Home
Class 11
PHYSICS
Determine the amplitudes of the resultan...

Determine the amplitudes of the resultant motion when two sinusoidal waves of same frequency , travelling in the same direction are combined . Their amplitudes are `3.0 cm and 4.0 cm` and they differ in phase by `pi//2 radians `.

Promotional Banner

Similar Questions

Explore conceptually related problems

Two sinusoidal wave having the same frequency and travelling in the same direction are combined. What is the amplitude of the resultant motion if their amplitudes are 3cm and 4cm and they differ in phase by pi//2 radian?

A sinusoidal wave travelling in the same direction have amplitudes of 3 cm and 4 cm and difference in phase by pi//2 . The resultant amplitude of the superimposed wave is

Two waves of equal amplitude A, and equal frequency travel in the same direction in a medium. The amplitude of the resultant wave is

Two waves of equal amplitude A, and equal frequency travel in the same direction in a medium. The amplitude of the resultant wave is

Two waves of equal amplitude A, and equal frequency travel in the same direction in a medium. The amplitude of the resultant wave is

Two sinusoidal waves of the same frequency travel in the same direction along a string. If A_(1) =m 3.0 cm, A_(2) = 4.0 cm, phi_(1) = 0 , and phi_(2) = pi//2 rad , what is the amplitude of the resultant wave ?

Two sinusoidal waves of the same frequency travel in the same direction along a string. If A_(1) =m 3.0 cm, A_(2) = 4.0 cm, phi_(1) = 0 , and phi_(2) = pi//2 rad , what is the amplitude of the resultant wave ?

Two identical sinusoidal waves each of amplitude 10 mm with a phase difference of 90^(@) are travelling in the same direction in a string. The amplitude of the resultant wave is

Two identical sinusoidal waves each of amplitude 10 mm with a phase difference of 90^(@) are travelling in the same direction in a string. The amplitude of the resultant wave is