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Question 23
A coil is rotated at frequency $f$ in a uniform magnetic field. The magnetic flux linking the coil is a maximum at time $t_1$ and the emf induced in the coil is a ma... show full transcript
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Answer
To determine the smallest value of , we need to consider the relationship between the magnetic flux and induced emf in the context of rotational motion.
When the coil is rotated in a magnetic field, the magnetic flux through the coil is given by:
Where:
The conditions provided indicate that the magnetic flux is maximum at time . This occurs when , or at the moment where the plane of the coil is perpendicular to the magnetic field. The emf induced in the coil is maximum at time when the rate of change of magnetic flux is at its peak. A maximum emf occurs when the magnetic flux is changing the fastest, which corresponds to when degrees (the plane of the coil is parallel to the magnetic field).
Therefore, the time period of to reflects a quarter of the full rotation. Given the frequency , the period of the rotation can be expressed as:
T = rac{1}{f}Consequently, the time difference will be:
t_1 - t_2 = rac{T}{4} = rac{1}{4f}Thus, the smallest value of is:
Answer:
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