Figure 11.22 shows a demonstration gyroscope, consisting of a solid disk mounted on a shaft. The disk spins about the shaft on essentially frictionless bearings. The shaft is mounted on a stand so it’s free to pivot both horizontally and vertically. A weight at the far end of the shaft balances the disk, so in the configuration shown there’s no torque on the system. An arrowhead mounted on the disk end of the shaft indicates the direction of the disk’s angular velocity . FIGURE 11.22 A gyroscope (Passage Problems 65–68) If the system is precessing, and only the disk’s rotation rate is increased, the precession rate will a. decrease. b. increase. c. stay the same. d. become zero.
Figure 11.22 shows a demonstration gyroscope, consisting of a solid disk mounted on a shaft. The disk spins about the shaft on essentially frictionless bearings. The shaft is mounted on a stand so it’s free to pivot both horizontally and vertically. A weight at the far end of the shaft balances the disk, so in the configuration shown there’s no torque on the system. An arrowhead mounted on the disk end of the shaft indicates the direction of the disk’s angular velocity . FIGURE 11.22 A gyroscope (Passage Problems 65–68) If the system is precessing, and only the disk’s rotation rate is increased, the precession rate will a. decrease. b. increase. c. stay the same. d. become zero.
Figure 11.22 shows a demonstration gyroscope, consisting of a solid disk mounted on a shaft. The disk spins about the shaft on essentially frictionless bearings. The shaft is mounted on a stand so it’s free to pivot both horizontally and vertically. A weight at the far end of the shaft balances the disk, so in the configuration shown there’s no torque on the system. An arrowhead mounted on the disk end of the shaft indicates the direction of the disk’s angular velocity.
FIGURE 11.22 A gyroscope (Passage Problems 65–68)
If the system is precessing, and only the disk’s rotation rate is increased, the precession rate will
a. decrease.
b. increase.
c. stay the same.
d. become zero.
Definition Definition Product of the moment of inertia and angular velocity of the rotating body: (L) = Iω Angular momentum is a vector quantity, and it has both magnitude and direction. The magnitude of angular momentum is represented by the length of the vector, and the direction is the same as the direction of angular velocity.
Checkpoint 4
The figure shows four orientations of an electric di-
pole in an external electric field. Rank the orienta-
tions according to (a) the magnitude of the torque
on the dipole and (b) the potential energy of the di-
pole, greatest first.
(1)
(2)
E
(4)
What is integrated science.
What is fractional distillation
What is simple distillation
19:39 ·
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Chegg
1 69%
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The compound beam is fixed at Ę and supported by rollers at A and B. There are pins at C and D. Take
F=1700 lb. (Figure 1)
Figure
800 lb
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F
600 lb
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D
E
C
BO
10 ft 5 ft 4 ft-—— 6 ft — 5 ft-
Solved Part A The compound
beam is fixed at E and...
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Problem
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Những kết quả này có
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There are pins at C and D To F-1200 Egue!)
Chegg
Solved The compound b...
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Chegg
10
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Chapter 11 Solutions
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