Table 2: Model properties with test runs. Each column has the following meaning. $M_{\rm init}$: initial mass, $Z_{\rm init}$: initial absolute metallicity, ${v}_{\rm init}$: initial equatorial rotational velocity, ${v}_{\rm init}/{v}_{\rm K}$: initial fraction of the Keplerian value of the equatorial rotational velocity. $J_{\rm init}$: initial total angular momentum., $w_{\rm CNO}$: consideration of the effect of the enrichment of CNO elements on the WR mass loss rate, $f_{\mu , {\rm mag}}$: efficiency factor of the magnetic torque, $f_{\rm centri}$: consideration of the effect of the centrifugal force on the stellar structure, End: the end point of the model sequence (YB: core helium burning, YE: central helium exhaustion, CB: core carbon burning, CE: central carbon exhaustion, NB: core neon burning, NE: central neon exhaustion, OB: core oxygen burning, OE: central oxygen exhaustion), $t_{\rm MS}$: evolutionary time from ZAMS to the end of main sequence, $t_{\rm f}$: evolutionary time from ZAMS to the end of the calculation, $M_{\rm f}$: final mass, $M_{\rm CO}$: CO core mass at the end of the calculation, $\Delta M_{\rm He}$: total helium mass in the envelope when the star ends as a WR star, $J_{\rm f}$: final angular momentum, $\langle j \rangle _{3~M_\odot}$: mean specific angular momentum of the innermost $1.4~{M_\odot}$, $\langle j \rangle _{3~M_\odot}$: mean specific angular momentum of the innermost $3~{M_\odot}$, $\langle j \rangle _{\rm CO}$: mean specific angular momentum of the CO core.
No. $M_{\rm init}$ $Z_{\rm init}$ ${v}_{\rm init}$ ${v}_{\rm init}/{v}_{\rm K}$ $J_{\rm init}$ $w_{\rm CNO}$ $f_{\mu , {\rm mag}}$ $f_{\rm centri}$ End $t_{\rm MS}$ $t_{\rm f}$ $M_{\rm f}$ $M_{\rm CO}$ $\Delta M_{\rm He}$ $J_{\rm f}$ $\langle j \rangle _{1.4~M_\odot}$ $\langle j \rangle _{3~M_\odot}$ $\langle j \rangle _{\rm CO}$
          1051         106 106       1051 1015 1015 1015
  [${M_\odot}$]   [km s-1]   [erg/s]         [yr] [yr] [${M_\odot}$] [${M_\odot}$] [${M_\odot}$] [erg/s] [ ${\rm cm^2/s}]$ [ ${\rm cm^2/s}$] [ ${\rm cm^2/s}$]
TA1 16.00 0.020 209.53 0.30 20.70 - 1.00 Yes NB 9.9 11.2 14.182 2.283 - 8.645 0.259 1.066 0.741
TA2 16.00 0.020 209.53 0.30 20.70 - 0.10 Yes NB 9.9 11.2 14.162 2.247 - 8.593 0.488 1.763 1.242
TA3 16.00 0.020 209.53 0.30 20.70 - 0.01 Yes NB 9.9 11.2 13.447 2.327 - 5.527 1.012 2.732 2.365
TA4 16.00 0.020 209.53 0.30 20.70 - 0.00 Yes NB 10.0 11.4 13.575 2.433 - 7.125 15.196 34.225 32.374
TB1 30.00 0.002 522.80 0.60 127.94 No 1.00 Yes OB 8.3 8.7 20.376 16.481 1.798 4.896 5.687 10.876 62.087
TB2 30.00 0.002 522.80 0.60 127.94 No 0.10 Yes OB 8.3 8.7 20.375 16.474 1.813 5.006 7.207 13.450 69.682
TB3 30.00 0.002 522.80 0.60 127.94 No 0.01 Yes OB 8.3 8.7 20.444 16.857 1.687 5.724 9.935 18.155 87.978
TB4 30.00 0.002 549.56 0.60 147.51 No 1.00 No OB 7.8 8.2 19.754 15.981 1.358 6.982 7.804 14.630 85.401
TB5 30.00 0.002 549.56 0.60 147.51 Yes 1.00 No OB 7.8 8.2 10.096 8.021 0.067 0.126 0.715 0.847 3.860
TB6 30.00 0.002 457.97 0.50 122.93 No 1.00 No OE 7.8 8.2 20.252 16.452 1.426 6.441 7.222 13.688 79.989
TB7 30.00 0.002 457.97 0.50 122.93 Yes 1.00 No OB 7.8 8.2 10.644 8.438 0.051 0.136 0.716 0.894 4.007
TC1 40.00 0.002 555.94 0.60 216.20 No 1.00 Yes OE 6.2 6.6 25.425 21.005 1.132 6.143 5.401 10.264 70.456

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