A bob on the end of a pendulum has a mass of 2.00kg. The rope of the pendulum Is 13.0 meters long. At the equilibrium point for the pendulum system, the bob is 10.0cm above the ground. The bob is pulled back to a height of 30.0cm above the ground. With the rope tight, the bob is release. a) Draw a diagram of this situation. Make note of the equilibrium point and the position from which the bob was released. b) Calculate the maximum speed of the bob. brs m 00.2 1 illev c) Calculate the speed of the bob when it is at a height of 17.0 cm above the ground.

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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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3. A bob on the end of a pendulum has a mass of 2.00kg. The rope of the pendulum
Is 13.0 meters long. At the equilibrium point for the pendulum system, the bob is
10.0cm above the ground. The bob is pulled back to a height of 30.0cm above the
ground. With the rope tight, the bob is release.
a) Draw a diagram of this situation. Make note of the equilibrium point and the
position from which the bob was released.
b) Calculate the maximum speed of the bob.
c) Calculate the speed of the bob when it is at a height of 17.0 cm above the
ground. (
Transcribed Image Text:3. A bob on the end of a pendulum has a mass of 2.00kg. The rope of the pendulum Is 13.0 meters long. At the equilibrium point for the pendulum system, the bob is 10.0cm above the ground. The bob is pulled back to a height of 30.0cm above the ground. With the rope tight, the bob is release. a) Draw a diagram of this situation. Make note of the equilibrium point and the position from which the bob was released. b) Calculate the maximum speed of the bob. c) Calculate the speed of the bob when it is at a height of 17.0 cm above the ground. (
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