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my answer is wrong The rate at which a nebular cloud rotates increases as the cloud collapses to form systems of stars and planets. Consider

my answer is wrong

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The rate at which a nebular cloud rotates increases as the cloud collapses to form systems of stars and planets. Consider a small segment of a nebular cloud with a mass m of 1.9 x 102 kg, tangential velocity initial equal to 6.8 km s located at an orbital distance initial = 2.5 x 10# km. After the cloud collapses, the same small segment is located at an orbital distance "final = 3.2 x 105 km. Calculate the change of the rotational velocity, Aw, for the cloud segment, assuming perfectly circular orbits. Perform your work and report your solution using two significant figures. 1.63 x10-2 Aw = rad s-1 Incorrect

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