(III) A uniform rod AB of length 5.0 m and mass M = 3.8 kg is hinged at A and held in equilibrium by a light cord, as shown in Fig. 9–67. A load W = 22 N hangs from the rod at a distance d so that the tension in the cord is 85 N. (a) Draw a free-body diagram for the rod. (b) Determine the vertical and horizontal forces on the rod exerted by the hinge. (c) Determine d from the appropriate torque equation. !37° B 53° -d→ FIGURE 9-67 A Problem 27. W = 22 N Cord

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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(III) A uniform rod AB of length 5.0 m and mass M = 3.8 kg
is hinged at A and held in equilibrium by a light cord, as
shown in Fig. 9–67. A load W = 22 N hangs from the rod
at a distance d so that the tension in the cord is 85 N.
(a) Draw a free-body diagram for the rod. (b) Determine
the vertical and horizontal forces on the rod
exerted by the hinge. (c) Determine d from
the appropriate torque equation.
!37°
B
53°
-d→
FIGURE 9-67
A
Problem 27.
W = 22 N
Cord
Transcribed Image Text:(III) A uniform rod AB of length 5.0 m and mass M = 3.8 kg is hinged at A and held in equilibrium by a light cord, as shown in Fig. 9–67. A load W = 22 N hangs from the rod at a distance d so that the tension in the cord is 85 N. (a) Draw a free-body diagram for the rod. (b) Determine the vertical and horizontal forces on the rod exerted by the hinge. (c) Determine d from the appropriate torque equation. !37° B 53° -d→ FIGURE 9-67 A Problem 27. W = 22 N Cord
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