A uniform plank of mass 1.45 kg and length 37.2 cm is pivoted at one end, and the op- posite end is attached to a spring of force constant 367 N/m. The height of the pivot has been adjusted so that the plank will be in equilibrium when it is horizontally oriented as in the figure. 1.45 kg 37.2 cm Find the period of small oscillation about the equilibrium point. 367 N/m ell

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
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Chapter15: Oscillations
Section: Chapter Questions
Problem 53P: If a car has a suspension system with a force constant of 5.00104 N/m , how much energy must the...
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A uniform plank of mass 1.45 kg and length
37.2 cm is pivoted at one end, and the op-
posite end is attached to a spring of force
constant 367 N/m. The height of the pivot
has been adjusted so that the plank will be in
equilibrium when it is horizontally oriented as
in the figure.
1.45 kg
37.2 cm
Find the period of small oscillation about
the equilibrium point.
367 N/m
elle
Transcribed Image Text:A uniform plank of mass 1.45 kg and length 37.2 cm is pivoted at one end, and the op- posite end is attached to a spring of force constant 367 N/m. The height of the pivot has been adjusted so that the plank will be in equilibrium when it is horizontally oriented as in the figure. 1.45 kg 37.2 cm Find the period of small oscillation about the equilibrium point. 367 N/m elle
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