A force of P = 20 N is applied to the cable, which causes a 175 kg of radius of Gyration KG = 0.42m reel to turn without slipping on the 2 rollers A and B of each 18 kg and radius of 0.1m. 30° 250 mm OG 500 mm OB -400 mm- Calculate the work done by the 20N for 2 revolutions. (1) Determine the angular velocity of the reel after it has rotated 2 revolutions starting from rest. (rad/s) Calculate the Kinetic energy of roller A after the reel rotated 2 revolutions starting from rest. (1) Choose... 7.952 1.88 32.2 3.14 1.98 16.34 20 3.66 62.831 Choose... Choose... Choose... # 8:44 AM

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A force of P = 20 N is applied to the cable, which causes a 175 kg of radius of Gyration KG = 0.42m reel to turn
without slipping on the 2 rollers A and B of each 18 kg and radius of 0.1m.
P
30°
250 mm
OG
500 mm
AO
OB
-400 mm-
Calculate the work done by the 20N for 2 revolutions. (J)
Determine the angular velocity of the reel after it has rotated 2 revolutions starting from rest. (rad/s)
Calculate the Kinetic energy of roller A after the reel rotated 2 revolutions starting from rest. (J)
Choose...
7.952
1.88
32.2
3.14
1.98
16.34
20
3.66
62.831
Choose...
Choose...
Choose...
52
8:44 AM
MM
Transcribed Image Text:f cion A force of P = 20 N is applied to the cable, which causes a 175 kg of radius of Gyration KG = 0.42m reel to turn without slipping on the 2 rollers A and B of each 18 kg and radius of 0.1m. P 30° 250 mm OG 500 mm AO OB -400 mm- Calculate the work done by the 20N for 2 revolutions. (J) Determine the angular velocity of the reel after it has rotated 2 revolutions starting from rest. (rad/s) Calculate the Kinetic energy of roller A after the reel rotated 2 revolutions starting from rest. (J) Choose... 7.952 1.88 32.2 3.14 1.98 16.34 20 3.66 62.831 Choose... Choose... Choose... 52 8:44 AM MM
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