Standing waves are produced in a 10 m long stretched string. If the string vibrates in 5 segments and the wave velocity is 20 m/s, the frequency is :

(1) 2 Hz

(2) 4 Hz

(3) 5 Hz

(4) 10 Hz

Subtopic:  Standing Waves |
 70%
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A string is producing transverse vibration whose equation is y=0.021sin(x+30t), Where x and y are in meters and t is in seconds. If the linear density of the string is 1.3×10–4 kg/m, then the tension in the string in N will be :

(1) 10

(2) 0.5

(3) 1

(4) 0.117

Subtopic:  Travelling Wave on String |
 81%
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A stretched string of length l, fixed at both ends can sustain stationary waves of wavelength λ, given by 

(1) λ=n22l

(2) λ=l22n

(3) λ=2ln

(4) λ=2ln

Subtopic:  Standing Waves |
 69%
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A string on a musical instrument is 50 cm long and its fundamental frequency is 270 Hz. If the desired frequency of 1000 Hz is to be produced, the required length of the string is :

(1) 13.5 cm

(2) 2.7 cm

(3) 5.4 cm

(4) 10.3 cm

Subtopic:  Travelling Wave on String |
 83%
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The tension in a piano wire is 10N. What should be the tension in the wire to produce a note of double the frequency :

(1) 5 N

(2) 20 N

(3) 40 N

(4) 80 N

Subtopic:  Travelling Wave on String |
 85%
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A string of 7 m length has a mass of 0.035 kg. If the tension in the string is 60.5 N, then the speed of a wave on the string is :

(1) 77 m/s

(2) 102 m/s

(3) 110 m/s

(4) 165 m/s

Subtopic:  Travelling Wave on String |
 84%
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A second harmonic has to be generated in a string of length l stretched between two rigid supports. Distances from one end where the string has to be plucked and touched are :

(1) Plucked at l4 and touched at l2

(2) Plucked at l4 and touched at 3l4

(3) Plucked at l2 and touched at l4

(4) Plucked at l2 and touched at 3l4

Subtopic:  Standing Waves |
 59%
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The tension of a stretched string is increased by 69%. In order to keep its frequency of vibration constant, its length must be increased by :

(1) 20%

(2) 30%

(3) 69%

(4) 69%

Subtopic:  Travelling Wave on String |
 59%
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The length of a sonometer wire tuned to a frequency of 250 Hz is 0.60 metre. The frequency of tuning fork with which the vibrating wire will be in tune when the length is made 0.40 metre is :

(1) 250 Hz

(2) 375 Hz

(3) 256 Hz

(4) 384 Hz

Subtopic:  Standing Waves |
 87%
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Two uniform strings A and B made of steel are made to vibrate under the same tension. If the first overtone of A is equal to the second overtone of B and if the radius of A is twice that of B, the ratio of the lengths of the strings is -

(1) 1: 2

(2) 1 : 3

(3) 1 : 4

(4) 1 : 6

Subtopic:  Standing Waves |
 67%
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