500 mm 10.0 cm (hrw8c15p43) A pendulum consists of a uniform disk with radius 10 cm and mass 650 g attached to a uniform rod with length 500 mm and mass 235 g (see the figure). Calculate the rotational inertia of the pendulum about the pivot. Submit Answer Tries 0/5 What is the distance between the pivot and the center of mass of the pendulum? ( m) Submit Answer Tries 0/5 Calculate the period of oscillation. Submit Answer Tries 0/5
500 mm 10.0 cm (hrw8c15p43) A pendulum consists of a uniform disk with radius 10 cm and mass 650 g attached to a uniform rod with length 500 mm and mass 235 g (see the figure). Calculate the rotational inertia of the pendulum about the pivot. Submit Answer Tries 0/5 What is the distance between the pivot and the center of mass of the pendulum? ( m) Submit Answer Tries 0/5 Calculate the period of oscillation. Submit Answer Tries 0/5
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![500 mm
10.0 cm
(hrw8c15p43) A pendulum consists of a uniform disk with radius 10 cm and mass 650 g attached to a uniform rod with length 500 mm and mass 235 g (see the figure).
Calculate the rotational inertia of the pendulum about the pivot.
Submit Answer Tries 0/5
What is the distance between the pivot and the center of mass of the pendulum? ( m)
Submit Answer Tries 0/5
Calculate the period of oscillation.
Submit Answer
Tries 0/5](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F487e17f2-393e-4678-a513-01c89c0e6783%2F8df31739-4d04-4768-8f60-8f560312682f%2F5j134cl_processed.png&w=3840&q=75)
Transcribed Image Text:500 mm
10.0 cm
(hrw8c15p43) A pendulum consists of a uniform disk with radius 10 cm and mass 650 g attached to a uniform rod with length 500 mm and mass 235 g (see the figure).
Calculate the rotational inertia of the pendulum about the pivot.
Submit Answer Tries 0/5
What is the distance between the pivot and the center of mass of the pendulum? ( m)
Submit Answer Tries 0/5
Calculate the period of oscillation.
Submit Answer
Tries 0/5
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