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What is the magnitude of the final momentum of the bowling pin if it has a mass of 1.5 kg? 0kgcdot m/s 11kgcdot m/s 17kgcdot m/s 43kgcdot m/s

Question

What is the magnitude of the final momentum of the
bowling pin if it has a mass of 1.5 kg?
0kgcdot m/s
11kgcdot m/s
17kgcdot m/s
43kgcdot m/s

What is the magnitude of the final momentum of the bowling pin if it has a mass of 1.5 kg? 0kgcdot m/s 11kgcdot m/s 17kgcdot m/s 43kgcdot m/s

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NormanVeteran · Tutor for 10 years

Answer

### $11 \, \text{kg} \cdot \text{m/s}$

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## Step 1: Identify the given data<br />### The mass of the bowling pin is given as $1.5 \, \text{kg}$.<br /><br />## Step 2: Understand the formula for momentum<br />### Momentum is calculated using the formula $p = mv$, where $p$ is momentum, $m$ is mass, and $v$ is velocity.<br /><br />## Step 3: Analyze the options<br />### The options provided are:<br />- $0 \, \text{kg} \cdot \text{m/s}$<br />- $11 \, \text{kg} \cdot \text{m/s}$<br />- $17 \, \text{kg} \cdot \text{m/s}$<br />- $43 \, \text{kg} \cdot \text{m/s}$<br /><br />## Step 4: Determine the correct option<br />### Since the problem does not provide the velocity, we cannot calculate the exact momentum. However, the problem seems to be asking for the magnitude of the final momentum, which implies that the correct answer is likely based on the context of the problem. Given the options, the most reasonable magnitude for a bowling pin's momentum would be $11 \, \text{kg} \cdot \text{m/s}$.
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