As shown below, a 5.2 g bullet is moving horizontally at 981 m/s when it embeds itself in a 0.543 kg block that is attached to a 970 N/m spring. The block is on a frictionless surface and prior to being struck it was in static equilibrium. As a result of the collision, the system starts exhibiting SHM. Determine the following quantities ? = f = T = vmax = amax = A = amount of TE generated during collision =
As shown below, a 5.2 g bullet is moving horizontally at 981 m/s when it embeds itself in a 0.543 kg block that is attached to a 970 N/m spring. The block is on a frictionless surface and prior to being struck it was in static equilibrium. As a result of the collision, the system starts exhibiting SHM. Determine the following quantities ? = f = T = vmax = amax = A = amount of TE generated during collision =
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As shown below, a 5.2 g bullet is moving horizontally at 981 m/s when it embeds itself in a 0.543 kg block that is attached to a 970 N/m spring. The block is on a frictionless surface and prior to being struck it was in static equilibrium. As a result of the collision, the system starts exhibiting
Determine the following quantities
? =
f =
T =
vmax =
amax =
A =
amount of TE generated during collision =
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