SITUATION 19: A simply supported beam 10m long has a 2m overhang beyond the left support. A highway uniform load of 9.35 kN/m and a concentrated load of 116 kN will pass through this beam. 58. Determine the length of the beam over which the uniform load could be placed to produce maximum positive shear at the midspan. a. 3 b. 7 c. 5 d. 2 59. Determine the length of the beam over which the uniform load could be placed to produce maximum negative shear at the midspan. a. 5 b. 7 c. 3 d. 2 60. Determine the maximum shear at midspan if the concentrated load is placed at the end of the overhang. a. 34.19 kN b. 28.65 kN c. 36.76 kN d. 32.70 kN
SITUATION 19: A simply supported beam 10m long has a 2m overhang beyond the left support. A highway uniform load of 9.35 kN/m and a concentrated load of 116 kN will pass through this beam. 58. Determine the length of the beam over which the uniform load could be placed to produce maximum positive shear at the midspan. a. 3 b. 7 c. 5 d. 2 59. Determine the length of the beam over which the uniform load could be placed to produce maximum negative shear at the midspan. a. 5 b. 7 c. 3 d. 2 60. Determine the maximum shear at midspan if the concentrated load is placed at the end of the overhang. a. 34.19 kN b. 28.65 kN c. 36.76 kN d. 32.70 kN
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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SITUATION 19: A simply supported beam 10m long has a 2m overhang beyond the left support. A highway
uniform load of 9.35 kN/m and a concentrated load of 116 kN will pass through this beam.
58. Determine the length of the beam over which the uniform load could be placed to produce maximum
positive shear at the midspan.
a. 3
b. 7
c. 5
d. 2
59. Determine the length of the beam over which the uniform load could be placed to produce maximum
negative shear at the midspan.
a. 5
b. 7
c. 3
d. 2
60. Determine the maximum shear at midspan if the concentrated load is placed at the end of the overhang.
a. 34.19 kN
b. 28.65 kN
c. 36.76 kN
d. 32.70 kN
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