Problem 4: If the material of the beam has an allowable bending stress of Galow = 175 MPa. determine the maximum allowable intensity w of the uniform distributed load. 300 mm 6 m 150 mm
Problem 4: If the material of the beam has an allowable bending stress of Galow = 175 MPa. determine the maximum allowable intensity w of the uniform distributed load. 300 mm 6 m 150 mm
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Problem 4: If the material of the beam has an allowable bending stress of Galow = 175 MPa,
determine the maximum allowable intensity w of the uniform distributed load.
300 mm
B
- 6 m
I50 mm
Solve the following problems on separate sheets of paper. Show complete solutions and
appropriate free-body diagrams.
Determine the maximum deflection in region AB of the overhang beam. E = 29 x 10° ksi and
1= 204 int.
kip
2 kip/ft 13 kip
- 6 ft-
6 ft
-6 ft
Problem 1: Using double integration method.
Problem 2: Using moment-area method.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0b14c23d-6f9d-4ca5-8abc-f1fa674646ed%2F7ca17c3c-ad82-4441-8e52-da56099f141a%2Faao4js_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 4: If the material of the beam has an allowable bending stress of Galow = 175 MPa,
determine the maximum allowable intensity w of the uniform distributed load.
300 mm
B
- 6 m
I50 mm
Solve the following problems on separate sheets of paper. Show complete solutions and
appropriate free-body diagrams.
Determine the maximum deflection in region AB of the overhang beam. E = 29 x 10° ksi and
1= 204 int.
kip
2 kip/ft 13 kip
- 6 ft-
6 ft
-6 ft
Problem 1: Using double integration method.
Problem 2: Using moment-area method.
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