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Sound is a type of
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
bouncing back of a wave when it hits a surface through which it can NOT pass
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
The material through which a wave travels
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
Objects do not produce sound when they
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
Mechanical waves can travel through all of the following EXCEPT
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
describes the number of waves that pass a certain point in a given amount of time
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
The bending of a wave as it travels from one medium to another and as a result changes speed
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
The distance between the line of origin to the top of the wave
reflection
amplitude
mechanical energy
medium
do not vibrate
refraction
frequency
vacuum
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