A uniform rod of weight F, and length Lis supported at its ends by a frictionless trough as shown in Figure P12.49. (a) Show that the center of gravity of the rod must be vertically over point Owhen the rod is in equilibrium. (b) Determine the equilibrium value of the angle 0. (c) Is the equilibrium of the rod stable or unstable? Figure P12.49 30.07 60.0.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter14: Static Equilibrium, Elasticity, And Fracture
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A uniform rod of weight Fg and length Lis supported at its ends by
a frictionless trough as shown in Figure P12.49. (a) Show that the
center of gravity of the rod must be vertically over point Owhen
the rod is in equilibrium. (b) Determine the equilibrium value of
the angle 0. (c) Is the equilibrium of the rod stable or unstable?
Figure P12.49
30.07 60.0
Transcribed Image Text:A uniform rod of weight Fg and length Lis supported at its ends by a frictionless trough as shown in Figure P12.49. (a) Show that the center of gravity of the rod must be vertically over point Owhen the rod is in equilibrium. (b) Determine the equilibrium value of the angle 0. (c) Is the equilibrium of the rod stable or unstable? Figure P12.49 30.07 60.0
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