For the beam and loading shown, integrate the load distribution to determine (a) the equation of the elastic curve, (b) the deflection at the left end of the beam, and (c) the support reactions By and MB. Assume that EI is constant for the beam. Let w0 = 5 kN/m, L = 3.5 m, E = 225 GPa, and I = 105 x 106 mm4

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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For the beam and loading shown, integrate the load distribution to determine (a) the equation of the elastic curve, (b) the deflection at the left end of the beam, and (c) the support reactions By and MB. Assume that EI is constant for the beam. Let w0 = 5 kN/m, L = 3.5 m, E = 225 GPa, and I = 105 x 106 mm4.

For the beam and loading shown, integrate the load distribution to determine (a) the equation of the elastic curve, (b) the deflection at
the left end of the beam, and (c) the support reactions By and Mp. Assume that El is constant for the beam. Let wo = 5 kN/m, L = 3.5 m, E
= 225 GPa, and | = 105 x 10ó mm4.
w(x) = w, cos (A x/2L)
Wo
В
L
Answer:
(b) Va =
mm
(c) Ву -—
kN
MB =
kN-m
Transcribed Image Text:For the beam and loading shown, integrate the load distribution to determine (a) the equation of the elastic curve, (b) the deflection at the left end of the beam, and (c) the support reactions By and Mp. Assume that El is constant for the beam. Let wo = 5 kN/m, L = 3.5 m, E = 225 GPa, and | = 105 x 10ó mm4. w(x) = w, cos (A x/2L) Wo В L Answer: (b) Va = mm (c) Ву -— kN MB = kN-m
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