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Question 11 (1 point) Rank the following in terms of greatest momentum to least. 1. A 5000 kg car in the parking lot 2. A 40 kg person jogging at 6m/s A 50 kg table being pushed at 2m/s 4.A 2 kg rabbit sprinting at 15m/s Question 12 (1 point) Impulse is defined as the force exerted on an object over a given distance. True False

Problemas

Question 11 (1 point)
Rank the following in terms of greatest momentum to least.
1. A 5000 kg car in the parking lot
2. A 40 kg person jogging at 6m/s
A 50 kg table being pushed at 2m/s
4.A 2 kg rabbit sprinting at 15m/s
Question 12 (1 point)
Impulse is defined as the force exerted on an object over
a given distance.
True
False

Question 11 (1 point) Rank the following in terms of greatest momentum to least. 1. A 5000 kg car in the parking lot 2. A 40 kg person jogging at 6m/s A 50 kg table being pushed at 2m/s 4.A 2 kg rabbit sprinting at 15m/s Question 12 (1 point) Impulse is defined as the force exerted on an object over a given distance. True False

Solución

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Carlosélite · Tutor durante 8 años
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4.0 (262 votos)

Responder

11. 1. A 5000 kg car in the parking lot<br />2. A 50 kg table being pushed at 2 m/s<br />3. A 40 kg person jogging at 6 m/s<br />4. A 2 kg rabbit sprinting at 15 m/s<br />12. False

Explicar

## Step1<br />For question 11, we need to calculate the momentum of each object. The formula for momentum is:<br />### \(p = m \times v\)<br />where \(p\) is momentum, \(m\) is mass, and \(v\) is velocity.<br /><br />## Step2<br />Calculate the momentum for each object:<br />1. A 5000 kg car in the parking lot: \(p = 5000 \times 0 = 0\)<br />2. A 40 kg person jogging at 6 m/s: \(p = 40 \times 6 = 240\)<br />3. A 50 kg table being pushed at 2 m/s: \(p = 50 \times 2 = 100\)<br />4. A 2 kg rabbit sprinting at 15 m/s: \(p = 2 \times 15 = 30\)<br /><br />## Step3<br />For question 12, we need to understand the definition of impulse. Impulse is defined as the change in momentum of an object when a force is applied over a given distance. It is not the force exerted on an object over a given distance.
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