A stone is thrown at 60.0° above horizontal by Tom on top of a tree 5.00 m beyond ground level. The stone then hits Jerry who is standing on the smooth ground after 2.50 s. Given that the mass of Jerry is 5.00 kg. Assume that the height of Jerry is not significant. (i) Find the horizontal distance between Tom and Jerry. (ii) Calculate the final speed of the stone just before it hits Jerry. Assume that the collision of the stone with Jerry is inelastic. If the (ii) mass of the stone is 200 g, find the common speed of motion of both the stone and Jerry after the collision.

University Physics Volume 1
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ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter9: Linear Momentum And Collisions
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please help with ciii) the answer is 0.229 m/s 

A stone is thrown at 60.0° above horizontal by Tom on top of a tree 5.00 m
(c)
beyond ground level. The stone then hits Jerry who is standing on the smooth
ground after 2.50 s. Given that the mass of Jerry is 5.00 kg. Assume that the
height of Jerry is not significant.
(1)
Find the horizontal distance between Tom and Jerry.
(ii)
Calculate the final speed of the stone just before it hits Jerry.
(iii) Assume that the collision of the stone with Jerry is inelastic. If the
mass of the stone is 200 g, find the common speed of motion of both
the stone and Jerry after the collision.
Transcribed Image Text:A stone is thrown at 60.0° above horizontal by Tom on top of a tree 5.00 m (c) beyond ground level. The stone then hits Jerry who is standing on the smooth ground after 2.50 s. Given that the mass of Jerry is 5.00 kg. Assume that the height of Jerry is not significant. (1) Find the horizontal distance between Tom and Jerry. (ii) Calculate the final speed of the stone just before it hits Jerry. (iii) Assume that the collision of the stone with Jerry is inelastic. If the mass of the stone is 200 g, find the common speed of motion of both the stone and Jerry after the collision.
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