Home
Class 12
PHYSICS
[" If the equation of the transverse wav...

[" If the equation of the transverse wave is,"],[y=5sin2 pi[(t)/(0.04)-(x)/(40)]" ,where distance "],[" is in cm and time in second,then the "],[" wavelength of the wave is "]

Promotional Banner

Similar Questions

Explore conceptually related problems

If the equation of transverse wave is y=5 sin 2 pi [(t)/(0.04)-(x)/(40)] , where distance is in cm and time in second, then the wavelength of the wave is

If the equation of transverse wave is y=5 sin 2 pi [(t)/(0.04)-(x)/(40)] , where distance is in cm and time in second, then the wavelength of the wave is

S_(1) : A standing wave pattern if formed in a string. The power transfer through a point (other than node and antinode) is zero always S_(2) : if the equation of transverse wave is y= sin 2pi[t/0.04-x/40] , where distance is in cm. time in second, then the wavelength will be 40 cm. S_(3) : if the length of the vibrating string is kept constant, then frequency of the string will be directly proportional to sqrt(T)

S_(1) : A standing wave pattern if formed in a string. The power transfer through a point (other than node and antinode) is zero always S_(2) : if the equation of transverse wave is y= sin 2pi[t/0.04-x/40] , where distance is in cm. time in second, then the wavelength will be 40 cm. S_(3) : if the length of the vibrating string is kept constant, then frequency of the string will be directly proportional to sqrt(T)

The equation of a transverse wave on a stretched string is , y = 2 sin 2 (pi) [ t / 0.04 - x / 40 ] where distances are in meter and time in second .Find the velocity of the wave.

The equation of a wave is y=5sin((t)/(0.04)-(x)/(4)) where x is in cm and t is in seccond. The velocity of the wave will be

The equation of a progressive wave is y=0.4 sin (120 pit-(4pi)/5x) Where distance is in meters and time is in seconds. Calculate frequency and wavelength.

The equation of a transverse wave is given by y=10 sin pi (0.01 x -2t ) where x and y are in cm and t is in second. Its frequency is

The equation of a transverse wave is given by y=10 sin pi (0.01 x -2t ) where x and y are in cm and t is in second. Its frequency is