Two metal balls are hung from strings. The first ball, 0.07 kg, is pulled to the side and released so that it strikes the second ball with a speed of 70.52 m/s. The two balls stick together and the combined mass has a speed of 0.31 m/s after collision. What is the mass of the second ball?
Two metal balls are hung from strings. The first ball, 0.07 kg, is pulled to the...
Two metal balls are hung from strings. The first ball, 0.13 kg, is pulled to the side and released so that it strikes the second ball with a speed of 1.66 m/s. The two balls stick together and the combined mass has a speed of 0.26 m/s after collision. What is the mass of the second ball?
*1. A clay ball has a mass of 2 kg and a velocity of 10 m/s. a) How much momentum does it have? b) The 2 kg ball strikes another ball, which is stationary, head on. The second ball has a mass of 3 kg. The two balls stick together. How much momentum will the combination have after the collision? c) What velocity will the combined masses have after the collision?
Q1 A small object with a momentum of magnitude 2.71 kg m/s approaches head-on a large object at rest. The small object bounces straight back with a momentum of magnitude 6.19 kg m/s. What is the magnitude of the small object's momentum change in kg m/s? Q2 A force acts on a 4.708 kg mass as follows: the force starts at zero and rises to 60.334 N linearly in 2.24 seconds, it remains at 60.334 N for another 5.756 seconds,...
We observe a glancing collision between two billiard balls of the same mass. The first ball is incident at a speed of 5.72 m/s, strikes the second ball (initially at rest) and moves off with a speed of 5.03 m/s at an angle of 28.5° counterclockwise from the original line of motion. The second ball is initially at rest and after the collision moves off with a velocity which we wish to describe with respect to the first ball's original...
Two small identical clay balls of mass m are suspended from the same point by strings of length L. One of them is pulled sideways and up such that its string makes an angle ? as shown. After being released from rest, it collides with the other ball, and they remain stuck together after the collision. How high h will the two balls rise after the collision? Enter your symbolic answer as a function of m, L, g, and theta...
2. Two clay balls collide head-on in a perfectly inelastic collision. The first ball has a mass of 0.5 kg and an initial velocity of 4 m/s to the right. The second ball has a mass of 0.25 kg and an initial veiocity of 3 m/s to the left. Find the velocity of clay balls that stuck together.
A cue ball strikes two billiard balls at rest simultaneously with a speed of 8.0 m/s. Immediately after the collision, the cue ball stops in place, while one of the other balls moves with a velocity of 5.0 m/s at 20 degree from the cue ball's line of action. If the other ball that was struck moves at 30 degree in the direction illustrated, and all three balls have equal mass, find the post-collision speed V_2 of the second ball.
A clay ball of mass 3 kg and velocity of 16 m/s strikes a stationary ball of mass 5 kg and sticks to it... a) what was the momentum of the 3-kg ball before the collision? b) what was the momentum of the 5-kg ball before the collision? c) what was the combined omentum of the balls after the collision? d) what was the velocity of the balls after the collision? e) what is the momentum of the 3-kg ball...
HW 5.5. The drawing shows a top-view of a collision between two balls. Ball A has a mass of 0.03 kg and is moving along the positive c-axis at 5.5 m/s. It makes a collision with ball B, which has a mass of 0.05 kg and is initially at rest. The collision is not head-on. After the collision, the two balls fly apart with the angles shown in the drawing below. + 5.5 m/s At rest a) What are the...
Two balls A and Ceach have a mass of m are moving to strike ball B which is at rest as shown in figure. If ball C strikes ball B first, then ball B and A collide, determine the velocity of ball B after the second collision. The coefficient of restitution for any collision is e=0.85. Vc= 5 m/s VA=3 m/s B A