Home
Class 11
PHYSICS
[" A wave is represented by the equation...

[" A wave is represented by the equation "y=],[" Q."0.5sin(10t+x)m" .It is a travelling wave "],[" 28propagating along "+X" direction with "],[" velocity "]

Promotional Banner

Similar Questions

Explore conceptually related problems

A wave is represented by the equation y=0.5 sin (10 t-x)m . It is a travelling wave propagating along the + x direction with velocity

A wave is represented by the equation y=0.5 sin (10 t-x)m . It is a travelling wave propagating along the + x direction with velocity

A wave is represented by the equation : y=a sin (0.01x-2t) where a and x are in cm . velocity of propagation of wave is

A wave is represented by the equation, y = 0.1 sin (60 t + 2x) , where x and y are in metres and t is in seconds. This represents a wave

A wave is represented by the equation y = A sin (10 pi x + 15 pi t + pi//3) Where x is in metre and t is in second. a wave travelling in the positive x-direction with a velocity of 1.5 m/s a wave travelling in the negative x-direction with a velocity 1.5 m/s a wave travelling in the negative x-direction with a wavelength of 0.2 m a wave travelling in the positive x-direction with a wavelength 0.2 m

A transverse wave is represented by the equation y=2sin(30t-40x) and the measurements of distances are in meters then the velocity of propagation is

The equation of a wave is represented by y = 10^-4 sin (100t-x/10) , the velocity of the wave will be

A wave represented by the given equation Y = A sin (10 pi x + 15 pi t + (pi)/(3)) , where x is in meter and t is in second. The expression represents (1) A wave travelling in the negative X direction with a velocity of 1.5 m/sec (2) A wave travelling in the negative X direction with a wavelength of 0.2 m (3) A wave travelling in the positive X direction with a velocity of 1.5 m/sec. (4) A wave travelling in the positive X direction with a wavelength of 0.2 m

The equation of a wave is represented by y=10^-4sin[100t-(x)/(10)] . The velocity of the wave will be