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Please help me do section 6-2, pages 355-56, exercises 14, 16, 20, 24, 26, 28, 30, 34, 36 EXERCISES Practice Determine each angular displacement in

Please help me do section 6-2, pages 355-56, exercises 14, 16, 20, 24, 26, 28, 30, 34, 36

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EXERCISES Practice Determine each angular displacement in radians. Round to the nearest tenth. 13. 3 revolutions 14. 2.7 revolutions 15. 13.2 revolutions 16. 15.4 revolutions 17. 60.7 revolutions 18. 3900 revolutions Determine each angular velocity. Round to the nearest tenth. 19. 1.8 revolutions in 9 seconds 20. 3.5 revolutions in 3 minutes 21. 17.2 revolutions in 12 seconds 22. 28.4 revolutions in 19 seconds 23. 100 revolutions in 16 minutes 24. 122.6 revolutions in 27 minutes 25. A Ferris wheel rotates one revolution every 50 seconds. What is its angular velocity in radians per second? 26. A clothes dryer is rotating at 500 revolutions per minute. Determine its angular velocity in radians per second. www.amc.glencoe.com/self_check_quiz Lesson 62 Linear and Angular Velocity 355 CONTENTS 27. Change 85 radians per second to revolutions per minute (rpm). Determine the linear velocity of a point rotating at the given angular velocity at a distance / from the center of the rotating object. Round to the nearest tenth. 28. w - 16.6 radians per second, r = 8 centimeters 29. w - 27.4 radians per second, r = 4 feet 30. w - 6.1w radians per minute, r = 1.8 meters 31. w - 75.3w radians per second, r = 17 inches 32. m - 805.6 radians per minute, / - 39 inches 33. u - 64.5w radians per minute, r - 88.9 millimeters 34. A pulley is turned 120 per second. a. Find the number of revolutions per minute (rpm). b. If the radius of the pulley is 5 inches, find the linear velocity in inches per second. 35. Consider the tip of each hand of a clock. Find the linear velocity in millimeters per second for each hand. a. second hand which is 30 millimeters b. minute hand which is 27 millimeters long e. hour hand which is 18 millimeters long Applications 36. Entertainment The diameter of a Ferris wheel is 80 feet. and Problem a. If the Ferris wheel makes one revolution every 45 seconds, find the linear Solving velocity of a person riding in the Ferris wheel. b. Suppose the linear velocity of a person riding in the Ferris wheel is 8 feet per second. What is the time for one revolution of the Ferris wheel

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