The beam is constructed from two boards fastened together at the top and bottom with three rows of nails spaced every 8 in. as shown in. V = 8 in. lb 8 in. Part A If each nail can support a 300-lb shear force, determine the maximum shear force V that can be applied to the beam. Express your answer in pounds to three significant figures. ANSWER: 9 in. 2 in. 4 in.

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Problem 1
The beam is constructed from two boards fastened together at the top and bottom with three rows of nails spaced every 8 in. as
shown in .
V =
8 in.
lb
8 in.
Part A
If each nail can support a 300-lb shear force, determine the maximum shear force V that can be applied to the beam.
Express your answer in pounds to three significant figures.
ANSWER:
.9 in.
2 in.
4 in.
Transcribed Image Text:Problem 1 The beam is constructed from two boards fastened together at the top and bottom with three rows of nails spaced every 8 in. as shown in . V = 8 in. lb 8 in. Part A If each nail can support a 300-lb shear force, determine the maximum shear force V that can be applied to the beam. Express your answer in pounds to three significant figures. ANSWER: .9 in. 2 in. 4 in.
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