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A solenoid S1 is placed inside another s...

A solenoid `S_1` is placed inside another solenoid `S_2` as shown in the fig. The radii of the inner and the outer solenoids are `r_1` and `r_2` respectively and the numbers of turns per unit length are `n_1` and `n_2` respectively. Consider a length I of each solenoid. Calculate the mutual inductance between them.

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Suppose a current I is passed through the inner solenoid `S_1` . A magnetic field `B= mu_0 n_(1)i` is produced inside `S_(1)` whereas the feild outside it is zero. The flux through each turn of `S_(2)` is
`Bipir_1^2 = mu_(0)n_(1)i pi r_(1)^(2)`
The total flux through all the turns in a length l of `S_2` is `Phi = (mu_0 n_1 ipir_1 ^2)n_2l =(mu_0 n_1 n_2 pir_1 ^2l)i`
Thus, `M =mu_0 n_1 n_2 pir_1 ^2l`.
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HC VERMA-ELECTROMAGNETIC INDUCTION-EXERCISE
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  6. A coducting circular loop of area 1mm^2 is placed coplanarly with a lo...

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  9. A conducting loop of area 5.0 cm^2 is placed in a magnetic field which...

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  10. Shows a conducting square loop placed parallel to the pole faces of a ...

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  11. A conducting square loop having edges of length2.0 cm is rotated throu...

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  12. A conducting loop of face area A and resistance R is plaed perpendicul...

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  13. A long slenoid of radius 2 cm has 100 turns/cm and carries a current o...

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  14. Shown a metallic square frame of edga a in a vertical plane. A uniform...

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  15. The north pole of a magnet is brought down along the axis of a horizon...

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  16. A wire loop confined in a plane is rotated in its open plane with some...

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  17. Shown a square loop of side 5 cm beign moved towards right at a consta...

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  18. Find the total heat produced in the loop of the previous problem durin...

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  19. A unifrom magnetic field B exists in a cylindrical region of radius 10...

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  20. Shows a square loop having 100 turns, an area of 2.5 X10^(-3) m^2 and...

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  21. Shown a circular coil of N turns and radius a, connected to a battery...

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