(2) Figure Q2 shows a 10 m long beam which has a concentrated load of X=95 KN located at the position A on the beam (x=0 m) as well as another load Z=42 kN at the end of the beam at position E (x=10 m). There is also a Uniform Distributed Load (UDL) of loading Y=84 kN/m which starts at position C (x=5 m) and ends at position D (x=7 m). There are two reaction pivots: - a left one located at B (x=3 m) and a right pivot located at D (x=7 m). Calculate the reaction force RD experienced by the pivot at the position D in terms of kilo-Newtons to 1 decimal place. X KN A 2m B 2m C Y kN/m 2m Figure Q2 D D 4m Z kN E

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
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Chapter4: Shear Forces And Bending Moments
Section: Chapter Questions
Problem 4.5.5P: Cantilever beam AB carries an upward uniform load of intensity q1from x = 0 to L/2 (see Fig. a) and...
Question
(2) Figure Q2 shows a 10 m long beam which has a concentrated load of X=95 KN located at the position A on the beam (x=0 m) as well as another load Z=42 kN at the end of the beam at
position E (x=10 m). There is also a Uniform Distributed Load (UDL) of loading Y=84 kN/m which starts at position C (x=5 m) and ends at position D (x=7 m). There are two reaction pivots:
- a left one located at B (x=3 m) and a right pivot located at D (x=7 m).
Calculate the reaction force RD experienced by the pivot at the position D in terms of kilo-Newtons to 1 decimal place.
X KN
A
2m
B
2m
C
Y kN/m
2m
Figure Q2
D
D
4m
Z kN
E
Transcribed Image Text:(2) Figure Q2 shows a 10 m long beam which has a concentrated load of X=95 KN located at the position A on the beam (x=0 m) as well as another load Z=42 kN at the end of the beam at position E (x=10 m). There is also a Uniform Distributed Load (UDL) of loading Y=84 kN/m which starts at position C (x=5 m) and ends at position D (x=7 m). There are two reaction pivots: - a left one located at B (x=3 m) and a right pivot located at D (x=7 m). Calculate the reaction force RD experienced by the pivot at the position D in terms of kilo-Newtons to 1 decimal place. X KN A 2m B 2m C Y kN/m 2m Figure Q2 D D 4m Z kN E
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