|45.0° k Figure-1 Figure-2 2. A cannon is rigidly attached to a carriage, which can move along horizontal rails, but is connected to a post by a large spring, initially unstretched and with force constant k = 2x 10* N/m, as in Figure-2. The cannon fires a 200-kg projectile at a velocity of 125 m/s directed 45° above the horizontal. (a) If the mass of the cannon and its carriage is 5 000 kg, find the recoil speed of the cannon. (b) Determine the maximum extension of the spring. (c) Find the maximum force the spring exerts on the carriage. (d) Consider the system consisting of the cannon, the carriage, and the shell. Is the momentum of this system conserved during the firing? Why or why not?

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45.0°
m2
k
Figure-1
Figure-2
A cannon is rigidly attached to a carriage, which can move along horizontal
rails, but is connected to a post by a large spring, initially unstretched and with force
constant k = 2 x 10* N/m, as in Figure-2. The cannon fires a 200-kg projectile at a
2.
velocity of 125 m/s directed 45° above the horizontal. (a) If the mass of the cannon and
its carriage is 5 000 kg, find the recoil speed of the cannon. (b) Determine the maximum
extension of the spring. (c) Find the maximum force the spring exerts on the carriage. (d)
Consider the system consisting of the cannon, the carriage, and the shell. Is the
momentum of this system conserved during the firing? Why or why not?
Transcribed Image Text:45.0° m2 k Figure-1 Figure-2 A cannon is rigidly attached to a carriage, which can move along horizontal rails, but is connected to a post by a large spring, initially unstretched and with force constant k = 2 x 10* N/m, as in Figure-2. The cannon fires a 200-kg projectile at a 2. velocity of 125 m/s directed 45° above the horizontal. (a) If the mass of the cannon and its carriage is 5 000 kg, find the recoil speed of the cannon. (b) Determine the maximum extension of the spring. (c) Find the maximum force the spring exerts on the carriage. (d) Consider the system consisting of the cannon, the carriage, and the shell. Is the momentum of this system conserved during the firing? Why or why not?
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