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The cantilever beam shown in the figure is subjected to a distributed load of w= 11 kN/m. The cross-sectional dimensions of the rectangular tube shape
The cantilever beam shown in the figure is subjected to a distributed load of w= 11 kN/m. The cross-sectional dimensions of the rectangular tube shape are shown. Point His located a= 40 mm below the centroid at a section = 1.2 m on the left of restraint A. [L= 3 m, h= 220 mm, b= 165 mm, t = 3 mm, 12= 8 mm] h Calculate the value of shear stress at point H on a section focated at distrace of z=12 m from restraint A. 7.24 MPO 8.85 MPa 1.22 MPa 6.53 MPa MID The cantilever beam shown in the figure is subjected to a distributed load of w= 11 kN/m. The cross-sectional dimensions of the rectangular tube shape are shown. Point His located a= 40 mm below the centroid at a section = 12 m on the left of restraint A. [L= 3 m, h= 220 mm, b= 165 mm, t = 3 mm, te8 mm Calculate the maximum shear stress on a section foncted at distance of zu 12 m from restraint A Answer MPA The cantilever beam shown in the figure is subjected to a distributed load of w= 11 kN/m. The cross-sectional dimensions of the rectangular tube shape are shown. Point His located a= 40 mm below the centroid at a section = 1.2 m on the left of restraint A. [L= 3 m, h= 220 mm, b= 165 mm, t;= 3 mm, 12+ 8 mm] Calculate the maximum shear stress developed in the beam Answer MPS
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