Final answer:
To find the velocity of the skateboard after the jump, we can use the principle of conservation of momentum. The total momentum before the jump is equal to the total momentum after the jump. Before the jump, the skateboarder has a mass of 63 kg and a velocity of 10 m/s. The skateboard has a mass of 12 kg and is stationary, so its velocity is 0 m/s. Using the equation for conservation of momentum, we find that the velocity of the skateboard after the jump is approximately 8.25 m/s.
Step-by-step explanation:
To find the velocity of the skateboard after the jump, we can use the principle of conservation of momentum. The total momentum before the jump is equal to the total momentum after the jump.
Before the jump, the skateboarder has a mass of 63 kg and a velocity of 10 m/s. The skateboard has a mass of 12 kg and is stationary, so its velocity is 0 m/s.
Using the equation for conservation of momentum, we can calculate the velocity of the skateboard after the jump:
Total momentum before the jump = Total momentum after the jump
(63 kg)(10 m/s) + (12 kg)(0 m/s) = (63 kg + 12 kg)(v)
Simplifying this equation, we find that the velocity of the skateboard after the jump is approximately 8.25 m/s.