Each of the systems shown is initially at rest. Neglect axle friction and the mass of each pulley. 100 Ib 100 lb 2100 lb A 200 lb 200 lb 2200 lb (1) (2) (3) termine the velocity of block A for each system after it has moved through 26 ft. u must provide an answer before moving on to the next part.) e velocity of block A for system (1) is [ e velocity of block A for system (2) is e velocity of block A for system (3) is | | ft/s. | ft/s. | ft/s.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part.
Each of the systems shown is initially at rest. Neglect axle friction and the mass of each pulley.
100 Ib
100 lb
A
2100 lb
A
200 lb
200 lb
2200 lb
(1)
(3)
Determine the velocity of block A for each system after it has moved through 26 ft.
(You must provide an answer before moving on to the next part.)
The velocity of block A for system (1) is
The velocity of block A for system (2) is
The velocity of block A for system (3) is
| ft/s.
|ft/s.
ft/s.
Transcribed Image Text:Required information NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. Each of the systems shown is initially at rest. Neglect axle friction and the mass of each pulley. 100 Ib 100 lb A 2100 lb A 200 lb 200 lb 2200 lb (1) (3) Determine the velocity of block A for each system after it has moved through 26 ft. (You must provide an answer before moving on to the next part.) The velocity of block A for system (1) is The velocity of block A for system (2) is The velocity of block A for system (3) is | ft/s. |ft/s. ft/s.
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