 
 
 
 
 
   
 
Taking into account the lateral dimensions of the culvert, sketch the resultant wave amplitude s(t) detected at position A as a function of time t and calculate the dominant frequency of the reflected sound just before it becomes inaudible.
 5 mm.  
The bar is placed under a tension of 
5000 
N.  Compare the 1-way (end to end) travel times for 
a transverse vibrational pulse (as for a stretched string; 
not a transverse sound pulse, which might 
also be possible in a solid) and a longitudinal sound pulse.  
Neglect gravity.
5 mm.  
The bar is placed under a tension of 
5000 
N.  Compare the 1-way (end to end) travel times for 
a transverse vibrational pulse (as for a stretched string; 
not a transverse sound pulse, which might 
also be possible in a solid) and a longitudinal sound pulse.  
Neglect gravity.  
 of the reflected waves at the receiver is related to their source frequency
  of the reflected waves at the receiver is related to their source frequency 
   by
 by  
 where  v  is the speed of the waves.
  where  v  is the speed of the waves.  
  .
 In this case, show that the equation above becomes
.
 In this case, show that the equation above becomes 
 

 the speed of sound.  
The sonic boom reaches a man on the ground exactly 
1 minute after the plane passes directly overhead.  
What is the altitude of the plane?  
Assume the speed of sound to be 330 m/s.
the speed of sound.  
The sonic boom reaches a man on the ground exactly 
1 minute after the plane passes directly overhead.  
What is the altitude of the plane?  
Assume the speed of sound to be 330 m/s.  
 
 
 
 
