on at B. Assume that EI is constant for the beam. Let w = 12 kN/m, L = 4.0 m, E = 210 GPa, and I = 105 x 106 mm4

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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For the beam and loading shown, use the double-integration method to determine (a) the equation of the elastic curve for the beam, and (b) the deflection at B. Assume that EI is constant for the beam. Let w = 12 kN/m, L = 4.0 m, E = 210 GPa, and I = 105 x 106 mm4

For the beam and loading shown, use the double-integration method to determine (a) the equation of the elastic curve for the beam,
and (b) the deflection at B. Assume that El is constant for the beam. Let w = 12 kN/m, L= 4.0 m, E = 210 GPa, and I = 105 x 106 mm²
W
X
B
Answer:
(b) VB =
-L/2
·L/2
mm
Transcribed Image Text:For the beam and loading shown, use the double-integration method to determine (a) the equation of the elastic curve for the beam, and (b) the deflection at B. Assume that El is constant for the beam. Let w = 12 kN/m, L= 4.0 m, E = 210 GPa, and I = 105 x 106 mm² W X B Answer: (b) VB = -L/2 ·L/2 mm
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