Table 2.

Exposures of the Crab observation.

NumberNumberLive timeDead time fractionLive time
of allof “clean”from cleandue to BGOfor
pseudopsuedopseudoaccidental hitsSGD2 CC1
SGD1 CC11108498794939.5 s
SGD1 CC21062494784739.0 s
SGD1 CC31103698794939.5 s
SGD2 CC1118260.11615226.29 s
SGD2 CC211788104195209.5 s0.1161*
NumberNumberLive timeDead time fractionLive time
of allof “clean”from cleandue to BGOfor
pseudopsuedopseudoaccidental hitsSGD2 CC1
SGD1 CC11108498794939.5 s
SGD1 CC21062494784739.0 s
SGD1 CC31103698794939.5 s
SGD2 CC1118260.11615226.29 s
SGD2 CC211788104195209.5 s0.1161*

*This value is derived from the number of all pseudo events and the number of “clean” pseudo events [(11788 − 10419)/11788].

Table 2.

Exposures of the Crab observation.

NumberNumberLive timeDead time fractionLive time
of allof “clean”from cleandue to BGOfor
pseudopsuedopseudoaccidental hitsSGD2 CC1
SGD1 CC11108498794939.5 s
SGD1 CC21062494784739.0 s
SGD1 CC31103698794939.5 s
SGD2 CC1118260.11615226.29 s
SGD2 CC211788104195209.5 s0.1161*
NumberNumberLive timeDead time fractionLive time
of allof “clean”from cleandue to BGOfor
pseudopsuedopseudoaccidental hitsSGD2 CC1
SGD1 CC11108498794939.5 s
SGD1 CC21062494784739.0 s
SGD1 CC31103698794939.5 s
SGD2 CC1118260.11615226.29 s
SGD2 CC211788104195209.5 s0.1161*

*This value is derived from the number of all pseudo events and the number of “clean” pseudo events [(11788 − 10419)/11788].

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