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Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not...

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3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations move in the same direction as the wave. Sound is a type of mechanical wave Vibrations pass through many parts of the ear, not just the eardrum. True
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Frequency Determines Pitch Sect. 16-2
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Page 1: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Frequency Determines Pitch

Sect. 16-2

Page 2: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

3 Min. Warm-up Decide if these statements are true.

If not true, correct them. In a longitudinal wave, the vibrations

move perpendicular to the direction of the wave.

Sound is a type of electromagnetic wave.

Vibrations pass through many parts of the ear, not just the eardrum.

Page 3: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

3 Min. Warm-up Decide if these statements are

true. If not true, correct them. In a longitudinal wave, the vibrations

move in the same direction as the wave.

Sound is a type of mechanical wave Vibrations pass through many parts of

the ear, not just the eardrum. True

Page 4: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Pitch The quality of the highness or lowness of a

sound. Determined by frequency Very fast vibrating object produces high

sound Slow vibrating objects produces a low sound High frequency makes high sound Low frequency makes low sound

Page 5: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Explore Pitch Why does the sound change?pg.

525 What happened to the sound as

you slid the ruler back? Describe the motion of the ruler.

Page 6: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Explore Pitch Why does the sound change?pg. 525 What happened to the sound as you slid

the ruler back? The sound became higher

Describe the motion of the ruler. The ruler moved up and down a greater distance when the ruler extended farther than when it was pulled back on the desk

Page 7: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Vocabulary Hertz – unit for measuring frequency and

pitch; one complete wave per second Ultrasound – sound waves in the range

above 20,000 hertz Resonance – strengthening of a sound

wave when it combines with an object’s natural vibration.

Doppler Effect – the change in observed pitch that occurs when the source or the one who hears a sound is moving.

Page 8: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Sound is a type of mechanical wave. Why?

It transfers energy through a medium.

It is produced by a vibrating object and travels through matter

The disturbances that travel in a sound wave are vibrations.

Page 9: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

How is frequency related to pitch? The higher the frequency of the

sound wave, the higher pitched the sound.

Page 10: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Which instrument makes the lower pitched sound?

A flute A tuba

Page 11: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Which instrument makes the lower pitched sound?

A tuba

Page 12: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

High and Low Frequencies

Frequency is a measure of how often a wave passes a fixed point in a certain amount of time.

One complete wave is also called a cycle

Hertz = 1 cycle or wavelength/second

A wave with a frequency of 4 hertz has 4 cycles per second

Page 13: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Frequency Range of Most People with Good Hearing 20 – 20,000 Hertz

Page 14: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Infrasound wavesSound waves with frequency below 20 Hertz. They have very long wavelengths and can travel great distances

without losing much energy.

Page 15: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Ultrasound Sound waves above 20,000 hzHumans cannot hear it.Many animals can hear it.

Page 16: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Natural Frequencies

You may see a piano tuner tap a tuning fork against

another object. The tuner does this to make the fork

resonate at its natural frequency. He tunes the

piano strings to match it.

Page 17: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Resonance

Causes sound waves to strengthen

Results from adding the amplitude of a sound wave to the amplitude of an object’s natural vibration

Page 18: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Resonance cont. When a tuning fork is struck, a

nearby tuning fork with the same natural frequency will also vibrate because of resonance.

Page 19: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Sound Quality A. Timbre

1. Most sounds are a combination of waves.

2. The combination of pitches is the main factor affecting the quality of sound

Pitch that you hear is called fundamental pitch

Higher-frequency pitches are called overtones This is why two singers can sound very

different when singing the same note.

Page 20: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Sound Quality B. The way a sound starts and

stops 1. The sound of cymbals blast out

suddenly 2. The sound of the human voice

starts much more gently.

Page 21: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

What two factors affect sound quality?

Page 22: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

What two factors affect sound quality? Overtones - Combination of pitches The way the sound starts and

stops

Page 23: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

The motion of the source of a sound affects its pitch.

If an ambulance passed you, would you hear the same sound the whole time? Why or Why not?

Page 24: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

The motion of the source of a sound affects its pitch.

No, the ambulance blasts the same pitches the whole time, but the pitch falls as the ambulance drives away.

Page 25: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

Doppler Effect The change in perceived pitch that

occurs when the source or the receiver of a sound is moving.

Page 26: Frequency Determines Pitch Sect. 16-2. 3 Min. Warm-up Decide if these statements are true. If not true, correct them. In a longitudinal wave, the vibrations.

How does the motion of a sound source affect its pitch? If a sound moves toward the

listener, the pitch rises. If it moves away from the listener, the pitch lowers.


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