A traveling wave on a taut string with a tension force T, is given by the wave function: y(x,t) = 0.05sin(2Ttx-100rt), where %3D x and y are in meters and t is in seconds. If the linear mass density of the string is given by µ = 0.01 kg/m, then the tension force on the string is, O 10 N O 1N O 25 N O 0.5 N O 100 N

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Chapter17: Sound
Section: Chapter Questions
Problem 95P: A sound wave of a frequency of 2.00 kHz is produced by a string oscillating in the n=6 mode. The...
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A traveling wave on a taut string with a
tension force T, is given by the wave
function: y(x,t) = 0.05sin(2rtx-100tt), where
%3D
x and y are in meters and t is in seconds. If
the linear mass density of the string is given
by µ = 0.01 kg/m, then the tension force on
the string is,
O 10 N
O 1N
O 25 N
O 0.5 N
O 100 N
Transcribed Image Text:A traveling wave on a taut string with a tension force T, is given by the wave function: y(x,t) = 0.05sin(2rtx-100tt), where %3D x and y are in meters and t is in seconds. If the linear mass density of the string is given by µ = 0.01 kg/m, then the tension force on the string is, O 10 N O 1N O 25 N O 0.5 N O 100 N
A traveling wave on a taut string with a
tension force T is given by the wave
function: y(x,t) = 0.1sin(4x+100t), where x
%3D
and y are in meters and t is in seconds. The
linear mass density of the string is u = 0.1
Kg/m. If the tension is multiplied by a factor
of four, while keeping the same amplitude,
same wavelength, and same linear mass
density, then the new power of the wave, is
O 125 W
O 2000 W
O 1000 W
О 250 W
O 500 W
Transcribed Image Text:A traveling wave on a taut string with a tension force T is given by the wave function: y(x,t) = 0.1sin(4x+100t), where x %3D and y are in meters and t is in seconds. The linear mass density of the string is u = 0.1 Kg/m. If the tension is multiplied by a factor of four, while keeping the same amplitude, same wavelength, and same linear mass density, then the new power of the wave, is O 125 W O 2000 W O 1000 W О 250 W O 500 W
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