A travelling wave in a string is represented by y=3sinπ2t-π4x. The phase difference between two particles separated by a distance of 4 cm is:

(Take x and y in cm and t in seconds)

(1) π2 rad

(2) π4 rad

(3) π rad

(4) 0

Subtopic:  Wave Motion |
 78%
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A transverse wave is described by the equation y=Asin2πnt-x/λ0. The maximum particle velocity is equal to 3 times the wave velocity if:

(1) λ0=πA3

(2) λ0=2πA3

(3) λ0=πA

(4) λ0=3πA

Subtopic:  Wave Motion |
 85%
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If u is the instantaneous velocity of the particle and v is the velocity of the wave, then:

(1) u is perpendicular to v.

(2) u is parallel to v.

(3) |u| is equal to |v|.

(4) |u| = (slope of waveform)x|v|.

Subtopic:  Wave Motion |
 63%
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In a simple harmonic wave, the minimum distance between the particles in the same phase always having the same velocity is:

(1) λ/4

(2) λ/3

(3) λ/2

(4) λ

Subtopic:  Wave Motion |
 57%
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The tension in a wire is decreased by 19%. The percentage decrease in frequency will be:

(1) 0.19%

(2) 10%

(3) 19%

(4) 0.9%

Subtopic:  Travelling Wave on String |
 63%
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On the superposition of the two waves given as:

y1=A0sin (ωt-kx)
and y2=A0 cosωt-kx+π6,

the resultant amplitude of oscillations will be:

(1) 3A0

(2) A02

(3) A0

(4) 32A0

Subtopic:  Wave Motion |
 53%
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Two waves of amplitudes A0 and xA0 pass through a region. If x>1, the difference in the maximum and minimum resultant amplitude possible is:

(1) (x+1)A0

(2) (x-1)A0

(3) 2xA0

(4) 2A0

Subtopic:  Standing Waves |
 52%
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Which of the following represents a standing wave?

(1) y=A sin (ωt-kx)

(2) y=Ae-bx sin (ωt-kx+α)

(3) y=A sin kx sin(ωt-θ)

(4) y=(ax+b ) sin (ωt-kx)

Subtopic:  Standing Waves |
 70%
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The equation of a standing wave in a stretched string is given by y=5 sin πx3 cos(40πt) where x and y are in cm and t is in seconds. The separation (in cm) between two consecutive nodes is:

(1) 1.5

(2) 3

(3) 6

(4) 4

Subtopic:  Standing Waves |
 78%
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In a stationary wave:

(1) Strain is maximum at nodes

(2) Strain is minimum at nodes

(3) Strain is maximum at antinodes

(4) Amplitude is zero at all points

Subtopic:  Standing Waves |
 64%
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