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A mass m is suspended from a spring of f...


A mass m is suspended from a spring of force constant k and just touches another identical spring fixed to the floor as shown in the fig. The time period of small oscillations is

A

`2pisqrt((m)/(k))`

B

`pisqrt((m)/(k))+pisqrt((m)/((k)/(2)))`

C

`pisqrt((m)/((3k)/(2)))`

D

`pisqrt((m)/(k))+pisqrt((m)/(2k))`

Text Solution

Verified by Experts

The correct Answer is:
D

When the spring undergoes displacement in the downward direction it completes one-half oscillation while it completes another half oscillation in the upward direction. The total time period is
`T=pisqrt((m)/(k))+pisqrt((m)/(2k))`
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