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3. What happens to the angular acceleration (a), linear acceleration (a), summation of torque (ET), and rotational inertia () as the pulling force varies while

3. What happens to the angular acceleration (a), linear acceleration (a), summation of torque (ET), and rotational inertia () as the pulling force varies while keeping the pulley radius and pulley mass constant? How is the moment of inertia from trial 1 to trial 3 (given the same situation)?

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