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Question 5
QUESTION 5 (Start on a NEW page.) A 5 g steel marble is fired horizontally to the east from a 2 kg model canon that is stationary on a flat frictionless horizonta... show full transcript
Step 1
Answer
The total linear momentum of an isolated system remains constant (is conserved). This means that the total linear momentum before a collision equals the total linear momentum after a collision in an isolated system.
Step 2
Answer
5.2.1 Canon collides the barrier
To find the speed, we can use the formula:
ext{Speed} = rac{ ext{Distance}}{ ext{Time}}
Substituting the values:
ext{Speed} = rac{0.32 ext{ m}}{0.33 ext{ s}} \\ = 0.97 ext{ m·s}^{-1}
5.2.2 Steel marble is fired from the canon
Applying the conservation of momentum:
Given,
Solving for :
oh v_{ ext{marble}} = rac{2 imes 0.97}{0.005} = 388 ext{ m·s}^{-1}.
Step 3
Answer
Impulse can be calculated as:
Where:
We calculate the change in momentum for the cannon:
Where:
v_{ ext{final}} = -0.4 m·s<sup>-1</sup>
v_{ ext{initial}} = 0.97 m·s<sup>-1</sup>
Calculating:
The magnitude of the impulse is:
.
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