A  coil  of  wire  of  a  certain&n

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101.

A  coil  of  wire  of  a  certain  radius  has  100 turns and  self  inductance  of  15  mH.  The  self  inductance  of  a  second  of  a  second  similar  coil  of  500  turns  will be

  • 75 mH

  • 375 mH

  • 15 mH

  • none of these


B.

375 mH

Inductance of coil is given by

   L  =  12 μ0 N2πR

L  →  Inductance of coil

μ  → permiability of  free space

N → number of turns in coil

R  → radius of cross section

⇒ L1L1 = N2 2N1 2

∴   L2L1 = N2 2N1 2

∴    L2 = L1 N2 2N1 2

          = 5001002 × 15 mH

    L2 = 375 mH


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102.

Assertion:  Transformers  are  used  only  in  alternating current  source  not  in  direct current. 

Reason: Only  a.c.  can  be  stepped  up  or  down
by  means  of  transformers.

  • If both assertion and reason are true and reason is the correct explanation of assertion

  • If both assertion and reason are true but reason is not the correct explanation of assertion

  • If assertion is true but reason is false

  • If both assertion and reason are false


103.

Assertion:  A spark occur when the poles of a switch when the switch is opened.

Reason: Current flowing in the conductor produces magnetic field.

  • If both assertion and reason are true and reason is the correct explanation of assertion

  • If both assertion and reason are true but reason is not correct explanation of assertion

  • If assertion is true but reason is false

  • If both assertion and reason are false


104.

Assertion:  Inductance  coils  are  usually  made  of  thick copper wire. 

Reason:  Induced  current  is more  in  wire  having  less  resistance.

  • If both assertion and reason are true and reason is the correct explanation of assertion

  • If both assertion and reason are true but reason is not the correct explanation of assertion

  • If assertion is true but reason is false

  • If both assertion and reason are false


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105.

With the decrease of current in the primary coil from 2 amperes to zero value in  0.01s  the emf generated in the secondary coil is   1000 volts. The mutual inductance of the two coils is

  • 1.25 H

  • 2.50 H

  • 5.00 H

  • 10.00 H


106.

Assertion: : A current continues to follow in superconducting coil even after switch is off.

Reason: Superconducting coils show Meissner effect.

  • If both assertion and reason are true and reason is the correct explanation of assertion

  • If both assertion and reason are true but reason is not the correct explanation of assertion

  • If assertion is true but reason is false

  • If both assertion and reason are false


107.

Assertion: An emf  E· dl   is induced in a closed loop where magnetic flux is varied. The induced E is not a conservative field. 

Reason:  The line integral E¯·dl¯ around the closed loop is non-zero.

  • If both assertion and reason are true and reason is the correct explanation of the assertion

  • If both assertion and reason are true but reason is not the correct explanation of the assertion

  • If assertion is true, but reason is false

  • Both assertion and reason are false statements


108.

ASsertion:- A larger dry cell has higher emf.

Reason:-  The emf of a dry cell is proportional to its size.

  • If both assertion and reason are true and reason is the correct explanation of assertion

  • If both assertion and reason are true but reason is not the correct explanation of assertion

  • If assertion is true but reason is false

  • If both assertion and reason are false


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109.

Figure shown is a distribution of charges. The flux of electric field due to these charges through the surface S is

    

  • 3qεo

  • 2qεo

  • qεo

  • zero


110.

Assertion:  We use a thick wire in the secondary of a step down transformer to reduce the production heat. 

Reason:  When the plane of the armature is parallel to the line of force of magnetic field, the magnitude of induced e.m.f. is maximum.

  • If both the assertion and reason are true and reason is a correct explanation of the assertion

  • If both assertion and reason are true but assertion is not a correct explanation of the assertion.

  • If the assertion is true but the reason is false.

  • If both assertion and reason are false


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