The beam of section and details shown in the below figure carries a dead load of WD-10 kN (include beam weight). By using the working stress design method, find the maximum concentrated live load (P) can be carried by the beam. Use fy=400 MPa and f 25 MPa. 3e20mm 200 mm 550 mm 70 mm mam 2.5 m Plive = ? WD-10 kN/m
The beam of section and details shown in the below figure carries a dead load of WD-10 kN (include beam weight). By using the working stress design method, find the maximum concentrated live load (P) can be carried by the beam. Use fy=400 MPa and f 25 MPa. 3e20mm 200 mm 550 mm 70 mm mam 2.5 m Plive = ? WD-10 kN/m
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The beam of section and details shown in the below figure carries a dead load of
WD-10 kN (include beam weight). By using the working stress design method, find
the maximum concentrated live load (P) can be carried by the beam. Use fy=400
MPa and f 25 MPa.
3e20mm
200 mm
550 mm
70 mm
2.5 m
Plive = ?
WD-10 kN/m
2.5 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdf4de247-216d-466e-b571-b5b9773ed476%2F63cb0413-2c3a-43fe-a457-e94b567a1dc7%2Fag94n6q_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The beam of section and details shown in the below figure carries a dead load of
WD-10 kN (include beam weight). By using the working stress design method, find
the maximum concentrated live load (P) can be carried by the beam. Use fy=400
MPa and f 25 MPa.
3e20mm
200 mm
550 mm
70 mm
2.5 m
Plive = ?
WD-10 kN/m
2.5 m
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