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Dr.Aida

SOUND WAVE
WAVE
INTERACTIONS
Longitudinal Wave
wave particles vibrate back
and forth along the path that
the wave travels.
Compressional Wave
 Compressions
  The close together part of the wave
 Rarefactions
  The spread-out parts of a wave
Transverse waves
wave particles vibrate
in an up-and-down motion.
Crests
 Highest part of a wave
Troughs
 The low points of the wave
Amplitude-
is the maximum distance
the particles in a wave
vibrate from their rest positions.
Frequency
- the number of waves

produced in a given time
Frequency= waves/time
Wave Velocity - is the speed with which a
wave crest passes by a particular point in
space
  It is measured in meters/second.

Wave Velocity = Frequency    Wavelength
 Medium        velocity m/sec
 air (20 C)       343
 air (0 C)               331
 water (25 C)          1493
 sea water             1533
 diamond              12000
 iron             5130
 copper                 3560
 glass                  5640
II. Properties of Sound
Pitch
- description of how high or low
the sound seems to a person


. Loudness-
how loud or soft a sound is
perceived to be.
Sound          Loudness (dbs) Hearing
                              Damage
Average Home   40-50

Loud Music     90-100        After long
                             exposure
Rock Concert   115-120       Progressive


Jet Engine     120-170       Pain
Ultrasound
- sound waves with frequencies above the
normal human range of hearing.
 Sounds in the range from 20-100kHz

Infrasound
- sounds with frequencies below the
 normal human range of hearing.
Sounds in the 20-200 Hz range
 the result of two or more sound
   waves overlapping
Different sounds that you hear include
(A) noise, (B) pure tones, and (C) musical
notes.
Doppler Effect
is the apparent change in the
 frequency of a sound caused by
 the motion of either the listener
or the source of the sound.
   Sounds from Moving Sources.
       A moving source of sound or a moving observer
        experiences an apparent shift of frequency called
        the Doppler Effect.
       If the source is moving as fast or faster than the
        speed of sound, the sound waves pile up into a
        shock wave called a sonic boom.
       A sonic boom sounds very much like the pressure
        wave from an explosion
Resonance
the frequency of sound waves
exactly matches the natural frequency
of an object.
Wave length, 500 to 600 km in ocean
   On December 26, they were playing in the sea when
    Tilly suddenly found the water was bubbling, like on
    top of a beer. She immediately realized tsunami was
    coming because the scene reminded her of a geography
    lesson about Hawaii's 1946 tsunami.
   Right away, Tilly told her parents, sister and other
    tourists to escape quickly, but at first they were in half
    belief. However, seeing Tilly's serious and firm
    expression, people started to be convinced of the
    seriousness of the thing and instantly left the beach.
   At last over 100 tourists were ended up in safety with
    no death
THANK YOU



Dr.Aida

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Sound wave

  • 3. Longitudinal Wave wave particles vibrate back and forth along the path that the wave travels. Compressional Wave
  • 4.  Compressions The close together part of the wave  Rarefactions The spread-out parts of a wave
  • 5. Transverse waves wave particles vibrate in an up-and-down motion.
  • 6. Crests Highest part of a wave Troughs The low points of the wave
  • 7. Amplitude- is the maximum distance the particles in a wave vibrate from their rest positions. Frequency - the number of waves produced in a given time
  • 9. Wave Velocity - is the speed with which a wave crest passes by a particular point in space It is measured in meters/second. Wave Velocity = Frequency Wavelength
  • 10.  Medium velocity m/sec air (20 C) 343 air (0 C) 331 water (25 C) 1493 sea water 1533 diamond 12000 iron 5130 copper 3560 glass 5640
  • 12. Pitch - description of how high or low the sound seems to a person . Loudness- how loud or soft a sound is perceived to be.
  • 13. Sound Loudness (dbs) Hearing Damage Average Home 40-50 Loud Music 90-100 After long exposure Rock Concert 115-120 Progressive Jet Engine 120-170 Pain
  • 14. Ultrasound - sound waves with frequencies above the normal human range of hearing. Sounds in the range from 20-100kHz Infrasound - sounds with frequencies below the normal human range of hearing. Sounds in the 20-200 Hz range
  • 15.
  • 16.  the result of two or more sound  waves overlapping
  • 17. Different sounds that you hear include (A) noise, (B) pure tones, and (C) musical notes.
  • 18.
  • 19.
  • 20.
  • 21.
  • 22. Doppler Effect is the apparent change in the frequency of a sound caused by the motion of either the listener or the source of the sound.
  • 23.
  • 24. Sounds from Moving Sources.  A moving source of sound or a moving observer experiences an apparent shift of frequency called the Doppler Effect.  If the source is moving as fast or faster than the speed of sound, the sound waves pile up into a shock wave called a sonic boom.  A sonic boom sounds very much like the pressure wave from an explosion
  • 25.
  • 26.
  • 27. Resonance the frequency of sound waves exactly matches the natural frequency of an object.
  • 28.
  • 29.
  • 30. Wave length, 500 to 600 km in ocean
  • 31. On December 26, they were playing in the sea when Tilly suddenly found the water was bubbling, like on top of a beer. She immediately realized tsunami was coming because the scene reminded her of a geography lesson about Hawaii's 1946 tsunami.  Right away, Tilly told her parents, sister and other tourists to escape quickly, but at first they were in half belief. However, seeing Tilly's serious and firm expression, people started to be convinced of the seriousness of the thing and instantly left the beach.  At last over 100 tourists were ended up in safety with no death