A girder supports four concentrated loads of 800lb as shown in the figure. Assume the support at A is pin and B is a roller. Answer che following: 1. Compute the internal shear force, normal force and moment at a point 18ft from point A. Assign this point as point C. (15 points) 2. Determine the shear and moment in the girder as a function of x, where 12ft

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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A girder supports four concentrated loads of 800lb as shown in the figure. Assume the support at A is pin and B is a roller. Answer
the following:
1. Compute the internal shear force, normal force and moment at a point 18ft from point A. Assign this point as point C. (15
points)
2. Determine the shear and moment in the girder as a function of x, where 12ft < x< 24 ft. (10 points)
3. Compute the maximum shear moment in the girder. (Draw the shear and moment diagram) (10 points)
AR135_M2 P1.png
...
800 lb
800 lb
800 lb
800 lb
A
-12 ft
12 ft
-12 ft
-12 ft-
Transcribed Image Text:A girder supports four concentrated loads of 800lb as shown in the figure. Assume the support at A is pin and B is a roller. Answer the following: 1. Compute the internal shear force, normal force and moment at a point 18ft from point A. Assign this point as point C. (15 points) 2. Determine the shear and moment in the girder as a function of x, where 12ft < x< 24 ft. (10 points) 3. Compute the maximum shear moment in the girder. (Draw the shear and moment diagram) (10 points) AR135_M2 P1.png ... 800 lb 800 lb 800 lb 800 lb A -12 ft 12 ft -12 ft -12 ft-
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