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Question: The length of a magnet is large compared to its width and breadth. The time period of its oscillatio...

The length of a magnet is large compared to its width and breadth. The time period of its oscillation in a vibration magnetometer is 2 s. The magnet is cut along its length into three equal parts and three parts are then placed on each other with their like poles together. The time period of this combination will be

A

2 s

B

2/3 s

C

D

2/3s2 / \sqrt { 3 } s

Answer

2/3 s

Explanation

Solution

Initially, the time period of the magnet

T=2=2πIMBT = 2 = 2 \pi \sqrt { \frac { I } { M B } } ..... (i)

For each part, it’s moment of inertia =I27= \frac { I } { 27 } and magnetic moment =M3= \frac { M } { 3 }

\therefore Moment of inertia of system Is=I27×3=I9I _ { s } = \frac { I } { 27 } \times 3 = \frac { I } { 9 }

Magnetic moment of system Ms=M3×3=MM _ { s } = \frac { M } { 3 } \times 3 = M

Time period of system