5. Determine the maximum tensile force developed in member ML of the truss shown below due to a dead load of 10 kN/m, 15 kN/m live load and the load induced by the trailer described below. Assume loads are applied directly to the truss and move only to the right. 6 m B E F G hinge 6 m M L O 6 @ 6m 19.62 kN G 6.54 kN 2 m 1 m 13.08 kN

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Determine the maximum tensile force developed in member ML of the truss shown below due to a dead load of 10 kN/m, 15 kN/m live load and the load induced by the trailer described below. Assume loads are applied directly to the truss and move only to the right.

5. Determine the maximum tensile force developed in member ML of the truss shown below
due to a dead load of 10 kN/m, 15 kN/m live load and the load induced by the trailer
described below. Assume loads are applied directly to the truss and move only to the right.
6 m
B
E
F
G
hinge
6 m
M L
O
6 @ 6m
19.62 kN
G
6.54 kN
2 m
1 m
13.08 kN
Transcribed Image Text:5. Determine the maximum tensile force developed in member ML of the truss shown below due to a dead load of 10 kN/m, 15 kN/m live load and the load induced by the trailer described below. Assume loads are applied directly to the truss and move only to the right. 6 m B E F G hinge 6 m M L O 6 @ 6m 19.62 kN G 6.54 kN 2 m 1 m 13.08 kN
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