Spheres A (mass 0.020 kg), B (mass 0.030 kg), and C (mass 0.050 kg) are approaching the origin as they slide on the frictionless table. The initial velocities of A and B are given in the Figure 2. All three spheres arrived at the origin at the same time and stick together. (a) What must the x- and y- components of the initial velocity of C be if all three objects are to end up moving at 0.50 m/s in the +x-direction after the collision? (b) If C has the velocity found in part (a), what is the change in the kinetic energy of the system of three spheres as a result of the collision?

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Chapter6: Momentum And Collisions
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2. Spheres A (mass 0.020 kg), B (mass 0.030 kg), and C (mass 0.050 kg) are approaching the origin as they slide on the frictionless table. The initial velocities of A and B are given in the Figure 2. All three spheres arrived at the origin at the same time and stick together.
(a) What must the x- and y- components of the initial velocity of C be if all three objects are to end up moving at 0.50 m/s in the +x-direction after the collision?
(b) If C has the velocity found in part (a), what is the change in the kinetic energy of the system of three spheres as a result of the collision?

2. Spheres A (mass 0.020 kg), B (mass 0.030 kg), and C (mass 0.050 kg) are approaching the origin
as they slide on the frietionless table. The initial velocities of A and B are given in the Figure 2. All
three spheres arrived at the origin at the same time and stick together.
(a) What must the x- and y- components of the initial velocity of C be if all three objects are
to end up moving at 0.50 m/s in the +x-direction after the collision?
(b) If C has the velocity found in part (a), what is the change in the kinetic energy of the
system of three spheres as a result of the collision?
B
Uy = 0.50 m/s
VA = 1.50 m/s
C
Transcribed Image Text:2. Spheres A (mass 0.020 kg), B (mass 0.030 kg), and C (mass 0.050 kg) are approaching the origin as they slide on the frietionless table. The initial velocities of A and B are given in the Figure 2. All three spheres arrived at the origin at the same time and stick together. (a) What must the x- and y- components of the initial velocity of C be if all three objects are to end up moving at 0.50 m/s in the +x-direction after the collision? (b) If C has the velocity found in part (a), what is the change in the kinetic energy of the system of three spheres as a result of the collision? B Uy = 0.50 m/s VA = 1.50 m/s C
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