AW250 x 32.7 structural steel [E = 200 GPa] wideflange shape is loaded and supported as shown. A uniformly distributed load of w= 13 kN/m is applied to the beam, causing the roller support at B to settle downward (i.e., displace downward) by 10 mm. Determine: (a) the reactions at supports A, B, and C. (b) the maximum bending stress max in the beam. Assume LAB = 4.4 m, LBc=5.2 m. Answers: (a) A = i (b) omax = LAB i B LBC KN, B= MPa. x kN, C = kN.

Structural Analysis
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Chapter2: Loads On Structures
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AW250 x 32.7 structural steel [E = 200 GPa] wideflange shape is loaded and supported as shown. A uniformly distributed load of w=
13 kN/m is applied to the beam, causing the roller support at B to settle downward (i.e., displace downward) by 10 mm. Determine:
(a) the reactions at supports A, B, and C.
(b) the maximum bending stress max in the beam.
Assume LAB = 4.4 m, LBc=5.2 m.
Answers:
(a) A = i
(b) omax =
LAB
i
B
LBC
KN, B=
MPa.
x
kN, C =
kN.
Transcribed Image Text:AW250 x 32.7 structural steel [E = 200 GPa] wideflange shape is loaded and supported as shown. A uniformly distributed load of w= 13 kN/m is applied to the beam, causing the roller support at B to settle downward (i.e., displace downward) by 10 mm. Determine: (a) the reactions at supports A, B, and C. (b) the maximum bending stress max in the beam. Assume LAB = 4.4 m, LBc=5.2 m. Answers: (a) A = i (b) omax = LAB i B LBC KN, B= MPa. x kN, C = kN.
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