QUESTION IMAGE
Question
2 - 4 mastery check: impulse - momentum equation
version a
pass □
revise □
- complete the table.
- kit the cat (5 kg) is running at 12 m/s when she starts sliding across a
smooth floor. friction provides a 20 n stopping force.
- what is kits change in momentum?
show your work.
Step1: Recall the impulse - momentum theorem
The impulse - momentum theorem states that the impulse \(I\) (or \(J\)) is equal to the change in momentum \(\Delta p\). The formula is \(I = F\times\Delta t=\Delta p = m\times\Delta v\).
Step2: Identify the given values
We know that the force \(F = 20\space N\). But we can also use the fact that the initial velocity \(u = 12\space m/s\) and the final velocity \(v=0\space m/s\) (since the cat stops), and the mass \(m = 5\space kg\).
Step3: Calculate the change in momentum using \(\Delta p=m\times\Delta v\)
The change in velocity \(\Delta v=v - u=0 - 12=- 12\space m/s\). Then \(\Delta p=m\times\Delta v\). Substitute \(m = 5\space kg\) and \(\Delta v=-12\space m/s\) into the formula: \(\Delta p=5\times(- 12)=-60\space kg\cdot m/s\). The magnitude of the change in momentum is \(60\space kg\cdot m/s\).
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The change in Kit's momentum is \(60\space kg\cdot m/s\)