EASY
Earn 100

A standing wave in a string clamped between two rigid supports vibrate with time period . For an antinode, displacement is at its maximum at , is . Choose the correct statement.
(a)The energy density of a node is equal to energy density of an antinode for the first time at .
(b)The energy density of node and antinode becomes equal after time .
(c)The displacement of the particle at antinode at is .
(d)The displacement of the particle at node is non-zero.

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Important Questions on Wave Motion on a String
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(All quantities are in units.)

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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,

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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.

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