Q3(1). The beam is supported by a pin support at point A and a rocker support...
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Q3(1). The beam is supported by a pin support at point A and a rocker support at point B, and the length is / = 6.6 ft. It has a cross section shown in the image with h = 8.6 in. It is subjected to a uniformly distributed load with load intensity w = 458 lb/ft, and a couple moment of 1500 lb-ft as shown. Point C is located immediately to the right of the couple moment, and the vertical location of point C is also shown in the cross section. If the location of point C is indicated on the cross section, and its state of stress can be represented on the volume element as shown, determine the shear (in the unit of psi). Negative sign must be included if the direction is stress Txy opposite to what's shown in the state of stress image. A T 1500 lb-ft 6 ft B 130 lin. 2 in. C Ox 6 in. 1 in. H 1 in. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point. Q3(1). The beam is supported by a pin support at point A and a rocker support at point B, and the length is / = 6.6 ft. It has a cross section shown in the image with h = 8.6 in. It is subjected to a uniformly distributed load with load intensity w = 458 lb/ft, and a couple moment of 1500 lb-ft as shown. Point C is located immediately to the right of the couple moment, and the vertical location of point C is also shown in the cross section. If the location of point C is indicated on the cross section, and its state of stress can be represented on the volume element as shown, determine the shear (in the unit of psi). Negative sign must be included if the direction is stress Txy opposite to what's shown in the state of stress image. A T 1500 lb-ft 6 ft B 130 lin. 2 in. C Ox 6 in. 1 in. H 1 in. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point.
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