subject
Physics, 09.04.2020 00:34 asdasddas776

A small sphere of radius R is arranged to pulsate so that its radius varies in simple harmonic motion between a minimum of R−x and a maximum of R+x with frequency f. This produces sound waves in the surrounding air of density rho and bulk modulus B.

a- Find the intensity of sound waves at the surface of the sphere. (The amplitude of oscillation of the sphere is the same as that of the air at the surface of the sphere.)

b-Find the total acoustic power radiated by the sphere

c-At a distance d≫R from the center of the sphere, find the amplitude of the sound wave.

d-At a distance d≫R from the center of the sphere, find the pressure amplitude of the sound wave.

e-At a distance d≫R from the center of the sphere, find the intensity of the sound wave.

Express your answer in terms of the variables R, x, f, and appropriate constants.

ansver
Answers: 2

Another question on Physics

question
Physics, 22.06.2019 21:50
Determine the moment of the force f about an axis extending between a and c. express the result as a cartesian vector. a is at the origin, c is at (4,3,0) and f = (4i + 12j -3k) lb coming out of b (4,3,-2).
Answers: 2
question
Physics, 22.06.2019 23:20
Acharge q experiences no net force at a particular point in space. which of the following situations described below must always be true? -there are no other charges nearby. -if there are other charges nearby, they must all have the same sign as q. -if there are other charges nearby, they must all have the opposite sign of q. -if there are other charges nearby, the total positive charge must equal the total negative charge. -none of the above
Answers: 2
question
Physics, 23.06.2019 00:20
You are the coordinator for a program that is going to take place at night in a rectangular amphitheater in the mountains. you will have no access to any electricity, but you must be able to illuminate the entire grounds. you know the intensity of the light from a lantern varies inversely as the square of the distance from the lantern. suppose the intensity is 90 when the distance is 5 m. a. write an equation to model the situation. b. solve for the constant of variation. c. write the equation to model the situation using the constant () of variation. d. you have been given lanterns with 40 light intensity. use your equation to solve for the distance from the lantern. e. you need to illuminate 225 km. how many meters do you need to light? f. how many lanterns will you need?
Answers: 3
question
Physics, 23.06.2019 03:00
It is advised not to hold the thermometer by the bulb while reading it
Answers: 1
You know the right answer?
A small sphere of radius R is arranged to pulsate so that its radius varies in simple harmonic motio...
Questions