The steel beam has the cross section shown. The beam length is L = 7.1 m, and the cross-sectional dimensions are d = 360 mm, bf = 180 mm, tf = 16 mm, and tw = 9 mm. Calculate the largest intensity of distributed load w0 that can be supported by this beam if the allowable bending stress is 185 MPa

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The steel beam has the cross section shown. The beam length is L = 7.1 m, and the cross-sectional dimensions are d = 360 mm, bf = 180 mm, tf = 16 mm, and tw = 9 mm. Calculate the largest intensity of distributed load w0 that can be supported by this beam if the allowable bending stress is 185 MPa.

The steel beam has the cross section shown. The beam length is L = 7.1 m, and the cross-sectional dimensions are d = 360 mm, b = 180
mm, tf = 16 mm, and tw = 9 mm. Calculate the largest intensity of distributed load wo that can be supported by this beam if the
allowable bending stress is 185 MPa.
Answer: Wo=
Wo
B
kN/m
I
Transcribed Image Text:The steel beam has the cross section shown. The beam length is L = 7.1 m, and the cross-sectional dimensions are d = 360 mm, b = 180 mm, tf = 16 mm, and tw = 9 mm. Calculate the largest intensity of distributed load wo that can be supported by this beam if the allowable bending stress is 185 MPa. Answer: Wo= Wo B kN/m I
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