The beam shown is simply-supported at A and by a roller at D. It supports a...
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The beam shown is simply-supported at A and by a roller at D. It supports a distributed load F₁ and a concentrated load F2 as shown. Take F₁ = 35 kN/m and F₂ = 50 kN. Determine the reactions at A and D and derive equations for the shear force and bending moment in segment AB as a function of the distance from A. Sketch the shear force and bending moment diagrams for the entire beam. Specify the location of the maximum bending moment in the beam (distance from left end, A). Give your answer in metres to two decimal places. Answer: Specify the magnitude of the maximum bending moment in the beam. Give your answer in kNm to one decimal place. F₁ kN/m 8m B 4m F₂ KN 4m The beam shown is simply-supported at A and by a roller at D. It supports a distributed load F₁ and a concentrated load F2 as shown. Take F₁ = 35 kN/m and F₂ = 50 kN. Determine the reactions at A and D and derive equations for the shear force and bending moment in segment AB as a function of the distance from A. Sketch the shear force and bending moment diagrams for the entire beam. Specify the location of the maximum bending moment in the beam (distance from left end, A). Give your answer in metres to two decimal places. Answer: Specify the magnitude of the maximum bending moment in the beam. Give your answer in kNm to one decimal place. F₁ kN/m 8m B 4m F₂ KN 4m
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