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Problem 1-51/1-52/1-53/ Engineering Mechanics Materials.
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Engineering mechanics problem with solution.
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1–51. During the tension test, the wooden specimen is
subjected to an average normal stress of 2 ksi. Determine the axial force P applied to the specimen. Also, find the average shear stress developed along section a – a of the specimen.
1–52. If the joint is subjected to an axial force of P = 9 kN, determine the averege shear stress developed in each of the
6-mm diameter bolts between the plates and the members and along each of the four shaded shear planes.
1–53. The average shear stress in each of the 6-mm
diameter bolts and along each of the four shaded shear
planes is not allowed to exceed 80 MPa and 500 kPa,
respectively. Determine the maximum axial force P that
can be applied to the joint
Go to my playlist to get more specific topics
1–51. During the tension test, the wooden specimen is
subjected to an average normal stress of 2 ksi. Determine the axial force P applied to the specimen. Also, find the average shear stress developed along section a – a of the specimen.
1–52. If the joint is subjected to an axial force of P = 9 kN, determine the averege shear stress developed in each of the
6-mm diameter bolts between the plates and the members and along each of the four shaded shear planes.
1–53. The average shear stress in each of the 6-mm
diameter bolts and along each of the four shaded shear
planes is not allowed to exceed 80 MPa and 500 kPa,
respectively. Determine the maximum axial force P that
can be applied to the joint
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