Find the magnitude of the concentrated load P (in lbs). If P = 25,000 lbs, find is the maximum shear stress (in psi) of the wooden beam. Calculate the moment of inertia (in in^4). If P = 25,000 lbs, find the shear stress (in psi) at a point 2 inches from the top of the beam.
Find the magnitude of the concentrated load P (in lbs). If P = 25,000 lbs, find is the maximum shear stress (in psi) of the wooden beam. Calculate the moment of inertia (in in^4). If P = 25,000 lbs, find the shear stress (in psi) at a point 2 inches from the top of the beam.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Complete solution please thank you 4 DECIMALS
A simply supported wooden beam with a span of 16 ft supports a concentrated load P at the middle span. The allowable shear stress for the wood is 150 psi and the cross section is 16 in. wide and 18 in. deep. Write all answers in 2-decimal places.
Determine:
Find the magnitude of the concentrated load P (in lbs).
If P = 25,000 lbs, find is the maximum shear stress (in psi) of the wooden beam.
Calculate the moment of inertia (in in^4).
If P = 25,000 lbs, find the shear stress (in psi) at a point 2 inches from the top of the beam.
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