6) A block of mass m, = 1.60 kg initially moving to the right with a speed vị; =4.00i m/s V2; =-2.50i m/s of 4.00 m/s on a frictionless, horizontal track collides with a light spring attached to a second block of mass m2 = 2.10 kg initially moving to the left with a speed of 2.50 m/s. The spring constant is 600 N/m. Find the velocities of the two blocks after the collision.

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Chapter9: Linear Momentum And Collisions
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6) A block of mass m = 1.60 kg initially moving to the right with a speed
of 4.00 m/s on a frictionless, horizontal track collides with a light spring
V, =4.00i m/s
V2; =-2.50i m/s
attached to a second block of mass m2 = 2.10 kg initially moving to the
m
left with a speed of 2.50 m/s. The spring constant is 600 N/m. Find the
velocities of the two blocks after the collision.
Transcribed Image Text:6) A block of mass m = 1.60 kg initially moving to the right with a speed of 4.00 m/s on a frictionless, horizontal track collides with a light spring V, =4.00i m/s V2; =-2.50i m/s attached to a second block of mass m2 = 2.10 kg initially moving to the m left with a speed of 2.50 m/s. The spring constant is 600 N/m. Find the velocities of the two blocks after the collision.
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