For the beam and loading shown, use the double-integration method to determine (a) the equation of the elastic curve for the beam, (b) the maximum deflection, and (c) the slope at A. Assume that El is constant for the beam. Let w = 12 kN/m, L= 3.5 m, E = 210 GPa, and I = 110 x 106 mm. Answer: (b) Vmax i mm (c) OA = i rad eTextbook and Media

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter9: Deflections Of Beams
Section: Chapter Questions
Problem 9.11.4P: A simple beam AB of length L and height h (see figure) is heated in such a manner that the...
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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, (b)
the maximum deflection, and (c) the slope at A. Assume that El is constant for the beam. Let w = 12 kN/m, L = 3.5 m, E= 210 GPa, and I
= 110 x 10° mmt.
L.
Answer:
(b) vmax
i
mm
(c) OA =
i
rad
eTextbook and Media
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, (b) the maximum deflection, and (c) the slope at A. Assume that El is constant for the beam. Let w = 12 kN/m, L = 3.5 m, E= 210 GPa, and I = 110 x 10° mmt. L. Answer: (b) vmax i mm (c) OA = i rad eTextbook and Media
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