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Table 2

Models showing ejection and properties of ejected clumps.

Model Time Mfr MHill RHill vfr vesc Erot Eth Egrav Jfr
(Myr) (MJup) (MJup) (AU) (km s-1) (km s-1) (g cm2 s-2) (g cm2 s-2) (g cm2 s-2) (cm2 s-1)

1 0.29 75 84 1100 0.65 0.4 2.8 × 1041 1.7 × 1041 −7.4 × 1041 4.5 × 1019
2a 0.21 33 118 2000 0.95 0.43 1.8 × 1040 5.7 × 1040 −9.4 × 1040 2.4 × 1019
2b 0.21 30 120 1800 0.95 0.43 3.95 × 1040 4.9 × 1040 −1.2 × 1041 3.3 × 1019
3a 0.18 21 30 950 1.05 0.35 1.1 × 1039 3.3 × 1040 −5.4 × 1040 5.5 × 1018
3b 0.18 145 160 2330 1.8 0.35 1.0 × 1042 2.8 × 1041 −1.6 × 1042 1.6 × 1020
4a 0.27 24 35 2020 1.3 0.4 1.4 × 1039 3.7 × 1040 −5.3 × 1040 8.9 × 1018
4b 0.27 59 151 1900 0.47 0.4 2.5 × 1041 1.0 × 1040 −3.5 × 1041 1.2 × 1020
5a 0.24 48 56 940 1.5 0.42 2.3 × 1041 1.1 × 1041 −4.9 × 1041 4.1 × 1019
5b 0.24 64 78 950 1.5 0.42 4.3 × 1041 2.2 × 1041 −8.2 × 1041 5.5 × 1019

Notes. Mfr is the mass of the fragment, MHill the mass within the Hill radius, RHill the Hill radius, vfr the fragment velocity, vesc the escape velocity, Erot, Eth, and Egrav the rotational, thermal, and gravitational energies of the fragments, respectively, Jfr the specific angular momentum of the fragments. The second column gives the time when the fragment properties are calculated.

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