Ball Figure 10 Figure 10 shows a ball of nass 0.5 kg tied to a string 0.5m long and whirled in a vertical circle at a constant spced, V. 43. When the string breaks the ball will Continue to describe a circular path Describe a parabola Fall vertically downwards. Move downwards with an increasingly horizontal speed. Move tangential to the circular path. A. В. C. D. E. At which of the points in figure 10 is the tension likely to be maximum. C) ) 44. A) I B) 2 D) 4 E) s 45. The teasion at point 3 in newtons is- A) 10S B) 100 C) 95 D) 120 E) 110 Il v = 10 m s"

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter4: Motion In Two Dimensions
Section: Chapter Questions
Problem 24P: A ball swings counterclockwise in a vertical circle at the end of a rope 1.50 m long. When the ball...
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Answer Q43, 44 & 45, explaining detailly each step of your answer

Ball
Figure 10
Figure 10 shows a ball of niass 0.5 kg tied to a string 0.Sm long and whirled in a vertical circle at a constant spced,
43.
When the string breaks the ball will
Continue to describe a circular path
Describe a parabola
Fall vertically downwards.
Move downwards with an increasingly horizontal speed.
Move tangential to the circular path.
A.
В.
C.
D.
E.
At which of the points in figure 10 is the tension likely to be maxımum.
C) 3
44.
A)
B)
D) 4 E)5
2
45.
The tension at point 3 in newtons is
A)
105
B)
100
C)
95
D)
120
E)
110
Il v = 10 m s"
Transcribed Image Text:Ball Figure 10 Figure 10 shows a ball of niass 0.5 kg tied to a string 0.Sm long and whirled in a vertical circle at a constant spced, 43. When the string breaks the ball will Continue to describe a circular path Describe a parabola Fall vertically downwards. Move downwards with an increasingly horizontal speed. Move tangential to the circular path. A. В. C. D. E. At which of the points in figure 10 is the tension likely to be maxımum. C) 3 44. A) B) D) 4 E)5 2 45. The tension at point 3 in newtons is A) 105 B) 100 C) 95 D) 120 E) 110 Il v = 10 m s"
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