1- The below cantilever beam AB of length L= 3m carries a uniformly distributed load of intensity w = 6 kN/m. The beam has a square cross-section of a side length 20 cm., E = 200 GPa, and an elastic curve equation of: Wo Elv = 24 (x+ +4Ľ°X- 3L*) Calculate the maximum displacement (U max), the maximum bending moment Mmax, and the maximum stress õmax- Wo А В L-

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter10: Statically Indeterminate Beams
Section: Chapter Questions
Problem 10.4.2P: A fixed-end beam AB carries point load P acting at point C. The beam has a rectangular cross section...
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1- The below cantilever beam AB of length L= 3m carries a
uniformly distributed load of intensity w = 6 kN/m. The beam
has a square cross-section of a side length 20 cm., E = 200
GPa, and an elastic curve equation of:
Wo
(-x* + 4L°X– 3Lª)
24
Elv =
Calculate the maximum displacement (Umax), the maximum
bending moment Mmax, and the maximum stress õmax.
Wo
В
Transcribed Image Text:1- The below cantilever beam AB of length L= 3m carries a uniformly distributed load of intensity w = 6 kN/m. The beam has a square cross-section of a side length 20 cm., E = 200 GPa, and an elastic curve equation of: Wo (-x* + 4L°X– 3Lª) 24 Elv = Calculate the maximum displacement (Umax), the maximum bending moment Mmax, and the maximum stress õmax. Wo В
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