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A girl slides down a snowy hill on an inflated tube sled where she collides with a boy who is stationary in another tube sled. After the collision the girl moves off at an angle θ1 = 10 degrees from her original direction of motion and the boy moves off at an angle θ2 = 40 degrees. The girl and her sled have half the mass of the boy and his sled. After the collision, what is the ratio of...
A girl slides down a snowy hill on an inflated tube sled where she collides with a boy who is stationary in another tube sled. After the collision the girl moves off at an angle θ1 = 20 degrees from her original direction of motion and the boy moves off at an angle θ2 = 20 degrees, as shown in the figure, at half the girl's final speed. What is the ratio of the girl's mass to the boy's mass?
Question 8 1 pts A girl slides down a snowy hill on an inflated tube sled where she collides with a boy who is stationary in another tube sled. After the collision the girl moves off at an angle 0,- 20 degrees from her original direction of motion and the boy moves off at an angle 0, -40 degrees, as shown in the figure, at half the girl's final speed. What is the ratio of the girl's mass to the...
show work please ! 1 PA O Question 8 A girl slides down a snowy hill on an inflated tube sled where she collides with a boy who is stationary in another tube sled. After the collision the girl moves off at an angle 67-20 degrees from her original direction of motion and the boy moves off at an angle 6-40 degrees as shown in the figure, at half the girl's final speed. What is the ratio of the girls...
A girl slides down a snowy hill on an inflated tube sled where she collides with a boy who is stationary in another tube sled. After the collision the girl moves off at an angle theta 1 =0.35 radians from her original direction of motion and the girl moves off at 1.5 times the boy’s final speed . The girl and her sled have half the mass of the boy and his sled. At what angle theta 2 radians does...