Chapter 5: Q11. (page 132)
How many revolutions per minute would a 25-m-diameter Ferris wheel need to make for the passengers to feel 鈥渨eightless鈥 at the topmost point?
Short Answer
The required revolutions of Ferris wheel is .
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Chapter 5: Q11. (page 132)
How many revolutions per minute would a 25-m-diameter Ferris wheel need to make for the passengers to feel 鈥渨eightless鈥 at the topmost point?
The required revolutions of Ferris wheel is .
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Every few hundred years most of the planets line up on the same side of the Sun. Calculate the total force on the Earth due to Venus, Jupiter, and Saturn, assuming all four planets are in a line, Fig. 5鈥44. The masses are,,and the mean distances of the four planets from the Sun are 108, 150, 778, and 1430 million km. What fraction of the Sun鈥檚 force on the Earth is this?

Can a particle with constant speed be accelerating? What if it has constant velocity? Explain.
A penny is placed on a turntable which is spinning clockwise as shown in Fig. 5鈥37. If the power to the turntable is turned off, which arrow best represents the direction of the acceleration of the penny at point P while the turntable is still spinning but slowing down?


FIGURE 5-37MisConceptual Question 12.
A car drives at steady speed around a perfectly circular track.
(a) The car's acceleration is zero.
(b) The net force on the car is zero.
(c) Both the acceleration and net force on the car point outward.
(d) Both the acceleration and net force on the car point inward.
(e) If there is no friction, the acceleration is outward.
Determine the tangential and centripetal components of the net force exerted on the car (by the ground) in Example 5鈥8 when its speed is 15 m/s. The car鈥檚 mass is 950 kg.
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