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Consider a pendulum made from a thin 2.1 m long metal wire and a 7.4 kg bowling ball. The metal wire is extremely strong, so

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Consider a pendulum made from a thin 2.1 m long metal wire and a 7.4 kg bowling ball. The metal wire is extremely strong, so that it never snaps. You pull the pendulum off to one side, so that the wire makes an angle of 1.3 rad measured from vertical, and swing the pendulum so that it has an angular velocity of 67.5 rad / s. The density of air surrounding the bowling ball is roughly 10 kg / m3, and the bowling bowl has a crosssectional area of roughly 0.03 m2. Include a drag force. a) Draw a FBD for the bowling ball imediately after being swung. b) Calculate the absolute value of the angular acceleration of the bowling ball imme diately after being swung

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