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A source of sonic oscillation with frequ...

A source of sonic oscillation with frequency `n_0=600Hz` moves away and at right angles to a wall with velocity `u=30(m)/(s)`. A stationary reciever is located on the line of source in succession wall`rarr`source`rarr`receiver. If velocity of osund propagation is `v=330(m)/(s)`, then
Q. The beat frequency recorded by the receiver is

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A source of sonic oscillation with frequency n_0=600Hz moves away and at right angles to a wall with velocity u=30(m)/(s) . A stationary reciever is located on the line of source in succession wall rarr source rarr receiver. If velocity of osund propagation is v=330(m)/(s) , then Q. The wavelength of direct waves received by the receiver is

A source of sonic oscillation with frequency n_0=600Hz moves away and at right angles to a wall with velocity u=30(m)/(s) . A stationary reciever is located on the line of source in succession wall rarr source rarr receiver. If velocity of osund propagation is v=330(m)/(s) , then Q. The wavelength of direct waves received by the receiver is

A source of sonic oscillation with frequency n_0=600Hz moves away and at right angles to a wall with velocity u=30(m)/(s) . A stationary reciever is located on the line of source in succession wall rarr source rarr receiver. If velocity of osund propagation is v=330(m)/(s) , then Q. The wavelength of reflected waves received by the receiver is

A source of sonic oscillation with frequency n_0=600Hz moves away and at right angles to a wall with velocity u=30(m)/(s) . A stationary reciever is located on the line of source in succession wall rarr source rarr receiver. If velocity of osund propagation is v=330(m)/(s) , then Q. The wavelength of reflected waves received by the receiver is

A source of sonic oscillation with frequency n_0=600Hz moves away and at right angles to a wall with velocity u=30(m)/(s) . A stationary reciever is located on the line of source in succession wall rarr source rarr receiver. If velocity of osund propagation is v=330(m)/(s) , then Q. The wavelength of reflected waves received by the receiver is

A source of sonic oscillations with frequency v_(0)=100Hz moves at right angles to the wall with a velocity u=0.17 m//s . Two stationary receivers R_(1) and R_(2) are located on a straight line, coinciding with the trajectory of the source , in the following succession : R_(1)- source -R_(2)- wall. Which receiver registers the beatings and what is the beat frequency ? The velocity of sound is equal to upsilon= 340 m//s .

A source of sonic oscillations with frequency v_(0)=100Hz moves at right angles to the wall with a velocity u=0.17 m//s . Two stationary receivers R_(1) and R_(2) are located on a straight line, coinciding with the trajectory of the source , in the following succession : R_(1)- source -R_(2)- wall. Which receiver registers the beatings and what is the beat frequency ? The velocity of sound is equal to upsilon= 340 m//s .

A source of sonic oscillations with frequency v_(0)=100Hz moves at right angles to the wall with a velocity u=0.17 m//s . Two stationary receivers R_(1) and R_(2) are located on a straight line, coinciding with the trajectory of the source , in the following succession : R_(1)- source -R_(2)- wall. Which receiver registers the beatings and what is the beat frequency ? The velocity of sound is equal to upsilon= 340 m//s .

A source of sonic oscillations with frequency v_(0)=1700Hz and a receiver are located at the same point. At the moment t=0 the source starts receding from the receiver with constant acceleration w=10.0m//s^(2) . Assuing the velocity of sound to be equal to v=340 m//s , find the oscillation frequency registered by the stationary receiver t=10.0s after the start of motion.