Q2. A continuous beam structure as shown in Figure Q2 subjected to uniform distributed load of 6 kN/m and point load of 30 kN. The beam is supported by a fixed support at A and roller supports at B and C. Flexural rigidity, EI of the beam is 25×10° kNmm². By using the flexibility method, determine (a) the vertical reaction forces at supports B and C (solution must consider reaction at supports B and C as redundant), (b) member end moments for the beam, and (c) draw the shear force and bending moment diagrams for the beam. 6 kN/m 3.5 m 5.5 m Figure Q2 30 kN B 1 m 1 m

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Q2. A continuous beam structure as shown in Figure Q2 subjected to uniform distributed load of 6
kN/m and point load of 30 kN. The beam is supported by a fixed support at A and roller supports at B
and C. Flexural rigidity, EI of the beam is 25×10° kNmm². By using the flexibility method, determine
(a) the vertical reaction forces at supports B and C (solution must consider reaction at supports B and
C as redundant),
(b) member end moments for the beam, and
(c) draw the shear force and bending moment diagrams for the beam.
6 kN/m
3.5 m
5.5 m
Figure Q2
30 kN
B
1 m
1 m
Transcribed Image Text:Q2. A continuous beam structure as shown in Figure Q2 subjected to uniform distributed load of 6 kN/m and point load of 30 kN. The beam is supported by a fixed support at A and roller supports at B and C. Flexural rigidity, EI of the beam is 25×10° kNmm². By using the flexibility method, determine (a) the vertical reaction forces at supports B and C (solution must consider reaction at supports B and C as redundant), (b) member end moments for the beam, and (c) draw the shear force and bending moment diagrams for the beam. 6 kN/m 3.5 m 5.5 m Figure Q2 30 kN B 1 m 1 m
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