The pendulum in the figure consists of a uniform disk with radius r = 19.0 cm and mass 720 g attached to a uniform rod with length L = 750 mm and mass 230 g. (a) Calculate the rotational inertia of the pendulum about the pivot point. (b) What is the distance between the pivot point and the center of mass of the pendulum? (c) Calculate the period of oscillation. (a) Number i 0.828 Units kg-m^2 (b) Number i 0.75 ! Units m (c) Number i 2.16 Units S

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter16: Oscillations
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The pendulum in the figure consists of a uniform disk with radius r = 19.0 cm and mass 720 g attached to a uniform rod with length L =
750 mm and mass 230 g. (a) Calculate the rotational inertia of the pendulum about the pivot point. (b) What is the distance between
the pivot point and the center of mass of the pendulum? (c) Calculate the period of oscillation.
(a) Number i 0.828
Units
kg-m^2
(b) Number i 0.75
! Units
m
(c) Number i
2.16
Units
S
Transcribed Image Text:The pendulum in the figure consists of a uniform disk with radius r = 19.0 cm and mass 720 g attached to a uniform rod with length L = 750 mm and mass 230 g. (a) Calculate the rotational inertia of the pendulum about the pivot point. (b) What is the distance between the pivot point and the center of mass of the pendulum? (c) Calculate the period of oscillation. (a) Number i 0.828 Units kg-m^2 (b) Number i 0.75 ! Units m (c) Number i 2.16 Units S
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