2. A rope is tied to a weight at A. The rope passes over two frictionless pulleys B and E. The other end of the rope is fixed to a rigid wall at F. A second weight is suspended from the axle of a third frictionless pulley, which is allowed to run along the rope between B and E. Assuming the system is in a state of static equilibrium calculate: a) B A=20kg Va The tension in the rope. D=10kg Figure Q2.1 E F TI ܠܥܠ

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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2.
A rope is tied to a weight at A. The rope passes over two frictionless
pulleys B and E. The other end of the rope is fixed to a rigid wall at F.
A second weight is suspended from the axle of a third frictionless pulley,
which is allowed to run along the rope between B and E. Assuming the
system is in a state of static equilibrium calculate:
a)
B
A=20kg
C
The tension in the rope.
gº
D=10kg
Figure Q2.1
E
F
!!!!
Transcribed Image Text:2. A rope is tied to a weight at A. The rope passes over two frictionless pulleys B and E. The other end of the rope is fixed to a rigid wall at F. A second weight is suspended from the axle of a third frictionless pulley, which is allowed to run along the rope between B and E. Assuming the system is in a state of static equilibrium calculate: a) B A=20kg C The tension in the rope. gº D=10kg Figure Q2.1 E F !!!!
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