Two magnets are held together and are allowed to oscillate in the eart...
Here,
T1 = 60/10 = 6sec,
and T2= 60/4 = 15sec
M1/M2 = T22 + T12 / T22 - T12
= 29/21
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Two magnets are held together and are allowed to oscillate in the eart...
's magnetic field. The oscillation occurs because the magnetic field of the Earth exerts a force on the magnets, causing them to move back and forth.
When two magnets are held together, their magnetic fields interact with each other. If the magnets are aligned in the same direction, they will attract each other and stick together. However, if the magnets are aligned in opposite directions, they will repel each other and try to move apart.
In the Earth's magnetic field, the magnets experience a force due to the interaction between their magnetic fields and the Earth's magnetic field. This force causes the magnets to move, resulting in oscillation.
As the magnets move away from each other, the force of attraction between them decreases. Eventually, the force of repulsion between the magnets becomes stronger, causing them to move back towards each other. This back-and-forth motion continues, resulting in an oscillating motion.
The frequency and amplitude of the oscillation depend on factors such as the strength of the magnets, their distance apart, and the strength of the Earth's magnetic field. These factors determine the force exerted on the magnets and the rate at which they oscillate.
It's important to note that the Earth's magnetic field is relatively weak compared to the magnetic fields generated by permanent magnets. Therefore, the oscillation of the magnets in the Earth's magnetic field may not be very noticeable unless the magnets are relatively small or the Earth's magnetic field is amplified in some way.