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19. The kinetic energy of a motorcycle and rider is 60,000 J. If their total mass is 300 kg, what is their speed? 23. A

19. The kinetic energy of a motorcycle and rider is 60,000 J. If their total mass is 300 kg, what is their speed?

23. A 25-kg child uses a pogo stick to bounce up and down. The spring constant, k, of the toy equals 8750 N/m. (a) By how much would the spring be compressed by the child if she simply balanced herself vertically on the pedals of the stick? (b) How much energy is stored in the spring under this circumstance?

27. At NASA's Zero Gravity Research Facility in Cleveland, Ohio, experimental payloads fall freely from rest in an evacuated vertical shaft through a distance of 132 m. (a) If a particular payload has a mass of 45 kg, what is its potential energy relative to the bottom of the shaft? (b) How fast will the payload be traveling when it reaches the bottom of the shaft? Convert your answer to mph for a comparison to highway speeds.

29. A bicycle and rider going 10 m/s approach a hill. Their total mass is 80 kg.

(a) What is their kinetic energy? (b) If the rider coasts up the hill without pedaling, how high above its starting level will the bicycle be when it finally rolls to a stop?

31. The ceiling of an arena is 20 m above the floor. What is the minimum speed that a thrown ball would need to just reach the ceiling?

35. How long does it take a worker producing 200 W of power to do 10,000 J of work?

39. In the annual Empire State Building race, contestants run up 1,575 steps to a height of 1,050 ft. In 2003, Australian Paul Crake completed the race in a record time of 9 min and 33 s. Mr. Crake weighed 143 lb (65 kg). (a) How much work did Mr. Crake do in reaching the top of the building? (b) What was his average power output (in ft-lb/s and in hp)?

41. Two small 0.25-kg masses are attached to opposite ends of a very lightweight rigid rod 0.5 m long. The system is spinning in a horizontal plane around a vertical axis perpendicular to the rod located halfway between the masses. Each mass is moving in a circle of radius 0.25 m at a speed of 0.75 m/s. What is the total angular momentum of this system?

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