QUESTION IMAGE
Question
scenario 3: 100% elastic collision between two particles of different mass and same initial velocity.
before collision
after collision
- what is the relationship between the initial and final total momentums in scenario 3?
- describe the motion of the particles before and after the collation in scenario 3.
Step1: Calculate initial momentum of each particle
The formula for momentum is \(p = mv\).
For particle 1: \(m_1=1.0\space kg\), \(v_1 = 0.50\space m/s\), so \(p_1=m_1v_1=1.0\times0.50 = 0.50\space kg\cdot m/s\)
For particle 2: \(m_2 = 0.5\space kg\), \(v_2=- 0.05\space m/s\), so \(p_2=m_2v_2=0.5\times(-0.05)=-0.025\space kg\cdot m/s\)
Step2: Calculate total initial momentum
\(p_{total - initial}=p_1 + p_2\)
\(p_{total - initial}=0.50+( - 0.025)=0.475\space kg\cdot m/s\)
In an elastic collision, the law of conservation of momentum states that the total initial momentum is equal to the total final momentum.
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The total initial momentum is equal to the total final momentum. So the relationship between the initial and final total momentums in scenario 3 is that they are equal, i.e., \(p_{total - initial}=p_{total - final}=0.475\space kg\cdot m/s\)