Calculate the momentum Pelephant of a 2060 kg elephant charging a hunter at a speed of 7.51 m/s. Pelephant = TOOLS x10 Compare the elephant's momentum with the momentum Pdart of a 0.0355 kg tranquilizer dart fired at a speed of 599 m/s. Pelephant > Pdart More information is needed to determine how the momentums compare. Pelephant = Pdart Pelephant Pdart What is the momentum Phunter of the 87.0 kg hunter running at 7.39 m/s after missing the elephant? Phunter = kg-m/s kg.m/s

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### Momentum Calculation Exercise

#### Calculate the momentum \( p_{\text{elephant}} \) of a 2060 kg elephant charging a hunter at a speed of 7.51 m/s.

\[ p_{\text{elephant}} = \]

\[ \boxed{\phantom{Kg\cdot m/s}} \ \ \text{kg·m/s} \]

#### Compare the elephant's momentum with the momentum \( p_{\text{dart}} \) of a 0.0355 kg tranquilizer dart fired at a speed of 599 m/s.

- \( p_{\text{elephant}} > p_{\text{dart}} \)
- More information is needed to determine how the momentums compare.
- \( p_{\text{elephant}} = p_{\text{dart}} \)
- \( p_{\text{elephant}} < p_{\text{dart}} \)

#### What is the momentum \( p_{\text{hunter}} \) of the 87.0 kg hunter running at 7.39 m/s after missing the elephant?

\[ p_{\text{hunter}} = \]

\[ \boxed{\phantom{Kg\cdot m/s}} \ \ \text{kg·m/s} \]

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**Question Credit:** OpenStax College Physics
Transcribed Image Text:### Momentum Calculation Exercise #### Calculate the momentum \( p_{\text{elephant}} \) of a 2060 kg elephant charging a hunter at a speed of 7.51 m/s. \[ p_{\text{elephant}} = \] \[ \boxed{\phantom{Kg\cdot m/s}} \ \ \text{kg·m/s} \] #### Compare the elephant's momentum with the momentum \( p_{\text{dart}} \) of a 0.0355 kg tranquilizer dart fired at a speed of 599 m/s. - \( p_{\text{elephant}} > p_{\text{dart}} \) - More information is needed to determine how the momentums compare. - \( p_{\text{elephant}} = p_{\text{dart}} \) - \( p_{\text{elephant}} < p_{\text{dart}} \) #### What is the momentum \( p_{\text{hunter}} \) of the 87.0 kg hunter running at 7.39 m/s after missing the elephant? \[ p_{\text{hunter}} = \] \[ \boxed{\phantom{Kg\cdot m/s}} \ \ \text{kg·m/s} \] --- **Question Credit:** OpenStax College Physics
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