The beam AB is attached to the wall in the zz plane by a fixed support at A. A force of F = (-1231 + 84.03 + 397) N is applied to the end of the beam at B. The weight of the beam can be modeled with a uniform distributed load of intensity w = 90.0 N/m acting in the negative z direction along its entire length. Find the support reactions at A. Z

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 10.4.39P: A beam supporting a uniform load of intensity q throughout its length rests on pistons at points A,...
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The beam AB is attached to the wall in the z plane by a fixed support at A. A force of
F = (-123î +84.03 +397) N is applied to the end of the beam at B. The weight of the beam can be
modeled with a uniform distributed load of intensity w=90.0 N/m acting in the negative z direction along
its entire length. Find the support reactions at A.
Z
A =
с
A
M₁ =
b
a
F
B
Cc +3
X
Values for dimensions on the figure are given in the following table. Note the figure may not be to scale.
Variable Value
a
5.40 m
b
5.10 m
3.00 m
y
BY NC SA
2016 Eric Davishahl
ke) N
e) N-m
Transcribed Image Text:The beam AB is attached to the wall in the z plane by a fixed support at A. A force of F = (-123î +84.03 +397) N is applied to the end of the beam at B. The weight of the beam can be modeled with a uniform distributed load of intensity w=90.0 N/m acting in the negative z direction along its entire length. Find the support reactions at A. Z A = с A M₁ = b a F B Cc +3 X Values for dimensions on the figure are given in the following table. Note the figure may not be to scale. Variable Value a 5.40 m b 5.10 m 3.00 m y BY NC SA 2016 Eric Davishahl ke) N e) N-m
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