On an air track, a glider of mass 200 g traveling at a speed of 2.0 m.s collides with a stationary glider of mass 100 g and sticks to it. The rebound coefficient is: A. 1.00 B. 0.76 C. 0.20 D. 1.33 E. 0.50 mi m2 v2-0 VI
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![On an air track, a glider of mass 200 g traveling at a
speed of 2.0 m.s collides with a stationary glider
of mass 100 g and sticks to it. The rebound
coefficient is:
A. 1.00
B. 0.76
C. 0.20
D. 1.33
E. 0.50
m1
m2
VI
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- Alice has a mass of 62.0 kg and Bob has a mass of 84.0 kg and they are initially standing at rest with respect to one another on a frictionless surface. They push against each other such that Alice moves at 0.04 m/s relative to her starting point. With what speed does Bob move away from his initial position? a. 0.03 m/s b. 0.09 m/s c. 1.21 m/s d. 32.2 m/s e. 1.6 m/sA ball is thrown vertically up, reaches a maximum height, and then falls back down to the ground. Which of these is true during the flight of the ball? O a. The momentum of the ball stays constant O b. The speed of the ball changes at a constant rate O c. The momentum of the ball changes at a constant rate O d. The acceleration of the ball changes at a constant rateA 4,400 kg barrel rests on a frozen pond. The barrel is loaded with a 36 kg ball. The barrel fires the ball horizontally. If the barrel retreats at a velocity of 1.8 m/s. What is the velocity of the ball at the exit? A. 180 m/s B. 200 m/s C. 220 m/s D. 240 m/s E. 260 m/s
- 7Holding a slingshot at arm's length, he pulls the light elastic band back to his chin and releases it to launch a stone horizontally with a speed of 200 cm/s. Using the same procedure, a bean is thrown with a speed of 600 cm/s. What is the ratio of the mass of the bean to the mass of the stone? a. 1/3 b. 3 c. 9 d. 1/9 e. 1Two ice skaters push off against one another starting from a stationary position. The 45-kg skater acquires a speed of 0.375 m/s. What speed does the 60-kg skater acquire? a. 0.21 m/s b. 0.55 m/s c. 0.28 m/s d. 0.14 m/s
- 9. A 2500 kg truck moving at 10.00 m/s strikes a car waiting at a traffic light, hooking bumpers. The two continue to move together at 7.00 m/s. What was the mass of the struck car? A. 1730 kg B. 1550 kg C. 1200 kg D. 1070 kg E. 967 kgA 2 kg car is traveling at 10 m/s. It collides and sitcks with a 5 kg car traveling the opposite direcyion at 7 m/s. a. Draw an IF Chart for the scenario b. Calculate the total initial momentum c. Calculate the final velocity of the two carsA. 3.850 Rg m/s D. 4.113 kg-m/s 4.823 kg-m/s B. 4.730 kg-m/s E. C. 5.476 kg-m/s F. 3.735 kg-m/s 1--1 IZJXM A toy train engine (2.1 kg) is moving 0.28 m/s to the right when it collides with a train car (3.2 kg) moving 0.19 m/s in the opposite direction, and they stick together. Find the velocity of the engine-car combination as they move off together. Assume "to the right" is the positive direction. 3. A. -0.00267 m/s D. -0.006516 m/s -0.005211 m/s B. E. -0.002181 m/s -0.003774 m/s C. F. -0.006594 m/s 1--1 [carpet-14]
- 3. A0.03-lb bullet traveling at 1300 ft/s strikes the 10-lb wooden block and exits the other side at 50 ft/s as shown. Determine the speed of the block just after the bullet exits the block, and also determine how far the block slides before it stops. The coefficient of friction between the block and the surface is u = 0.5. 50 ft/s 13 4 1300 ft/s 12A 7400 kg truck traveling along a straight road at 14 m/s comes to a stop and remains stationary for several minutes. It then accelerates backward in reverse until it reaches 5.0 m/s in the opposite direction. What is the magnitude of the change in momentum of the truck for this entire process? A. 100,000 kg. m/s B. 140,000 kg. m/s C. 67,000 kgm/s D. 37,000 kgm/s O C O B OD O ATHANKS