A small block of mass M is released from rest at the top of the curved frictionless ramp shown in the figure. The block slides down the ramp and is moving with a speed of 3.50 m/s when it collides with a larger block mass 1.5M at rest at the bottom of the incline. The larger block moves to the right with a speed of 2m/s immediately after the collision. Express your answer in height of the ramp (from which the small block was released) in terms of the given quantities and fundamental constants. 1.5M 6.125 (m²/s²) h= A h=6.125 g h=3.50 g 3.50 (m/s²) h =

Physics for Scientists and Engineers: Foundations and Connections
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Chapter11: Collisions
Section: Chapter Questions
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A small block of mass M is released from rest at the top of the curved frictionless ramp shown in the figure. The block slides down
the ramp and is moving with a speed of 3.50 m/s when it collides with a larger block mass 1.5M at rest at the bottom of the incline.
The larger block moves to the right with a speed of 2m/s immediately after the collision. Express your answer in height of the ramp
(from which the small block was released) in terms of the given quantities and fundamental constants.
...
1.5M|
6.125 (m²/s²)
h=
A
В
h=6.125 g
(c) h=3.50 g
3.50 (m/s²)
h=
D
Transcribed Image Text:A small block of mass M is released from rest at the top of the curved frictionless ramp shown in the figure. The block slides down the ramp and is moving with a speed of 3.50 m/s when it collides with a larger block mass 1.5M at rest at the bottom of the incline. The larger block moves to the right with a speed of 2m/s immediately after the collision. Express your answer in height of the ramp (from which the small block was released) in terms of the given quantities and fundamental constants. ... 1.5M| 6.125 (m²/s²) h= A В h=6.125 g (c) h=3.50 g 3.50 (m/s²) h= D
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