A propped 10 m cantilever beam is required to carry a load of 100 kN at midspan. If the yield stress of mild steel is 300 MPa Compute the plastic section modulus of the given beam. 7) Compute the elastic section modulus of the beam given that the shape factor is equal to 1.69. 8) Compute for the plastic moment of the given beam if an additional uniform load of 5kN/m is distributed along its total
A propped 10 m cantilever beam is required to carry a load of 100 kN at midspan. If the yield stress of mild steel is 300 MPa Compute the plastic section modulus of the given beam. 7) Compute the elastic section modulus of the beam given that the shape factor is equal to 1.69. 8) Compute for the plastic moment of the given beam if an additional uniform load of 5kN/m is distributed along its total
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A propped 10 m cantilever beam is required to carry a load of 100 kN at
midspan. If the yield stress of mild steel is 300 MPa
Compute the plastic section modulus of the given beam.
7) Compute the elastic section modulus of the beam given that the shape factor is
equal to 1.69.
8) Compute for the plastic moment of the given beam if an additional uniform load
of 5kN/m is distributed along its total length.
9) Calculate for the nominal/effective moment of the beam (with the 100 KN and
the 5KN/m loads), using a reduction factor of 0.90.
10) Calculate for the nominal/effective moment of the beam (with the 100 KN and
the 5KN/m loads), using a safety factor of 1.67.
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