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When we pluck the wire of a sitar, the w...

When we pluck the wire of a sitar, the waves produced in the wire are

A

longitudinal

B

transverse

C

sometimes longitudinal and sometimes transverse

D

electiumagnetic

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The correct Answer is:
**Step-by-Step Solution:** 1. **Understanding the Setup**: When a sitar's wire is plucked, it is stretched and then released. This action creates a disturbance in the wire, which leads to the formation of waves. 2. **Identifying the Type of Wave**: The key to identifying the type of wave produced is to observe the motion of the particles in the wire. When the wire is plucked, the particles of the wire move up and down (or side to side) while the wave itself travels along the length of the wire. 3. **Direction of Particle Motion**: In the case of the sitar wire, the particles oscillate in a direction that is perpendicular to the direction in which the wave travels. If we consider the wave traveling horizontally (along the x-axis), the particles of the wire move vertically (along the y-axis). 4. **Conclusion on Wave Type**: Since the motion of the particles is perpendicular to the direction of wave propagation, we classify the waves produced in the sitar wire as transverse waves. 5. **Final Answer**: Therefore, when we pluck the wire of a sitar, the waves produced in the wire are transverse waves. ---
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MCGROW HILL PUBLICATION-WAVE MOTION AND SOUND -HIGH ORDER THINKING QUESTIONS
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  3. The medium for wave propagation should have the property of

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  8. Water waves are

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  9. With decrease in water vapour content in air, velocity of sound

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  10. Suresh standing symmetrically between two cliffs claps his hands and s...

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  11. In question 93, if Suresh were standing unsym-metrically between paral...

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  12. Wavelength of ultrasonic waves in air is of the order of :

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  13. If the frequency of a tuning fork is 400 Hz, how far will the sound tr...

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  14. Velocity of sound is maximum in

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  15. Pitch of sound is related to its

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  16. Quality of sound depends on

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  17. Walls of auditorium should be

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  19. In the above question, the waves are

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