Q.3) The coefficient of friction between the 100 lb block (shown in figure below) and the incline plane is 0.25 and that between the cord and cylindrical support is 0.3. Determine the range of cylinder weight W for which the system shown below will be in equilibrium. 0 μ= 0.25 100 lb D 25° Search DOLL Σ O μ = 0.3 W ENG 6:31 PM 6/27/2024

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Q.3) The coefficient of friction between the 100 lb block (shown in figure below) and
the incline plane is 0.25 and that between the cord and cylindrical support is
0.3. Determine the range of cylinder weight W for which the system shown
below will be in equilibrium.
0
μ= 0.25
100 lb
D
25°
Search
DOLL
Σ
O
μ = 0.3
W
ENG
6:31 PM
6/27/2024
Transcribed Image Text:Q.3) The coefficient of friction between the 100 lb block (shown in figure below) and the incline plane is 0.25 and that between the cord and cylindrical support is 0.3. Determine the range of cylinder weight W for which the system shown below will be in equilibrium. 0 μ= 0.25 100 lb D 25° Search DOLL Σ O μ = 0.3 W ENG 6:31 PM 6/27/2024
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