A ball with a mass of 0.8 kg is attached to the end of a 2 m long cable and rotated in a circular orbit in the horizontal plane. If the maximum velocity the ball will have before the cable breaks is 12 m/s, what is the maximum tensile force the cable can withstand, in N? A) 42,5 B) 63,1 C) 57,6 D) 25,4 E) 36,2

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A ball with a mass of 0.8 kg is attached to the end of a 2 m long cable and rotated in a circular orbit in the horizontal plane. If the maximum velocity the ball will have before the cable breaks is 12 m/s, what is the maximum tensile force the cable can withstand, in N?

A)

42,5

B)

63,1

C)

57,6

D)

25,4

E)

36,2

Expert Solution
Step 1

Given that :- 

Mass of the ball (m) = 0.8 kg

Length of the cable (L) = 2 m 

Maximum velocity of ball (V) = 12 m/s 

  • Cable is being rotated in a circular orbit in the horizontal planeplane

To Find:- Maximum tensile force (T) which the cable can withstand, in N

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