Question

In: Physics

Two small, identical steel balls collide completely elastically. Initially, ball 1 is moving with velocity v1...

Two small, identical steel balls collide completely elastically. Initially, ball 1 is moving with velocity v1 directly toward ball 2, and ball 2 is stationary. After the collision, the final velocities of ball 1 and ball 2 are, respectively

A) v1 / 2; v1 / 2

B) v1; 2v1

C) -v1; 2v1

D) 0; v1

E) -v1; 0

Solutions

Expert Solution

Elastic collision means both conservation of momentum and conservation of energy is obeyed

Momentum before collision = momentum after collision

\(\mathrm{Mv}_{1 \mathrm{~b}}+0=\mathrm{Mv}_{1 \mathrm{a}}+\mathrm{Mv}_{2 \mathrm{a}}\)

\(\mathrm{v}_{1 \mathrm{~b}}=\mathrm{v}_{1 \mathrm{a}}+\mathrm{v}_{2 \mathrm{a}}\)

From the options the possibilities that conserve momentum are option \(\mathrm{A}\), option \(\mathrm{C}\) and option D but only option D obeys conservation of energy

$$ \frac{M v_{1}^{2}}{2}+0=0+\frac{M v_{1}^{2}}{2} $$

Hence the solution is option \(\mathrm{D}\left(0, \mathrm{v}_{1}\right)\)


Related Solutions

Two balls collide elastically. Ball A has a mass of 3.00 kg and moves to the...
Two balls collide elastically. Ball A has a mass of 3.00 kg and moves to the right at 2.00 m/s. Ball B has a mass of 1.29 kg, and moves to the left, also at 2.00 m/s.The balls collide head-on. 1) Find the speed of Ball A after the collision. 2) Find the speed of Ball B after the collision. 3) Find the impulse delivered to Ball A during the collision. 4)Find the impulse delivered to Ball B during the...
Two balls collide elastically. Ball A has a mass of 3.00 kg and moves to the...
Two balls collide elastically. Ball A has a mass of 3.00 kg and moves to the right at 2.00 m/s. Ball B has a mass of 1.29 kg, and moves to the left, also at 2.00 m/s. The balls collide head-on. A) Find the speed of Ball A after the collision. B) Find the speed of Ball B after the collision. C) Find the impulse delivered to Ball A during the collision. D) Find the impulse delivered to Ball B...
A ball (Ball A) moving at 10.0 m/s overtakes and collides elastically with an identical ball...
A ball (Ball A) moving at 10.0 m/s overtakes and collides elastically with an identical ball (Ball B) moving at 4.00 m/s in the same direction. 1) Find the speed of Ball A after the collision. 2) Find the speed of Ball B after the collision.
A proton, moving with a velocity of viî, collides elastically with another proton that is initially...
A proton, moving with a velocity of viî, collides elastically with another proton that is initially at rest. Assuming that after the collision the speed of the initially moving proton is 1.40 times the speed of the proton initially at rest, find the following. (a) the speed of each proton after the collision in terms of vi initially moving proton initially at rest proton (b) the direction of the velocity vectors after the collision (assume that the initially moving proton...
Que1.Consider two balls of identical mass. If ball 1 is moving to the right towards stationary...
Que1.Consider two balls of identical mass. If ball 1 is moving to the right towards stationary ball 2 at 1.0 m/s and the two balls collide elastically, what will the final velocities of both balls be? (Hint: consider this simulation.) Que 2.If the same two balls again undergo a collision, but this time the collision is inelastic, what will the final velocities of both balls be? Que 3.What are the conditions for elastic and inelastic collisions? Que 4.Explain how the...
Two identical pucks collide elastically on an air hockey table. Puck 1 was originally at rest;...
Two identical pucks collide elastically on an air hockey table. Puck 1 was originally at rest; puck 2 has an incoming speed of 7.96 m/s and scatters at an angle of 30° with respect to its incoming direction. What is the velocity (magnitude in m/s and direction in degrees counterclockwise from the +x-axis) of puck 1 after the collision? (Assume the +x-axis is to the right.) Magnitude: Direction:
two balls, ball 1 and ball 2are about collide heads on a frictionless linear track. Ball...
two balls, ball 1 and ball 2are about collide heads on a frictionless linear track. Ball 1 is traveling east with a speed 8m/s toward ball 2. Ball 2 has a speed of 4 m/s. If the mass of the ball 2 is 8 times the mass of ball 1 what is the speed of ball 2 after the collision? We asume that the collision id perfectly elastic
One object is at rest, and another is moving. The two collide in a one-dimensional, completely...
One object is at rest, and another is moving. The two collide in a one-dimensional, completely inelastic collision. In other words, they stick together after the collision and move off with a common velocity. Momentum is conserved. The speed of the object that is moving initially is 22 m/s. The masses of the two objects are 3.2 and 8.0 kg. Determine the final speed of the two-object system after the collision for the case (a) when the large-mass object is...
Two identical balls, Ball A and Ball B are thrown vertically upward. Ball A is thrown...
Two identical balls, Ball A and Ball B are thrown vertically upward. Ball A is thrown with an initial speed of v, and Ball B is thrown with an initial speed of 2v. Which of the following statement is correct? Ignore air resistance. A. The maximum heights of the two balls are equal. B. The maximum height of the second ball is eight times that of the first ball. C. The maximum height of the second ball is 1.41 times...
Ball A has a mass of 4kg and is initially moving at 5m/s. Balls B has...
Ball A has a mass of 4kg and is initially moving at 5m/s. Balls B has a mass of 3kg and is moving at -4m/s. Ball A collides with Ball B head on. After the collision, Ball A is moving at -3m/s, what is the velocity of Ball B is moving at?
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT