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The total momentum of both gliders after a perfectly elastic collision will be the same as before the collision. This is according to the law of conservation of momentum, which states that the total momentum of a closed system before a collision is equal to the total momentum after the collision.

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1y ago

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Glider 1 starts with a mass of 2.4 kg and a velocity of 3.0 ms. What is Glider 1's starting momentum?

The momentum of Glider 1 can be calculated using the formula: momentum = mass x velocity. Plugging in the values, we have momentum = 2.4 kg x 3.0 m/s = 7.2 kgm/s. Therefore, Glider 1's starting momentum is 7.2 kgm/s.


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Related Questions

Glider 1 starts with a mass of 2.4 kg and a velocity of 3.0 ms. What is Glider 1's starting momentum?

The momentum of Glider 1 can be calculated using the formula: momentum = mass x velocity. Plugging in the values, we have momentum = 2.4 kg x 3.0 m/s = 7.2 kgm/s. Therefore, Glider 1's starting momentum is 7.2 kgm/s.


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Glider 1 starts with a mass of 2.4 kg and a velocity of 3.0 ms. What is Glider 1's starting momentum 2.4 kg and bullms 5.4 kg and bullms 7.2 kg and bullms 10.8 kg and bullms?

To calculate Glider 1's starting momentum, we use the formula: momentum (p) = mass (m) × velocity (v). For Glider 1, with a mass of 2.4 kg and a velocity of 3.0 m/s, the momentum is p = 2.4 kg × 3.0 m/s = 7.2 kg·m/s. The additional masses mentioned (5.4 kg, 7.2 kg, and 10.8 kg) do not relate to Glider 1's momentum calculation.


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