The steel beam has the cross section shown. The beam length is L = 7.5 m, and the cross-sectional dimensions are d = 385 mm, b= 190 mm, t+= 12 mm, and tw = 10 mm. Calculate the largest intensity of distributed load wo that can be supported by this beam if the allowable bending stress is 155 MPa. Wo Answer: Wo= 12 B -1/2 kN/m
The steel beam has the cross section shown. The beam length is L = 7.5 m, and the cross-sectional dimensions are d = 385 mm, b= 190 mm, t+= 12 mm, and tw = 10 mm. Calculate the largest intensity of distributed load wo that can be supported by this beam if the allowable bending stress is 155 MPa. Wo Answer: Wo= 12 B -1/2 kN/m
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The steel beam has the cross section shown. The beam length is L = 7.5 m, and the cross-sectional dimensions are d = 385 mm, b = 190
mm, t+= 12 mm, and tw = 10 mm. Calculate the largest intensity of distributed load wo that can be supported by this beam if the
allowable bending stress is 155 MPa.
Wo
-1/2
Answer: Wo=
B
sla
-1/12
kN/m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F802bf7a2-140a-492e-bdb3-cfa81b10d4c6%2Fe8a419cc-c816-463a-b4cc-cdefd7cddc36%2Ff9otmif_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The steel beam has the cross section shown. The beam length is L = 7.5 m, and the cross-sectional dimensions are d = 385 mm, b = 190
mm, t+= 12 mm, and tw = 10 mm. Calculate the largest intensity of distributed load wo that can be supported by this beam if the
allowable bending stress is 155 MPa.
Wo
-1/2
Answer: Wo=
B
sla
-1/12
kN/m
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