

Model υ ini,eq t sync t N/C t hom t WR t(end) Xc(end) υeq(end) N/C(end)
km s-1 Myr Myr Myr Myr Myr km s-1

50( + 33.3) M
Z = 0.002
S 0.66 436 0.35 2.14 4.32 5.19 0.035 46 286
B1.4 0.66 1.490 440 0.07 0.16 4.71 3.96 5.01 0.035 219 266
B1.6 0.66 1.702 440 0.12 0.14 1.25 4.10 4.98 0.036 191 266
B1.8 0.66 1.915 440 0.18 0.13 1.00 4.78 0.08 299 183
S 0.30 182 1.07 0.69 4.40 0.040 98.7 31
B1.4 0.30 0.654 183 0.05 0.17 4.71 4.98 0.040 222 266
B1.6 0.30 0.748 183 0.07 0.17 1.11 4.1 4.97 0.040 194 266
B1.8 0.30 0.841 183 0.10 0.39 0.88 4.62 0.12 307 286
Z = 0.007
S 0.66 416 0.37 1.51 5.01 5.06 0.035 35 34
B1.4 0.66 1.294 420 0.04 0.19 4.05 3.97 4.05 0.27 306 345
B1.6 0.66 1.479 420 0.09 0.19 4.26 3.98 4.26 0.22 256 334
B1.8 0.66 1.664 420 0.12 0.19 1.23 4.13 4.23 0.22 248 334
S 0.30 174 1.17 0.67 4.37 0.041 19 31
B1.4 0.30 0.569 174 0.04 0.13 4.64 3.9 5.18 0.041 205 303
B1.6 0.30 0.650 174 0.05 0.19 4.50 3.98 5.12 0.041 178 307
B1.8 0.30 0.732 174 0.13 0.29 1.14 4.14 5.04 0.041 158 307
Z = 0.014
S 0.66 403 0.39 1.15 4.84 0.035 14 331
B1.4 0.57 1.138 338 0.00 0.21 1.63 1.63 0.58 356 34
B1.6 0.57 1.301 338 0.04 0.23 3.97 3.94 3.97 0.27 291 355
B1.8 0.57 1.404 338 0.07 0.26 1.44 3.98 4.06 0.28 235 355
S 0.30 168 1.29 0.64 4.11 0.091 12 28
B1.4 0.30 0.517 169 0.04 0.11 1.63 1.63 0.57 356 383
B1.6 0.30 0.590 169 0.04 0.16 4.38 3.94 5.24 0.041 153 314
B1.8 0.30 0.664 169 0.10 0.24 1.41 3.98 5.14 0.041 134 334

60( + 40) M
Z = 0.002
S 0.66 454 0.28 2.17 3.74 4.54 0.035 41 266
B1.4 0.67 1.401 460 0.04 0.14 4.24 3.41 4.40 0.035 234 266
B1.6 0.67 1.601 426 0.08 0.12 4.13 3.41 4.37 0.035 200 266
B1.8 0.67 1.801 394 0.11 0.11 1.20 3.57 4.36 0.036 176 266
S 0.30 190 0.80 0.61 3.90 0.058 78 38
B1.4 0.30 0.608 212 0.03 0.10 4.23 3.40 4.38 0.040 237 266
B1.6 0.30 0.696 224 0.05 0.15 4.12 3.41 4.36 0.040 203 266
B1.8 0.30 0.783 190 0.08 0.23 1.04 3.62 4.34 0.040 180 266
Z = 0.007
S 0.66 432 0.29 1.49 4.34 4.43 0.035 32 326
B1.4 0.66 1.211 437 0.03 0.13 3.38 3.38 0.30 365 335
B1.6 0.66 1.384 437 0.06 0.14 4.10 3.42 4.56 0.035 181 305
B1.8 0.66 1.557 437 0.08 0.14 3.96 3.43 4.51 0.036 158 305
S 0.30 181 0.86 0.60 3.89 0.048 16 13
B1.4 0.30 0.534 181 0.03 0.08 4.23 3.42 4.59 0.040 211 89
B1.6 0.30 0.611 181 0.04 0.11 4.09 3.41 4.53 0.041 183 88
B1.8 0.30 0.687 181 0.06 0.16 3.95 3.42 4.49 0.041 161 91
Z = 0.014
S 0.66 418 0.30 1.05 4.26 0.035 12 27
B1.4 0.67 1.085 420 0.00 0.13 0.16 0.16 0.70 388 4.4
B1.6 0.69 1.240 440 0.04 0.15 3.54 3.39 3.54 0.26 330 351
B1.8 0.69 1.395 408 0.06 0.16 4.15 3.39 4.45 0.035 255 296
S 0.30 175 0.93 0.57 3.62 0.10 10 13
B1.4 0.30 0.483 175 0.03 0.07 0.17 0.17 0.70 382 4.1
B1.6 0.30 0.552 175 0.03 0.09 3.54 3.35 3.64 0.26 330 5.3
B1.8 0.30 0.620 175 0.05 0.13 4.17 3.39 4.43 0.041 292 86

Notes. In case the model is in a binary, the companion has an initial mass of 33.3 and 40 M, respectively. Same comments as in the caption of Table A.1.

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