b) i) The diagram below shows a rolled steel joist which has a point load and a uniformly distributed load acting on it. Produce a shear force and bending moment diagram. Determine the position and value of the maximum bending moment from the left- hand end of the beam. NO08 2.5m 1.5m 300N/m 8m iI) If the beam above has a section modulus (Z) of 3x10 mm use the maximum bending moment (M) determined in the bending moment diagram and calculate the stress in the beam, given that:

Elements Of Electromagnetics
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b) i) The diagram below shows a rolled steel joist which has a point load and a
uniformly distributed load acting on it. Produce a shear force and bending moment
diagram.
Determine the position and value of the maximum bending moment from the left-
hand end of the beam.
NO08
2.5m
1.5m
R1
8m
i) If the beam above has a section modulus (Z) of 3x10 mm use the maximum
bending moment (M) determined in the bending moment diagram and calculate the
stress in the beam, given that:
Transcribed Image Text:b) i) The diagram below shows a rolled steel joist which has a point load and a uniformly distributed load acting on it. Produce a shear force and bending moment diagram. Determine the position and value of the maximum bending moment from the left- hand end of the beam. NO08 2.5m 1.5m R1 8m i) If the beam above has a section modulus (Z) of 3x10 mm use the maximum bending moment (M) determined in the bending moment diagram and calculate the stress in the beam, given that:
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