The figure shows a two-ended "rocket" that is initially stationary on a frictionless floor, with its center at the origin of an x axis. The rocket consists of a central block C (of mass M = 6.20 kg) and blocks L and R (each of mass m = 1.10 kg) on the left and right sides. Smal explosions can shoot either of the side blocks away from block C and along the x axis. Here is the sequence: (1) At time t = 0, block Lis shot to the left with a speed of 3.30 m/s relative to the velocity that the explosion gives the rest of the rocket. (2) Next, at time t = 0.90 s, block R is shot to the right with a speed of 3.30 m/s relative to the velocity that block C then has (after the second explosion). At t = 3.20 s, what are (a) the velocity of block C (including sign) and (b) the position of its center? R
The figure shows a two-ended "rocket" that is initially stationary on a frictionless floor, with its center at the origin of an x axis. The rocket consists of a central block C (of mass M = 6.20 kg) and blocks L and R (each of mass m = 1.10 kg) on the left and right sides. Smal explosions can shoot either of the side blocks away from block C and along the x axis. Here is the sequence: (1) At time t = 0, block Lis shot to the left with a speed of 3.30 m/s relative to the velocity that the explosion gives the rest of the rocket. (2) Next, at time t = 0.90 s, block R is shot to the right with a speed of 3.30 m/s relative to the velocity that block C then has (after the second explosion). At t = 3.20 s, what are (a) the velocity of block C (including sign) and (b) the position of its center? R
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![The figure shows a two-ended "rocket" that is initially stationary on a frictionless floor, with its center at the origin of an x axis. The
rocket consists of a central block C (of mass M = 6.20 kg) and blocks L and R (each of mass m = 1.10 kg) on the left and right sides. Small
explosions can shoot either of the side blocks away from block C and along the x axis. Here is the sequence: (1) At time t = 0, block L is
shot to the left with a speed of 3.30 m/s relative to the velocity that the explosion gives the rest of the rocket. (2) Next, at time t = 0.90
s, block R is shot to the right with a speed of 3.30 m/s relative to the velocity that block C then has (after the second explosion). At
t = 3.20 s, what are (a) the velocity of block C (including sign) and (b) the position of its center?
(a) Number
(b) Number
i
Units
Units
R](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F21bd61f1-8a8b-4353-ba04-269d651a68d8%2Fcc43fadc-a393-4911-9b6f-24b9fb224b4b%2Ftx8pj5i_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The figure shows a two-ended "rocket" that is initially stationary on a frictionless floor, with its center at the origin of an x axis. The
rocket consists of a central block C (of mass M = 6.20 kg) and blocks L and R (each of mass m = 1.10 kg) on the left and right sides. Small
explosions can shoot either of the side blocks away from block C and along the x axis. Here is the sequence: (1) At time t = 0, block L is
shot to the left with a speed of 3.30 m/s relative to the velocity that the explosion gives the rest of the rocket. (2) Next, at time t = 0.90
s, block R is shot to the right with a speed of 3.30 m/s relative to the velocity that block C then has (after the second explosion). At
t = 3.20 s, what are (a) the velocity of block C (including sign) and (b) the position of its center?
(a) Number
(b) Number
i
Units
Units
R
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