2. Block 1 and block 2, with masses m1 = 5 kg and m2 = 2 kg, are connected by a system of massless, inextensible ropes and massless pulleys as shown in Fig. 2. (a) Draw the complete free body force diagram of Ceiling the system. (b) Solve for the accelerations of block 2 and block 1. Assume that downward direction is positive. m, (c) Calculate the tensions in each rope. "B m2 Rope attached to the Floor N Floor Fig. 2
2. Block 1 and block 2, with masses m1 = 5 kg and m2 = 2 kg, are connected by a system of massless, inextensible ropes and massless pulleys as shown in Fig. 2. (a) Draw the complete free body force diagram of Ceiling the system. (b) Solve for the accelerations of block 2 and block 1. Assume that downward direction is positive. m, (c) Calculate the tensions in each rope. "B m2 Rope attached to the Floor N Floor Fig. 2
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![2. Block 1 and block 2, with masses mị = 5 kg and m2 = 2 kg, are connected by a system of
massless, inextensible ropes and massless pulleys as shown in Fig. 2.
(a)
Draw the complete free body force diagram of
Ceiling
the system.
(b)
Solve for the accelerations of block 2 and block
1. Assume that downward direction is positive.
m,
(c)
Calculate the tensions in each rope.
m2
Rope attached
to the Floor
Floor
Fig. 2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5362e46b-6099-4fb4-af22-d76445a48458%2Ffa6f4f0e-bac3-4b71-909c-055c6f83fde1%2F8kcaxg9_processed.png&w=3840&q=75)
Transcribed Image Text:2. Block 1 and block 2, with masses mị = 5 kg and m2 = 2 kg, are connected by a system of
massless, inextensible ropes and massless pulleys as shown in Fig. 2.
(a)
Draw the complete free body force diagram of
Ceiling
the system.
(b)
Solve for the accelerations of block 2 and block
1. Assume that downward direction is positive.
m,
(c)
Calculate the tensions in each rope.
m2
Rope attached
to the Floor
Floor
Fig. 2
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