Problem 6.93 The cross section is rectangular with a base of 5 in and height of 8 in. A force of P = 20 kip is acting on the beam. 4.5 ft- P -4.5 ft- 3 ft B Part A Determine the absolute maximum bending stress in the beam, assuming that the support at B exerts a uniformly distributed reaction on the beam.
Problem 6.93 The cross section is rectangular with a base of 5 in and height of 8 in. A force of P = 20 kip is acting on the beam. 4.5 ft- P -4.5 ft- 3 ft B Part A Determine the absolute maximum bending stress in the beam, assuming that the support at B exerts a uniformly distributed reaction on the beam.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Problem 6.93
The cross section is rectangular with a base of 5 in. and height of 8 in. A force of P = 20 kip is acting on the beam.
-4.5 ft
P
-4.5 ft-
-3 ft-
B
Part A
Determine the absolute maximum bending stress in the beam, assuming that the support at B exerts a uniformly distributed reaction on the beam.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4b070d29-61c8-49d8-92a5-4429b5559c9e%2F570991b0-4aee-4c96-acd5-2b10bb752fe6%2Fahcvh7n_processed.png&w=3840&q=75)
Transcribed Image Text:Problem 6.93
The cross section is rectangular with a base of 5 in. and height of 8 in. A force of P = 20 kip is acting on the beam.
-4.5 ft
P
-4.5 ft-
-3 ft-
B
Part A
Determine the absolute maximum bending stress in the beam, assuming that the support at B exerts a uniformly distributed reaction on the beam.
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