Answer the following question part a and part A) The 4 kg disk shown in Figure Q1 is initially at rest. A force of F = 50 N is applied to the thin, inextensible cable wrapped round the disk diameter d = 156 mm. Calculate the work done on the disk after it has turned through 8.8 revolutions. [Answer in J] 30 Q1 b) Assuming that the 8 kg disk in previous part is initially at rest and a force of F = 67 N is applied to the thin, inextensible cable wrapped round the disk diameter d = 177 mm. Find the angular velocity of the disk after it has turned through 8.1 revolutions. [Answer in rad / s]

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Answer the following question part a and part b
A) The 4 kg disk shown in Figure Q1 is initially at rest. A force of F = 50 N is applied to the
thin, inextensible cable wrapped round the disk diameter d = 156 mm. Calculate the work
done on the disk after it has turned through 8.8 revolutions. [Answer in J]
30
Q1
b) Assuming that the 8 kg disk in previous part is initially at rest and a force of F = 67 N is
applied to the thin, inextensible cable wrapped round the disk diameter d = 177 mm. Find the
angular velocity of the disk after it has turned through 8.1 revolutions. [Answer in rad / s]
Transcribed Image Text:Answer the following question part a and part b A) The 4 kg disk shown in Figure Q1 is initially at rest. A force of F = 50 N is applied to the thin, inextensible cable wrapped round the disk diameter d = 156 mm. Calculate the work done on the disk after it has turned through 8.8 revolutions. [Answer in J] 30 Q1 b) Assuming that the 8 kg disk in previous part is initially at rest and a force of F = 67 N is applied to the thin, inextensible cable wrapped round the disk diameter d = 177 mm. Find the angular velocity of the disk after it has turned through 8.1 revolutions. [Answer in rad / s]
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