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Uniform Circular Motion Side View of Uniform Circular Motion.

Date post: 21-Jan-2016
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Page 1: Uniform Circular Motion Side View of Uniform Circular Motion.
Page 2: Uniform Circular Motion Side View of Uniform Circular Motion.

Uniform Circular Motion

Page 3: Uniform Circular Motion Side View of Uniform Circular Motion.

Side View of Uniform Circular Motion

QuickTime™ and aSorenson Video 3 decompressorare needed to see this picture.

Page 5: Uniform Circular Motion Side View of Uniform Circular Motion.

Simple Harmonic Motion

Mass on a compressible spring.

Amplitude

Frequency

Angular Frequency

Period

Page 6: Uniform Circular Motion Side View of Uniform Circular Motion.

Vertical mass-on-spring

Treat the equilibrium length of the spring as if it is the unstretched length of the spring. Then, you can neglect the gravitational force on the object and treat the spring as a compressible spring with a new equilibrium length.

Page 7: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

The freqency of a harmonic oscillator is 0.25 Hz. What is its period?

1. 0.25 s

2. 0.5 s

3. 1 s

4. 2 s

5. 4 s

Page 8: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

The angular freqency of a harmonic oscillator is rad/s. What is its period?

1. 0.25 s

2. 0.5 s

3. 1 s

4. 2 s

5. 4 s

Page 9: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

An object of mass m hangs on a spring of stiffness k. It takes 1.0 s to move from its lowest point to its highest point as it oscillates. What is its period?

1. 0.25 s

2. 0.5 s

3. 1 s

4. 2 s

5. 4 s

Page 10: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

An object of mass m hangs on a spring of stiffness k. The distance from its lowest point to its highest point during one oscillation is 10 cm. What is its amplitude?

1. 40 cm

2. 20 cm

3. 10 cm

4. 5 cm

5. 2.5 cm

Page 11: Uniform Circular Motion Side View of Uniform Circular Motion.

x(t) for SHM

Page 12: Uniform Circular Motion Side View of Uniform Circular Motion.

Frequency and Stiffness

Which has a greater frequency, a spring of stiffness k or a spring of stiffness 2k?

Page 13: Uniform Circular Motion Side View of Uniform Circular Motion.

Frequency and Mass

Which has a greater frequency, a spring and object of mass m or a spring and object of mass 2m?

Page 14: Uniform Circular Motion Side View of Uniform Circular Motion.

Angular Frequency

Page 15: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

If you double the stiffness of the spring, by what factor does the frequency change?

1. 2

2. 1/2

3. sqrt(2)

4. 1/sqrt(2)

5. 4

Page 16: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

If you double the mass of the object, by what factor does the frequency change?

1. 2

2. 1/2

3. sqrt(2)

4. 1/sqrt(2)

5. 4

Page 17: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

In one experiment you pull back the object a distance A and release it from rest. In a second experiment, you pull back the object a distance 2A and release it from rest. The frequency of the oscillation in the second experiment is

1. Twice the frequency in the first experiment

2. Half the frequency in the first experiment

3. The same as in the first experiment

Page 18: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

x(t) for a harmonic oscillator is shown. What is the amplitude of the oscillation?

1. 0.025 m

2. 0.050 m

3. 1.25 m

4. 2.5 m

5. None of the above

Page 19: Uniform Circular Motion Side View of Uniform Circular Motion.

Poll

x(t) for a harmonic oscillator is shown. What is the period of oscillation?

1. 0.025 s

2. 0.050 s

3. 1.25 s

4. 2.5 s

5. None of the above


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