# Calculate the moment of inertia (in kg·m2 style="color:rgb(0,0,0);">) of a skater given the following information. (a) The 76.0 kg skater is approximated as a cylinder that has a 0.100 m radius. ___ kg·m2 (b) The skater with arms extended is approximately a cylinder that is 70.0 kg, has a 0.100 m radius, and has two 0.950 m long arms which are 3.00 kg each and extend straight out from the cylinder like rods rotated about their ends.

Calculate the moment of inertia (in kg·m^{2}

style=”color:rgb(0,0,0);”>) of a skater given the following information.

(a) The 76.0 kg skater is approximated as a cylinder that has a 0.100 m radius.

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___ kg·m^{2}

^{(b) }The skater with arms extended is approximately a cylinder that is 70.0 kg, has a 0.100 m radius, and has two 0.950 m long arms which are 3.00 kg each and extend straight out from the cylinder like rods rotated about their ends.