Chapter 9 – College Physics, 7th edition (Sears, Zemansky, Young)
9 – 1. a) 2.5 rad; 143° b) 0.9 m c) 61.4 cm
9 – 2. 398 rad/s
9 – 3. a) 3.2 rad/s; 4.25 rad/s b) 3.6 rad/s; 6.75 rad/s
9 – 4. a) –0.800 rad/s2; -1.6 rad/s2 b) –1.6 rad/s2; -3.2 rad/s2
9 – 5. ?
9 – 6. 3.69 rad/s
9 – 7. a) 12.5 s b) 7.96 rev
9 – 8. a) –1.67 rev/s2; 54.2 rev b) 4 s
9 – 9. 40 rad/s2; 405 rad
9 – 10. 12.5 rad/s
9 – 11. a) 16 rad/s b) 30.7 rad/s2
9 – 12. a) 4.87 m/s b) 143 rev/min
9 – 13. 1.34 x 105 rpm
9 – 14. a) 128 m/s2 b) 8 m/s; 128 m/s2
9 – 15. a) 0.225 m/s2; 0; 0.225 m/s2 b) 0.225 m/s2; 0.471 m/s2; 0.522 m/s2
c) 0.255 m/s2; 0.942 m/s2; 0.969 m/s2
9 – 16. a) 2.5 rev/s b) 1.5 rev c) 23.6 ft/s d) 371 ft/s
9 – 17. a) 0.096 kg*m2 b) 0.048 kg*m2
9 – 18. 7mL2/12
9 – 19. a) 4 kg*m2 b) 16 kg*m2 c) 2.4 x 10 –3 kg*m2
9 – 20. a) A b) B
9 – 21. a) 398 J b) 13.5 m
9 – 22. 0.168 kg*m2
9 – 23. 2.05 lb
9 – 24. 0.241 kg*m2
9 – 25. a) 8.75 rad/s b) 13 kg/m2
9 – 26. 9.3 N*m, clockwise
9 – 27. a) 120 ft*lb, counterclockwise b) 104 ft*lb, counterclockwise
c) 60 ft*lb, counterclockwise d) 52 ft*lb, clockwise
9 – 28. 28 N*m, clockwise
9 – 29. 2.65 N*m, counterclockwise
9 – 30. a) 424 N*m b) 2 x 105 J
9 – 31. 1.2 m/s
9 – 32. 0.367
9 – 33. 3.75 rad/s2
9 – 34. 3F/Ml
9 – 35. a) 65.3 N b) 16.2 m/s c) 2.47 s d) 261 N
9 – 36. a) 1.37 N b) 0.452 s c) 27.7 rad/s
9 – 37. 3.92 m/s2; 7.85 N; 0.25
9 – 38. 27.7 rad/s
9 – 39. 15.7 N*m b) 157 rad c)2.47 x 103 J d) 2.47 x 103 J
9 – 40. 2.88 hp
9 – 41. a) 8.98 rad/s b) 9.88 x 103 J c) 494 W
9 – 42. a) 3.45 rad/s2 b) 13.2 rad/s c) 5.03 x 104 J
9 – 43. a) 9550 N*m b) 3.82 x 104 N c) 62.8 m/s
9 – 44. 0.484 kg*m2/s
9 – 45. 6.54 x 10-5 kg*m2/s
9 – 46. 2610 kg*m2/s
9 – 47. 46 kg*m2/s
9 – 48. 0.429 rad/s
9 – 49. a) 25.8 kg*m2/s b) 4.78 rad/s c) 38.7 J; 61.6 J; work done by the woman
9 – 50. 1.18 rev/s
9 – 51. a) 22.5 rad/s b) 0.113 J c) 0.113 J
9 – 52. 127 rev/s
9 – 53. 0.827 rad/s
9 – 54. a) 0.975 rad/s b) 811J; 304 J; work done by friction
9 – 55. 0.297 rad/s
9 – 56. a) 142 min b) 1.64 x 105 N*m
9 – 57. a) 1.76 N b) 5.36 x 103 rev/min
9 – 58. 1.89 rad/s
9 – 59. b) 49.6°
9 – 60. a) 5.42 rad/s b) 5.42 m/s c) 4.43 m/s
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9 – 61.
9 – 62. a) 2 x 107 J b) 17.9 min
9 – 63. a) 362 rev/min b) 500 W
9 – 64. 3.3 m/s
9 – 65. ![]()
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9 – 66. a) 28.6 kg/m2 b) 3 N*m c) 93.3 rev
9 – 67. a) 82.8 N b) 32.5 N c) 45.2 s
9 – 68. a) 1.11 rad/s2 b) 6.67 rad/s c) 500 J d) 22.5 kg/m2
9 – 69. 0.71 s
9 – 70. a) 1.31 m/s2 b) 13.1 N
9 – 71. 0.73 m/s2 ; 6.09 rad/s2; 36.3 N; 21.1 N
9 – 72. a = 2gb2/(2b2 + R2); T = 2mgR2/(2b2 + R2)
9 – 73. a = F/2M; Fs = F/2
9 – 74. a) 11.2 rev/min b) 11.2 rev/min
9 – 75. 2.45 m
9 – 76. 0.175 m
9 – 77. 0.576 J
9 – 78. 0.438 rad/s
9 – 79. 4500 J
9 – 80. 7.7 rad/s = 1.23 rev/s
9 – 81. 0.371 MR2
9 – 82. a) 39.2 N, up; 39.2 N, up b) 65N, up; 13.4N, up c) 168.2 N, up; 89.8 N, down
9 – 83. a) 4.49 rad/s b) 1.37 cm c) 1150 m/s
9 – 84. a) aCM = m k g , a = -2m k g/ R b) wo2R2/18m k g c) MR2wo2/6