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Answer :
To find the mass of the bicycle, we can use the formula for momentum:
[tex]\[ \text{momentum} = \text{mass} \times \text{velocity} \][/tex]
In this problem, we are given that the momentum is [tex]\(36 \, \text{kg} \cdot \text{m/s}\)[/tex] and the velocity is [tex]\(4 \, \text{m/s}\)[/tex]. We need to find the mass of the bicycle.
1. Start with the momentum formula:
[tex]\[ 36 = \text{mass} \times 4 \][/tex]
2. To solve for mass, divide both sides of the equation by 4:
[tex]\[ \text{mass} = \frac{36}{4} \][/tex]
3. Calculate the division:
[tex]\[ \text{mass} = 9 \][/tex]
So, the mass of the bicycle is [tex]\(9 \, \text{kg}\)[/tex]. Therefore, the correct answer is [tex]\(9 \, \text{kg}\)[/tex].
[tex]\[ \text{momentum} = \text{mass} \times \text{velocity} \][/tex]
In this problem, we are given that the momentum is [tex]\(36 \, \text{kg} \cdot \text{m/s}\)[/tex] and the velocity is [tex]\(4 \, \text{m/s}\)[/tex]. We need to find the mass of the bicycle.
1. Start with the momentum formula:
[tex]\[ 36 = \text{mass} \times 4 \][/tex]
2. To solve for mass, divide both sides of the equation by 4:
[tex]\[ \text{mass} = \frac{36}{4} \][/tex]
3. Calculate the division:
[tex]\[ \text{mass} = 9 \][/tex]
So, the mass of the bicycle is [tex]\(9 \, \text{kg}\)[/tex]. Therefore, the correct answer is [tex]\(9 \, \text{kg}\)[/tex].
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