8-105. A 10-kg cylinder D, which is attached to a small pulley B, is placed on the cord as shown. Determine the largest angles so that the cord does not slip over the peg at C. The cylinder at E also has a mass of 10 kg, and the coefficient of static friction between the cord and the peg is µ = 0.1. PROB. 8-105 A 0 B D 0 E
8-105. A 10-kg cylinder D, which is attached to a small pulley B, is placed on the cord as shown. Determine the largest angles so that the cord does not slip over the peg at C. The cylinder at E also has a mass of 10 kg, and the coefficient of static friction between the cord and the peg is µ = 0.1. PROB. 8-105 A 0 B D 0 E
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![8-105. A 10-kg cylinder D, which is attached to a small pulley B, is placed
on the cord as shown. Determine the largest angles so that the cord does
not slip over the peg at C. The cylinder at E also has a mass of 10 kg, and the
coefficient of static friction between the cord and the peg is μ = 0.1.
PROB. 8-105
A
0
B
D
0
E](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fec5fb306-23dc-410e-b11b-a666d9f99392%2F463da58a-a2bb-49d0-9e67-4c0b730659a5%2Fqb7vb99_processed.jpeg&w=3840&q=75)
Transcribed Image Text:8-105. A 10-kg cylinder D, which is attached to a small pulley B, is placed
on the cord as shown. Determine the largest angles so that the cord does
not slip over the peg at C. The cylinder at E also has a mass of 10 kg, and the
coefficient of static friction between the cord and the peg is μ = 0.1.
PROB. 8-105
A
0
B
D
0
E
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