3. A beam ABC is 36 m in length and is supported at A and B, 24m apart. the beam carries a load of 48 kN at 8m from A along with a distributed load, the intensity of which varies linearly from zero at A and c to 12kn/m at B. Draw the shear force and bending moment diagrams. Also, determine the maximum bending moment on the beam. 48 kN 12 kN/m 8 m D i= 24 m- B 12 m

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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3. A beam ABC is 36 m in length and is supported at A and B, 24m
apart. the beam carries a load of 48 kN at 8m from A along with a
distributed load, the intensity of which varies linearly from zero at A
A
48 kN
12 kN/m
and c to 12kn/m at B. Draw the shear force and bending moment
diagrams. Also, determine the maximum bending moment on the
8 m D
12 r
%=24 m
beam.
Transcribed Image Text:3. A beam ABC is 36 m in length and is supported at A and B, 24m apart. the beam carries a load of 48 kN at 8m from A along with a distributed load, the intensity of which varies linearly from zero at A A 48 kN 12 kN/m and c to 12kn/m at B. Draw the shear force and bending moment diagrams. Also, determine the maximum bending moment on the 8 m D 12 r %=24 m beam.
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