(a) Calculate the angular momentum (in kg·m2 /s) of an ice skater spinning at 7.00 rev/s given his moment of inertia is 0.350 kg·m2 . (b) He reduces his rate of spin (his angular velocity) by extending his arms and increasing his moment of inertia. Find the value of his moment of inertia (in kg·m2 ) if his angular velocity drops to 2.40 rev/s. (c) Suppose instead he keeps his arms in and allows friction with the ice to slow him to 3.00 rev/s. What average torque (in N·m) was exerted if this takes 18.0 seconds?

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(4) (a) Calculate the angular momentum (in kg·m2 /s) of an ice skater spinning at 7.00 rev/s given his moment of inertia is 0.350 kg·m2 . (b) He reduces his rate of spin (his angular velocity) by extending his arms and increasing his moment of inertia. Find the value of his moment of inertia (in kg·m2 ) if his angular velocity drops to 2.40 rev/s. (c) Suppose instead he keeps his arms in and allows friction with the ice to slow him to 3.00 rev/s. What average torque (in N·m) was exerted if this takes 18.0 seconds?

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