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Question: In an AC generator, the rate of change of magnetic flux through the coil is maximum when the angle b...

In an AC generator, the rate of change of magnetic flux through the coil is maximum when the angle between the plane of the coil is maximum when the angle between the plane of the coil and lines of force is
A. 0°
B. 60°60°
C. 30°30°
D. 90°90°

Explanation

Solution

Use the formula for magnetic flux through a coil in an AC generator. Take the derivative of that formula to get the rate of change in magnetic flux. Magnetic flux through a coil is maximum when it is equal to zero. Thus, equate this equation to zero and find the angle between the plane of the coil and lines of force.

Formula used:
Magneticflux=NABsinϕMagnetic \quad flux= NABsin\phi

Complete step by step answer:
Magnetic flux through the coil in an AC generator is given by,
Magneticflux=NABsinϕMagnetic \quad flux= NABsin\phi
Then, rate of change of magnetic flux through the coil is given by,
dϕdt\dfrac {d\phi}{dt}= NAB ωcosϕ\omega cos\phi
The rate of change of magnetic flux through the coil is maximum when NAB ωcosϕ\omega cos\phi is maximum. NAB ωcosϕ\omega cos\phi will be maximum when cosϕcos\phi will be maximum.
cosϕ\Rightarrow cos\phi= maximum
cosϕ=1\Rightarrow cos\phi = 1
ϕ=0°\Rightarrow \phi= 0°
Thus, the rate of change of magnetic flux through the coil is maximum when the angle between the plane of coil and lines of force is 0°.
Hence, the correct answer is option A i.e. 0°.

Note:
When the angle between the plane of coil and lines of force is 90°90°, the maximum number of lines of force passes through the coil. These AC generators can be stepped up or stepped down using transformers. Large power AC generators are hazardous. In an AC generator for any given number of rotations induced emf remains constant and thus by applying any low resistance across the output we can generate enormous power. Generation of AC is more economical as compared to generation of DC.