A beam section is shown in the figure. The beam will be subjected to a maximum service dead load of 215 kN.m. (including its own weight). Use f’c = 21 MPa and fy = 415 MPa. a.) Determine the effective depth of the beam. b.) Determine the distance of the neutral axis to the extreme compression fiber. c.) Determine the safe live load moment for this beam.
A beam section is shown in the figure. The beam will be subjected to a maximum service dead load of 215 kN.m. (including its own weight). Use f’c = 21 MPa and fy = 415 MPa. a.) Determine the effective depth of the beam. b.) Determine the distance of the neutral axis to the extreme compression fiber. c.) Determine the safe live load moment for this beam.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A beam section is shown in the figure. The beam will be subjected to a maximum service dead load of 215 kN.m. (including its own weight). Use f’c = 21 MPa and fy = 415 MPa.
a.) Determine the effective depth of the beam.
b.) Determine the distance of the neutral axis to the extreme compression fiber.
c.) Determine the safe live load moment for this beam.
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