Question 1 A skater (47.2-kg mass) skates on ice at 3.5 m/s to greet his friend (33.7-kg mass), who is standing still, with open arms. As they collide, while holding each other, with what speed do they both move off together? #tv PONT A 8 11
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- 2. A skateboarder is traveling 7.32 m/s on a flat and level sidewalk. The mass of the board and rider is 63.0 kg. As she coasts along, she grabs a 8.55 kg backpack a friend is holding out. A) What properties are conserved in this problem? 8) What type of collision is this? Why? C) What is her speed after getting the backpack? D) Explain in words what would happen if the backpack where thrown at her?how to do?1.Two cars collide at an intersection and stick together. Car A, with a mass of 1200 kg , was going east at vA = 25 m/s before the collision while car B, of mass 1600 kg , was going north at vB = 16 m/s . What is the speed of the cars after the collision? 2.A head-on, elastic collision between two particles with equal initial speed v leaves the more massive particle (mass m1 ) at rest. The less massive particle has mass m2 . Find the ratio of the particle masses. Then find the final speed of the less massive particle.
- A marble with mass ?? = 2.5 [g] moves eastward with speed ?? = 1.75 [m/s]. It then collides with another marble of mass ?? = 1.25 [g] and is moving northward with a speed ?? = 2.30 [m/s]. After the collision, marble ? now moves at 50° north of east, while marble ? moves at 20° south of east. 2 A. What is the speed of marble ? after the collision? B. What is the speed of marble ? after the collision? C. Is energy lost or gained in the system1.) A car (mass=400 kg) is traveling down a country road (speed is 10 m/s) when it collides with a deer (mass=200 kg) which is running in the opposite direction (speed is 2 m/s). The collision results in the deer getting stuck on the windshield. Treat this collision using the 'conservation of momentum' principle: a) Draw a sketch - label each MASS and each VELOCITY (with arrows for direction). b) Calculate the final speed of the car (remember the deer is stuck on top of the car) after collision (Note: they stick together to form a single mass)2. You (74 kg mass) skate on ice at 3.6 m/s to greet your friend (58 kg mass), who is standing still, with open arms. As you collide head-on, while holding each other, with what speed do you both move off together? m/s Ossi sf60 ss 60 ssf60
- Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1450 kg and is approaching at 6.5m/s due south. The second car has a mass of 750 kg and is approaching at 16 m/s due west. What is the magnitude of the final velocity, in meters per second, of the cars. What is the direction of the final velocity, in degrees south of west, of the cars. What is the change in kinetic energy, in joules, for the collision? (This energy goes into deformation of the cars.)A 5000-kg car moving at 19.1 m/s in the +x direction hits from behind a second car moving at 13 m/s in the same direction. If the second car has a mass of 1000 kg and a speed of 15.1 m/s right after the collision, what is the velocity of the first car after this sudden collision? -44.2 m/s 44.2 m/s -14 m/s 18.7 m/s 14.9 m/s