4-32. For the structure shown, draw free-body diagrams for both the beam ABC and the link BD. The members are weight- less. A 45°

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4-32. For the structure shown, draw free-body diagrams for
both the beam ABC and the link BD. The members are weight-
4-34. For the pin-connected frame shown, sketch a free-body
diagram of (a) the entire frame, (b) the member AC, and (c) the
member DF. Neglect the weight of the members.
less.
F.
45°
Cable
Problem 4-32
A
D
4-33. A 1200 Ib load is supported by a cable that runs over a
small pulley at E and is anchored to a bar DA, as shown. Sketch
free-body diagrams of bars EB and DA and of the pulley. The bars
are pin connected at each end. Neglect the weights of the mem-
bers and the pulley.
Problem 4-34
4-5. A weight Wis supported by a flexible cable and an inclined
bar, as shown. The bar is pin connected at a vertical wall. Sketch
the free-body diagram for the bar.
Cable
Cable
60°
12
Wall
1200 lb
C
30°
W
8'
Bar
- 12
8
Pin
Problem 4-33
Problem 4-5
Transcribed Image Text:4-32. For the structure shown, draw free-body diagrams for both the beam ABC and the link BD. The members are weight- 4-34. For the pin-connected frame shown, sketch a free-body diagram of (a) the entire frame, (b) the member AC, and (c) the member DF. Neglect the weight of the members. less. F. 45° Cable Problem 4-32 A D 4-33. A 1200 Ib load is supported by a cable that runs over a small pulley at E and is anchored to a bar DA, as shown. Sketch free-body diagrams of bars EB and DA and of the pulley. The bars are pin connected at each end. Neglect the weights of the mem- bers and the pulley. Problem 4-34 4-5. A weight Wis supported by a flexible cable and an inclined bar, as shown. The bar is pin connected at a vertical wall. Sketch the free-body diagram for the bar. Cable Cable 60° 12 Wall 1200 lb C 30° W 8' Bar - 12 8 Pin Problem 4-33 Problem 4-5
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