Three boards, each 2 in. thick, are nailed together to form a beam that is subjected to a vertical internal shear force V. Knowing that the allowable shearing force in each nail is 150 lb, and the nail spacing (s) is 3 in., determine the largest V that can be applied. 2 in. 4 in. 2 in. 2 in. 6 in.
Three boards, each 2 in. thick, are nailed together to form a beam that is subjected to a vertical internal shear force V. Knowing that the allowable shearing force in each nail is 150 lb, and the nail spacing (s) is 3 in., determine the largest V that can be applied. 2 in. 4 in. 2 in. 2 in. 6 in.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Problem 1
Three boards, each 2 in. thick, are nailed together to form a beam that is subjected to a vertical internal shear force
V. Knowing that the allowable shearing force in each nail is 150 lb, and the nail spacing (s) is 3 in., determine the
largest V that can be applied.
2 in.
4 in.
2 in.
2 in.
6 in.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F95aeff90-eae1-41d1-a6d5-24c543733ee7%2F6ae6dc39-12c2-4e08-990b-d616ce66b771%2Fq2tnr7g_processed.png&w=3840&q=75)
Transcribed Image Text:Problem 1
Three boards, each 2 in. thick, are nailed together to form a beam that is subjected to a vertical internal shear force
V. Knowing that the allowable shearing force in each nail is 150 lb, and the nail spacing (s) is 3 in., determine the
largest V that can be applied.
2 in.
4 in.
2 in.
2 in.
6 in.
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