In , the man has a mass of 65 kg and the crate has a mass of 110 kg. The coefficient of static friction between his shoes and the ground is μs = 0.4 and between the crate and the ground is μc = 0.3. A) Determine if the man is able to move the crate using the rope-and-pulley system shown. B) Prove your answer to part A by calculating the static frictional force F�between the man's shoes and the ground required to move the crate and the maximum static frictional force Fmax which can be developed. Express your answers in newtons to three significant figures

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In , the man has a mass of 65 kg and the crate has a mass of 110 kg. The coefficient of static friction between his shoes and the ground is μs = 0.4 and between the crate and the ground is μc = 0.3. 

A) Determine if the man is able to move the crate using the rope-and-pulley system shown. 

B) Prove your answer to part A by calculating the static frictional force F�between the man's shoes and the ground required to move the crate and the maximum static frictional force Fmax which can be developed. Express your answers in newtons to three significant figures separated by a com_ma.

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A man pulling a crate using a rope passing through a pul
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Transcribed Image Text:Sioudy FB C S10 C # 3 E F3 4 A F V F4 30° % 40 FS 5 T G 8 Q Search 4-FG 6 Y H N & 7 F7 U 71 J 144 FB * 8 M H F9 19 45° 0 FIO L 0 P A man pulling a crate using a rope passing through a pul F12 + DELETE BACKSPACE 1 PAUSE NU LO ENTER
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