Two shuffleboard disks of equal mass, one orange and the other green, are involved in a perfectly elastic glancing collision. The green disk is initially at rest and is struck by the orange disk moving initially to the right at v₁ = 3.25 m/s as in Figure a, shown below. After the collision, the orange disk moves in a direction that makes an angle of 0 = 38.0° with the horizontal axis while the green disk makes an angle of = 52.0° with this axis as in Figure b. Determine the speed of each disk after the collision. Vof= gf= m/s m/s Submit Answer Before the collision a b After the collision Ꮎ of -x ම

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Two shuffleboard disks of equal mass, one orange and the other green, are involved in a perfectly elastic glancing collision. The
green disk is initially at rest and is struck by the orange disk moving initially to the right at v₁ = 3.25 m/s as in Figure a, shown
below. After the collision, the orange disk moves in a direction that makes an angle of 0 = 38.0° with the horizontal axis while the
green disk makes an angle of = 52.0° with this axis as in Figure b. Determine the speed of each disk after the collision.
Vof=
gf=
m/s
m/s
Submit Answer
Before the collision
a
b
After the collision
Ꮎ
of
-x
ම
Transcribed Image Text:Two shuffleboard disks of equal mass, one orange and the other green, are involved in a perfectly elastic glancing collision. The green disk is initially at rest and is struck by the orange disk moving initially to the right at v₁ = 3.25 m/s as in Figure a, shown below. After the collision, the orange disk moves in a direction that makes an angle of 0 = 38.0° with the horizontal axis while the green disk makes an angle of = 52.0° with this axis as in Figure b. Determine the speed of each disk after the collision. Vof= gf= m/s m/s Submit Answer Before the collision a b After the collision Ꮎ of -x ම
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