Embibe Experts Solutions for Chapter: Mechanical Wave, Exercise 1: JEE Advanced Paper 2 - 2019
Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Mechanical Wave, Exercise 1: JEE Advanced Paper 2 - 2019
Attempt the free practice questions on Chapter 9: Mechanical Wave, Exercise 1: JEE Advanced Paper 2 - 2019 with hints and solutions to strengthen your understanding. EMBIBE CHAPTER WISE PREVIOUS YEAR PAPERS FOR PHYSICS solutions are prepared by Experienced Embibe Experts.
Questions from Embibe Experts Solutions for Chapter: Mechanical Wave, Exercise 1: JEE Advanced Paper 2 - 2019 with Hints & Solutions
A source, approaching with speed towards the open end of a stationary pipe of length , is emitting a sound of frequency . The farther end of the pipe is closed. The speed of sound in air is and is the fundamental frequency of the pipe. For which of the following combination(s) of and , will the sound reaching the pipe lead to a resonance?

Answer the following by appropriately matching the lists based on the information given in the paragraph.
A musical instrument is made using four different metal strings, and with mass per unit length and respectively. The instrument is played by vibrating the strings by varying the free length in between the range and It is found that in string- at free length and tension the fundamental mode frequency is
List-I gives the above four strings while list-II lists the magnitude of some quantity.
List I | List II | ||
---|---|---|---|
(I) | String | (P) | |
(II) | String | (Q) | |
(III) | String | (R) | |
(IV) | String | (S) | |
(T) | |||
(U) |
If the tension in each string is the correct match for the highest fundamental frequency in units will be,

Answer the following by appropriately matching the lists based on the information given in the paragraph.
A musical instrument is made using four different metal strings, and with mass per unit length and respectively. The instrument is played by vibrating the strings by varying the free length in between the range and It is found that in string- at free length and tension the fundamental mode frequency is
List-I gives the above four strings while list-II lists the magnitude of some quantity.
List I | List II | ||
---|---|---|---|
(I) | String | (P) | |
(II) | String | (Q) | |
(III) | String | (R) | |
(IV) | String | (S) | |
(T) | |||
(U) |
The length of the strings and are kept fixed at and respectively. Strings and are vibrated at their and harmonics, respectively such that all the strings have same frequency. The correct match for the tension in the four strings in the units of will be.

In an experiment, to measure the speed of sound by a resonating air column, a tuning fork of frequency is used. The length of the air column is varied by changing the level of water in the resonance tube. Two successive resonances are heard at air columns of length and . Which of the following statements is (are) true?

A stationary tuning fork is in resonance with an air column in a pipe. If the tuning fork is moved with a speed of in front of the open end of the pipe and parallel to it, the length of the pipe should be changed for the resonance to occur with the moving tuning fork. If the speed of sound in air is the smallest value of the percentage change required in the length of the pipe is ________.

A train moving with a uniform velocity of approaches another train standing on a platform. An observer moves with a uniform velocity of towards as shown in figure. Both the trains are blowing whistles of same frequency When is away from and distance between and is the number of beats heard by is____.
[Speed of the sound

Two vectors and are defined as and , where a is a constant and If at time for the first time, the value of in seconds, is_______

Two men are walking along a horizontal straight line in the same direction. The man in front walks at a speed and the man behind walks at a speed . A third man is standing at a height above the same horizontal line such that all three men are in a vertical plane. The two walking men are blowing identical whistles which emit a sound of frequency . The speed of sound in air is . At the instant, when the moving men are apart, the stationary man is equidistant from them. The frequency of beats in , heard by the stationary man at this instant, is __________.
