mi A cart of mass m₁ = 10 kg slides down a frictionless ramp and is made to collide with a second cart of mass m2 of radius 0.31 m as shown in Figure P7.66. = 23 kg which then heads into a vertical loop h (a) Determine the minimum height h at which cart #1 would need to start from to make sure that cart #2 completes the loop without leaving the track. Assume an elastic collision. | Submit Answer Incorrect. Tries 1/10 Previous Tries (b) Find the height needed if instead the more massive cart is allowed to slide down the ramp into the smaller cart. Submit Answer Tries 0/10 m2 XX Brooks/Cole, Cengage Learning r

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mi
A cart of mass m₁ = 10 kg slides down a frictionless ramp and is made to collide with a second cart of mass m2
of radius 0.31 m as shown in Figure P7.66.
=
23 kg which then heads into a vertical loop
h
(a) Determine the minimum height h at which cart #1 would need to start from to make sure that cart #2 completes the loop without leaving the track.
Assume an elastic collision.
|
Submit Answer Incorrect. Tries 1/10 Previous Tries
(b) Find the height needed if instead the more massive cart is allowed to slide down the ramp into the smaller cart.
Submit Answer Tries 0/10
m2
XX
Brooks/Cole, Cengage Learning
r
Transcribed Image Text:mi A cart of mass m₁ = 10 kg slides down a frictionless ramp and is made to collide with a second cart of mass m2 of radius 0.31 m as shown in Figure P7.66. = 23 kg which then heads into a vertical loop h (a) Determine the minimum height h at which cart #1 would need to start from to make sure that cart #2 completes the loop without leaving the track. Assume an elastic collision. | Submit Answer Incorrect. Tries 1/10 Previous Tries (b) Find the height needed if instead the more massive cart is allowed to slide down the ramp into the smaller cart. Submit Answer Tries 0/10 m2 XX Brooks/Cole, Cengage Learning r
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