The box beam in the figure is made of four pieces of wood nailed to each other as shown.Since the distance between the nails is 32 and the allowable cutting force on each nail is 160, (a=16, b=38, c=32, d=190, F=160) a) Maximum allowable vertical shear force in the beam? b) Determine the corresponding maximum shear stress in the beam.
The box beam in the figure is made of four pieces of wood nailed to each other as shown.Since the distance between the nails is 32 and the allowable cutting force on each nail is 160, (a=16, b=38, c=32, d=190, F=160) a) Maximum allowable vertical shear force in the beam? b) Determine the corresponding maximum shear stress in the beam.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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The box beam in the figure is made of four pieces of wood nailed to each other as shown.Since the distance between the nails is 32 and the allowable cutting force on each nail is 160,
(a=16, b=38, c=32, d=190, F=160)
a) Maximum allowable vertical shear force in the beam?
b) Determine the corresponding maximum shear stress in the beam.
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