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Among the following, the equation which represents a progressive wave is

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Important Questions on Wave Motion on a String

MEDIUM
The driver of bus approaching a big wall notices that the frequency of his bus's horn changes from 420 Hz to 490 Hz when he hears it after it gets reflected from the wall. Find the speed of the bus if speed of the sound is 330 ms1:
MEDIUM
A transverse wave travels on a taut steel wire with a velocity of v when tension in it is 2.06×104N. When the tension is changed to T, the velocity changed to v2. The value of T is close to:
MEDIUM
Assume that the displacement s of air is proportional to the pressure difference Δp created by a sound wave. Displacement (s) further depends on the speed of sound (v), density of airρ and the frequency (f). If Δp=10 Pa, n=300 m s-1, p=1 kg m-3 and  f=1000 Hz, then s will be of the order of (take the multiplicative constant to be 1)
EASY
A pendulum vibrates with a time period of 1 second. The sound produced in it is in the range of
EASY
The maximum transverse velocity and maximum transverse acceleration of a harmonic wave in a one-dimensional string are ms-1 and 1 ms-2 respectively. The phase velocity of the wave is ms-1 . The waveform is
HARD
A ball is moving uniformly in a circular path of radius 1 m with a time period of 1.5 s. If the ball is suddenly stopped at t=8.3 s, the magnitude of the displacement of the ball with respect to its position at t=0 s is closest to:
EASY
In a resonance tube experiment when the tube is filled with water up to a height of 17.0 cm, from bottom, it resonates with a given tuning fork. When the water level is raised the next resonance with the same tuning fork occurs at a height of 24.5 cm. If the velocity of sound in air is 330 m s-1, the tuning fork frequency is :
EASY
A sound wave of frequency 245 Hz travels with the speed of 300 m s-1 along the positive x-axis. Each point of the wave moves to and fro through a total distance of 6 cm. What will be the mathematical expression of this travelling wave?
EASY

The figure below shows pressure variation in two different sound waves in air with time at a given position. Both the figures are drawn to the same scale.

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Which of the following statement is true?

EASY

A simple wave motion is represented by y=5sin4πt+3cos4πt. Its amplitude is

EASY
A bomb blasts on moon. Its sound will be heard on earth after
MEDIUM
A transverse wave of frequency 500 Hz and speed 100 m s-1 is travelling in the positive, x direction on a long string. A time t=0 s the displacements at x=0.0 m and at x=0.25 m are 0.0 m and 0.02 m, respectively. The displacement at x=0.2 m at t=5×104 s is, 
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On an average, a human heart is found to beat 72 times a minute. Its frequency and period are
MEDIUM

A transverse wave propagating along x -axis is represented by

yx,t=8.0sin0.5πx-4πt-π4

where x is in meters and t is in seconds. The speed of the wave is

EASY
Which of the following equations represents a travelling wave?
MEDIUM

The transverse displacement at position x and time t in a string due to a travelling wave is given by y(x, t)=3.0cos(πx-4πt)cm, where x is in centimeters and t is in seconds. Which of the following statements is wrong?

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EASY
To propagate both longitudinal and transverse waves, a material must have
EASY
A progressive wave travelling along the positive x- direction is represented by yx,t=A sin(kx-ωt+ϕ) . Its snapshot at t=0 is given in the figure.
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For this wave, the phase ϕ is:
MEDIUM
A wave pulse in a string is described by the equation y1=53x-4t2+2 and another wave pulse in the same string is described by y2=-53x+4t-62+2 . The values of y1,y2 and x are in metres and t is in seconds. Which of the following statement is correct?
EASY
A travelling harmonic wave is represented by the equation yx, t=10-3sin50t+2x, where x and y are in meter and t is in seconds. Which of the following is a correct statement about the wave?