A load of mass ‘M’ is attached to the bottom of a spring of mass ‘M / 3’ and spring constant ‘K’. If the system is set into oscillation, the time period of oscillation is

# A load of mass ‘M’ is attached to the bottom of a spring of mass ‘M / 3’ and spring constant ‘K’. If the system is set into oscillation, the time period of oscillation is

1. A

$\frac{2\mathrm{\pi }}{3}\sqrt{\frac{10\mathrm{M}}{\mathrm{K}}}$

2. B

$4\mathrm{\pi }\sqrt{\frac{\mathrm{M}}{3\mathrm{K}}}$

3. C

$4\mathrm{\pi }\sqrt{\frac{\mathrm{M}}{\mathrm{K}}}$

4. D

$2\mathrm{\pi }\sqrt{\frac{\mathrm{M}}{3\mathrm{K}}}$

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