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when an ice skater pulls their arms in while spinning, they spin faster…

Question

when an ice skater pulls their arms in while spinning, they spin faster because their bodys center of gravity changes. true false

Explanation:

Brief Explanations

The reason an ice - skater spins faster when pulling in their arms is due to the conservation of angular momentum ($L = I\omega$, where $I$ is the moment of inertia and $\omega$ is the angular velocity). When the skater pulls in their arms, the moment of inertia $I$ decreases. Since there is no external torque (assuming a frictionless environment, which is a good approximation for ice - skating), angular momentum $L$ is conserved. So, if $L$ is constant and $I$ decreases, $\omega$ (the spin rate) must increase. It is not because of a change in the center of gravity. The center of gravity change is a much less significant factor compared to the change in moment of inertia for the purpose of explaining the increased spin rate.

Answer:

B. False