A standard steel shape (I=48.7x10 mm ) is used to support the loads shown on the beam in the figure. The dimensions from the top and bottom of the shape to the centroidal axis are shown on the sketch of the cross section. Consider the entire 10-m length of the beam and determine the following: 4. Calculate the compressive bending stress considering the maximum positive bending moment in MPa. 5. Calculate the tensile bending stress considering the maximum positive bending moment in MPa. 6. Calculate the compressive bending stress considering the maximum negative bending moment in MPa. 7. Calculate the tensile bending stress considering the maximum negative bending moment in MPa.
A standard steel shape (I=48.7x10 mm ) is used to support the loads shown on the beam in the figure. The dimensions from the top and bottom of the shape to the centroidal axis are shown on the sketch of the cross section. Consider the entire 10-m length of the beam and determine the following:
4. Calculate the compressive bending stress considering the maximum positive bending moment in MPa.
5. Calculate the tensile bending stress considering the maximum positive bending moment in MPa.
6. Calculate the compressive bending stress considering the maximum negative bending moment in MPa.
7. Calculate the tensile bending stress considering the maximum negative bending moment in MPa.
NOTE: Kindly answer all questions please. Badly needed
![12 kN
2 m
B
10 kN/m
5 m
C
3 m
D
T
WT305x41
88.9 mm
211.1 mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8dbb316e-196a-4839-b23e-9d78ff88db51%2F67166e27-fb28-493f-ab52-73e102763609%2Fdlwlasb_processed.png&w=3840&q=75)
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