Table 2: Properties of the computed model sequences. The first column gives the system number. The other columns have the following meanings. $M_{\rm init}$: initial mass, \ensuremath{\dot{M}}: accretion rate, f: fraction of $j_{\rm K}$ of the accreted matter (see Eq. (18)), $f_{\mu }$: efficiency parameter of the $\mu $ gradient, \ensuremath{\dot{E}_{\rm rot}}: rotational energy dissipation by friction, M0.10: white dwarf mass when the ratio of the rotational energy to the gravitational potential energy (T/W) reaches 0.10. The remaining physical quantities are also estimated at this point, i.e., when T/W = 0.10. $\rho _{\rm c, 0.10} $ and $T_{\rm c, 0.10}$: central density and temperature. R0.10: radius of white dwarf defined on the sphere of the volume of the equipotential surface. J0.10: total angular momentum, $\Omega _{0.10}$: moment-of-inertia-weighted mean of angular velocity.
No. $M_{\rm init}$ \ensuremath{\dot{M}} f $f_{\mu }$ $\dot{E}_{\rm rot}$ M0.10 $\rho _{\rm c, 0.10} $ $T_{\rm c, 0.10}$ R0.10 J0.10 $\Omega _{0.10}$
    10-7         108 108 0.01 1050  
  \ensuremath {{M}_\odot } ${M}_{\odot }/{\rm yr}$       \ensuremath {{M}_\odot } ${\rm g/cm^3}$ K \ensuremath{{R}_\odot} erg s rad/s
A1 0.8 3.0 1.0 0.05 Yes 1.16 0.29 0.92 1.22 1.10 0.68
A2 0.8 5.0 1.0 0.05 Yes 1.18 0.32 0.97 1.26 1.13 0.70
A3 0.8 7.0 1.0 0.05 Yes 1.19 0.33 1.01 1.34 1.14 0.69
A4 0.8 10.0 1.0 0.05 Yes 1.21 0.35 1.07 1.39 1.17 0.71
A5 0.9 3.0 1.0 0.05 Yes 1.28 0.58 1.02 1.02 1.18 0.95
A6 0.9 5.0 1.0 0.05 Yes 1.30 0.64 1.11 1.03 1.21 0.99
A7 0.9 7.0 1.0 0.05 Yes 1.32 0.69 1.17 1.03 1.23 1.02
A8 0.9 10.0 1.0 0.05 Yes 1.34 0.75 1.23 1.05 1.25 1.06
A9 1.0 3.0 1.0 0.05 Yes 1.41 1.30 1.14 0.82 1.26 1.40
A10 1.0 5.0 1.0 0.05 Yes 1.42 1.39 1.22 0.83 1.25 1.43
A11 1.0 7.0 1.0 0.05 Yes 1.43 1.52 1.28 0.82 1.27 1.49
A12 1.0 10.0 1.0 0.05 Yes 1.45 1.67 1.36 0.83 1.28 1.56
B1 0.8 3.0 0.5 0.05 Yes 1.21 0.36 0.96 1.17 1.17 0.76
B2 0.8 5.0 0.5 0.05 Yes 1.25 0.42 1.04 1.20 1.22 0.81
B3 0.8 7.0 0.5 0.05 Yes 1.26 0.44 1.09 1.24 1.23 0.82
B4 0.8 10.0 0.5 0.05 Yes 1.30 0.52 1.16 1.23 1.27 0.89
B5 0.9 3.0 0.5 0.05 Yes 1.32 0.69 1.03 0.97 1.24 1.04
B6 0.9 5.0 0.5 0.05 Yes 1.35 0.79 1.12 0.97 1.27 1.11
B7 0.9 7.0 0.5 0.05 Yes 1.38 0.90 1.12 0.96 1.29 1.18
B8 0.9 10.0 0.5 0.05 Yes 1.41 1.04 1.27 0.97 1.32 1.26
B9 1.0 3.0 0.5 0.05 Yes 1.45 1.61 1.18 0.78 1.30 1.56
B10 1.0 5.0 0.5 0.05 Yes 1.46 1.76 1.27 0.78 1.30 1.62
B11 1.0 7.0 0.5 0.05 Yes 1.48 2.00 1.34 0.78 1.31 1.72
B12 1.0 10.0 0.5 0.05 Yes 1.51 2.33 1.44 0.77 1.32 1.84
C1 0.8 3.0 0.3 0.05 Yes 1.53 1.55 1.17 0.77 1.48 1.57
C2 0.8 5.0 0.3 0.05 Yes 1.50 1.25 1.19 0.84 1.46 1.41
C3 0.8 7.0 0.3 0.05 Yes 1.46 1.05 1.20 0.90 1.44 1.29
C4 0.8 10.0 0.3 0.05 Yes 1.42 0.85 1.21 1.01 1.40 1.15
C9 1.0 3.0 0.3 0.05 Yes 1.73 19.0 2.16 0.42 1.25 5.03
C10 1.0 5.0 0.3 0.05 Yes 1.72 16.2 2.04 0.44 1.27 4.65
C11 1.0 7.0 0.3 0.05 Yes 1.72 14.3 2.06 0.46 1.29 4.38
C12 1.0 7.0 0.3 0.05 Yes 1.71 12.1 2.01 0.49 1.31 4.04
D2 0.8 5.0 1.0 1.00 Yes 1.18 0.32 0.97 1.27 1.13 0.69
D6 0.9 5.0 1.0 1.00 Yes 1.30 0.64 1.11 1.03 1.21 0.99
T2 0.8 5.0 1.0 0.05 No 1.12 0.27 0.95 1.24 1.02 0.63
T6 0.9 5.0 1.0 0.05 No 1.26 0.56 1.03 0.97 1.15 0.93
T10 1.0 5.0 1.0 0.05 No 1.40 1.24 1.14 0.81 1.24 1.37


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