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Author Archives: Anonymous

Use the cantilever method to determine the magnitude of the…

Use the cantilever method to determine the magnitude of the approximate axial force in column DG. Let P1 = 22.3 kN, P2 = 38.1 kN, L1 = 8 m, and L2 = 7 m.

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Determine the distribution factor DFBA. Let w1 = 1.2 kip/ft,…

Determine the distribution factor DFBA. Let w1 = 1.2 kip/ft, w2 = 2.1 kip/ft, L1 = 36 ft, and L2 = 21 ft. Assume EI = constant.

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Determine the horizontal distance from column ADG to the cen…

Determine the horizontal distance from column ADG to the centroid of the columns. Assume all of the columns have the same cross sectional area. Let P1 = 20 kN, P2 = 32 kN, L1 = 8.9 m, L2 = 6.7 m, and L3 = 6.1 m.

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Determine the magnitude of the bending moment at B. Let w =…

Determine the magnitude of the bending moment at B. Let w = 3.0 kip/ft, L1 = 38 ft, and L2 = 24 ft. Assume EI = constant.

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Determine the fixed end moment FEMBA. Let w = 2.2 kip/ft and…

Determine the fixed end moment FEMBA. Let w = 2.2 kip/ft and L = 29 ft. Assume EI = constant.

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Using the method of consistent deformations, determine the m…

Using the method of consistent deformations, determine the magnitude of the reaction at B. Let w = 17 kN/m and L = 7 m.

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Determine the distribution factor DFBC. Let w = 1.3 kip/ft,…

Determine the distribution factor DFBC. Let w = 1.3 kip/ft, L1 = 38 ft, and L2 = 24 ft. Assume EI = constant.

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Use the cantilever method to determine the magnitude of the…

Use the cantilever method to determine the magnitude of the approximate axial force in column AD. Let P1 = 14.7 kN, P2 = 46.3 kN, L1 = 8 m, and L2 = 6 m.

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Determine the magnitude of the bending moment at C. Let w =…

Determine the magnitude of the bending moment at C. Let w = 1.4 kip/ft, L1 = 34 ft, and L2 = 22 ft. Assume EI = constant.

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Determine the magnitude of the bending moment at C. Let w =…

Determine the magnitude of the bending moment at C. Let w = 2.0 kip/ft, L1 = 32 ft, and L2 = 27 ft. Assume EI = constant.

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