A blue puck with a mass of 4.50×10-2 kg, sliding with a velocity of 0.230 m/s North on a frictionless, horizontal air table, makes a perfectly elastic, head-on collision with a red puck with mass m, initially at rest. After the collision, the velocity of the blue puck is 5.0×10-2 m/s North. ▼ Y Part A Find the momentum of the red puck after the collision. Give the horizontal component with North positive. Give the horizontal component of momentum with North positive. 15| ΑΣΦ Submit Part B Request Answer Find the kinetic energy of the red puck after the collision. |¯| ΑΣΦ Submit ? Request Answer ? kg-m/s

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Chapter1: Units, Trigonometry. And Vectors
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A blue puck with a mass of 4.50×10-2 kg. sliding with a velocity of 0.230 m/s North on a frictionless, horizontal air table, makes a
perfectly elastic, head-on collision with a red puck with mass m, initially at rest. After the collision, the velocity of the blue puck is
5.0×10-2 m/s North.
▼
▼
Part A
Find the momentum of the red puck after the collision. Give the horizontal component with North positive.
Give the horizontal component of momentum with North positive.
ΨΕΙ ΑΣΦ
Submit
Part B
Request Answer
Find the kinetic energy of the red puck after the collision.
|路| ΑΣΦ
Submit
?
Request Answer
?
kg-m/s
Transcribed Image Text:A blue puck with a mass of 4.50×10-2 kg. sliding with a velocity of 0.230 m/s North on a frictionless, horizontal air table, makes a perfectly elastic, head-on collision with a red puck with mass m, initially at rest. After the collision, the velocity of the blue puck is 5.0×10-2 m/s North. ▼ ▼ Part A Find the momentum of the red puck after the collision. Give the horizontal component with North positive. Give the horizontal component of momentum with North positive. ΨΕΙ ΑΣΦ Submit Part B Request Answer Find the kinetic energy of the red puck after the collision. |路| ΑΣΦ Submit ? Request Answer ? kg-m/s
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