A plank 25 meters long is placed on rough inclined planes at an angle of 15°with the horizontal as shown in Figure 3. The angle of friction is Ø = 15° at both inclines. If the weight of the plank is W = 350 N concentrated at 12 meters from end A, compute the minimum distance x from B at which a load P = 75 N can be placed before slipping impends. W=350 N P=75 N 12 60° 13-x RA 300 15° P=15° 45° g=15° 30° 45° RB

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter7: Dry Friction
Section: Chapter Questions
Problem 7.50P: The block of weight W is pulled by the force P inclined at the angle to the horizontal. Find the...
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A plank 25 meters long is placed on rough inclined planes at an angle of 15°with the horizontal
as shown in Figure 3. The angle of friction is Ø = 15° at both inclines. If the weight of the plank is W
= 350 N concentrated at 12 meters from end A, compute the minimum distance x from B at which a
load P = 75 N can be placed before slipping impends.
II
W=350 N
P=75 N
12
60°
13-x
RA
15°
30
45°
Ø=15°
P-15°
30°
RB
Figure 3
Transcribed Image Text:A plank 25 meters long is placed on rough inclined planes at an angle of 15°with the horizontal as shown in Figure 3. The angle of friction is Ø = 15° at both inclines. If the weight of the plank is W = 350 N concentrated at 12 meters from end A, compute the minimum distance x from B at which a load P = 75 N can be placed before slipping impends. II W=350 N P=75 N 12 60° 13-x RA 15° 30 45° Ø=15° P-15° 30° RB Figure 3
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