A refrigerator with wolght distribution of W, and Wiis acted on by a cable whose tennion is T Ib. The refrigerator is also subjected to a force, P th. The coefficient of static triction between the retrigerator and the floor is 0.25. Calculate: PIh

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W1- 160 Ib W2= 210 b P-110 b T-175 b
a = 40 deg
The minimum required frictional force for equilibrium.
ENTER
3 Mes remaining point possible
The normal force of the retrigerator.
Ib
ENTER
3 bes remaining d pontuN ponstle
The maximum frictional force.
Ib
ENTER
3 ies remaining 4pointu possible
The driving moment for tipping around point A
1h ft
ENTER
es remaing port possibie
The resistive moment to tipping around point A
tb ft
ENTER
anng cn es
The torce Tthat wi make the maimun trctional toce
ENTER
Transcribed Image Text:W1- 160 Ib W2= 210 b P-110 b T-175 b a = 40 deg The minimum required frictional force for equilibrium. ENTER 3 Mes remaining point possible The normal force of the retrigerator. Ib ENTER 3 bes remaining d pontuN ponstle The maximum frictional force. Ib ENTER 3 ies remaining 4pointu possible The driving moment for tipping around point A 1h ft ENTER es remaing port possibie The resistive moment to tipping around point A tb ft ENTER anng cn es The torce Tthat wi make the maimun trctional toce ENTER
A refrigerator with weight distribution of Wi and W: is acted on by a cable whose tension is T Ih. The refrigerator is also subjected to a force, P th. The coefficient of static
triction between the retrigerator and the floor is 0.25. Calculate:
25
25
Ph
Transcribed Image Text:A refrigerator with weight distribution of Wi and W: is acted on by a cable whose tension is T Ih. The refrigerator is also subjected to a force, P th. The coefficient of static triction between the retrigerator and the floor is 0.25. Calculate: 25 25 Ph
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