During a jump to his partner, an aerialist is to make a quadruple somersault lasting a time t = 1.51 s. For the first and last quarter- revolution, he is in the extended orientation shown in the figure, with rotational inertia /, = 20.6 kg-m2 around his center of mass (the dot). During the rest of the flight he is in a tight tuck, with rotational inertia l2 = 3.94 kg m2. What must be his angular speed w, around his center of mass during the tuck? (Express your answer in [rev/s]) Tuck Parabolic path of aerialist Release Catch Number Units the tolerance is +/-5%

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Elying Circus of Physics
During a jump to his partner, an aerialist is to make a quadruple somersault lasting a time t =1.51 s. For the first and last quarter-
revolution, he is in the extended orientation shown in the figure, with rotational inertia /, = 20.6 kg-m around his center of mass (the dot).
During the rest of the flight he is in a tight tuck, with rotational inertia l = 3.94 kg-m. What must be his angular speed w, around his
center of mass during the tuck? (Express your answer in [rev/s])
Tuck
(0.
Parabolic
path of
aerialist
Release
Catch
Number
Units
the tolerance is +/-5%
Transcribed Image Text:Elying Circus of Physics During a jump to his partner, an aerialist is to make a quadruple somersault lasting a time t =1.51 s. For the first and last quarter- revolution, he is in the extended orientation shown in the figure, with rotational inertia /, = 20.6 kg-m around his center of mass (the dot). During the rest of the flight he is in a tight tuck, with rotational inertia l = 3.94 kg-m. What must be his angular speed w, around his center of mass during the tuck? (Express your answer in [rev/s]) Tuck (0. Parabolic path of aerialist Release Catch Number Units the tolerance is +/-5%
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