The beam shown in the figure is supported at roller A and pinned at B and has a uniformly distributed loading w = 34 kN/m over 1.5 m from the left-hand end and moment loading M = 31 kNm at 1.5 m from end B. Determine the shear force at a section from the left-hand end of the beam X = 2.7 m. Input your answer as a value only in kN to one decimal place and without +/- sign. w kN/m M kNm B X -1.5 m T -1.5 m- -1.5 m-

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 10.4.6P: A beam with a sliding support at B is loaded by a uniformly distributed load with intensity q. Use...
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The beam shown in the figure is
supported at roller A and pinned at B and
has a uniformly distributed loading w 34
kN/m over 1.5 m from the left-hand end
and moment loading M = 31 kNm at 1.5
m from end B.
Determine the shear force at a section
from the left-hand end of the beam X =
2.7 m. Input your answer as a value only
in kN to one decimal place and without
+/- sign.
w kN/m
M kNm
B
X
-1.5 m-
-1.5 m
-1.5 m
Transcribed Image Text:The beam shown in the figure is supported at roller A and pinned at B and has a uniformly distributed loading w 34 kN/m over 1.5 m from the left-hand end and moment loading M = 31 kNm at 1.5 m from end B. Determine the shear force at a section from the left-hand end of the beam X = 2.7 m. Input your answer as a value only in kN to one decimal place and without +/- sign. w kN/m M kNm B X -1.5 m- -1.5 m -1.5 m
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