2. The block on the incline surface weighs 150 lb and the block on the horizontal surface weighs 100 lb. if the coefficient of friction between all the surfaces if 0.2 and the coefficient of friction between the rope and the pulley is 0.25, determine the minimum value of P that will cause motion to impend. 91 091 100 tb P
2. The block on the incline surface weighs 150 lb and the block on the horizontal surface weighs 100 lb. if the coefficient of friction between all the surfaces if 0.2 and the coefficient of friction between the rope and the pulley is 0.25, determine the minimum value of P that will cause motion to impend. 91 091 100 tb P
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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ASAP please
![2. The block on the incline surface weighs 150 lb and the
block on the horizontal surface weighs 100 lb. if the
coefficient of friction between all the surfaces if 0.2 and the
coefficient of friction between the rope and the pulley is
0.25, determine the minimum value of P that will cause
motion to impend..
P=
150 lb
60°
100 tb](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F624dcfab-19f1-4c4b-b3ec-94b9a5b18d08%2Fea08b1a9-ef69-49c3-b725-a4d9658a6c9f%2F1wuz6jw_processed.png&w=3840&q=75)
Transcribed Image Text:2. The block on the incline surface weighs 150 lb and the
block on the horizontal surface weighs 100 lb. if the
coefficient of friction between all the surfaces if 0.2 and the
coefficient of friction between the rope and the pulley is
0.25, determine the minimum value of P that will cause
motion to impend..
P=
150 lb
60°
100 tb
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