1. The T-beam is made from concrete having a specific weight of 150 lb/ft. Determine the...
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1. The T-beam is made from concrete having a specific weight of 150 lb/ft. Determine the dead load per foot length of the beam. Neglect the weight of the steel reinforcement. 40 in. 26 in. 10 in.- 8 in. @ (d) pin roller T fixed 2. Classify each of the structures as statically determinate, statically indeterminate, or unstable. If indeterminate, specify the degree of indeterminacy. The supports connections are to be assumed as stated. or pin pin (f) 3. Determine the reactions on the beam. Neglect the thickness of the beam. A 6 m 20 kN 20 kN 26 kN B 6 m -3 m- 4. Determine the reactions on the beam. 2 k/ft 3 k/ft A 600 k ft 12 ft 12 ft 2 k/ft 60 5. Determine the reactions at the supports A, B, D, and F. A 2 k/ft 8 k E O B D 8 ft 4 ft 4 ft 4 ft 4 ft- 2 ft 6. Determine the reactions of the structure in the figure below. 8 kips 15 kip. ft 5' B F D E 5' 6 kips 10' 1. The T-beam is made from concrete having a specific weight of 150 lb/ft. Determine the dead load per foot length of the beam. Neglect the weight of the steel reinforcement. 40 in. 26 in. 10 in.- 8 in. @ (d) pin roller T fixed 2. Classify each of the structures as statically determinate, statically indeterminate, or unstable. If indeterminate, specify the degree of indeterminacy. The supports connections are to be assumed as stated. or pin pin (f) 3. Determine the reactions on the beam. Neglect the thickness of the beam. A 6 m 20 kN 20 kN 26 kN B 6 m -3 m- 4. Determine the reactions on the beam. 2 k/ft 3 k/ft A 600 k ft 12 ft 12 ft 2 k/ft 60 5. Determine the reactions at the supports A, B, D, and F. A 2 k/ft 8 k E O B D 8 ft 4 ft 4 ft 4 ft 4 ft- 2 ft 6. Determine the reactions of the structure in the figure below. 8 kips 15 kip. ft 5' B F D E 5' 6 kips 10'
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