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131.

A square loop ABCD, carrying a current I2, is placed near and coplanar with a long straight conductor XY carrying a current I1, as shown in figure. The net force on the loop will be

     

  • μ0 I1 I22 π

  • μ0 I1I2 L2 π

  • 2 μ0 I1I2 L3 π

  • 2μ0 I1 I23 π


D.

2μ0 I1 I23 π

Force on arm AB due to current in conductor XY is

  F1μ04π  2 I1I2 LL2

  F1μ0I1I23 π

This force acting towards the wire in the plane of loop.

Force on arm CD due to current in conductor XY is

  F2μ04π 2 I1 I2L4 π 3L 2

  F2μ0 I1I23 π

F2 is away from the wire the plane loop.

Ner force on the loop is

   F =  F1 - F2

      = μ0 I1 I2π - μ0 I1I23 π

      = μ0 I1 I2π 1 - 13 

  F = 23 μ0 I1 I2π          


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132.

Three identical charges are placed at the vertices of an equilateral triangle. The force experienced by each charge, ( if k = 1/4π ε0 ) is

  • 2k q2r2

  • k q22 r2

  • 3 k q2r2

  • k q22 r2


133.

The angle of dip at a certain place where the horizontal and vertical components of the earth's magnetic field are equal is

  • 30o

  • 75o

  • 60o

  • 45o


134.

Assertion:  Lines of force are perpendicular to conductor surface.

Reason:  Generally electric field is perpendicular to equipotential surface.

  • 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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135.

The force per unit length between two straight conductors separated by a distance of 0.02 m is 2 x 10-3 N m-1. The current in one conductor is 10 A and that in the other conductor is

  • 20 A

  • 5 A

  • 2 A

  • 10 A


136.

The angle of dip at the poles and the equator respectively are

  • 30o, 60o

  • 0o, 90o

  • 45o, 90o

  • 90o, 0o


137.

Assertion:  The conductivity of an electrolyte is very low as compared to a metal at room temperature. 

Reason:  The number density of free ions in electrolyte is much smaller as compared to the number density of free electrons in metals. Further, ions drift much more slowly, being heavier.

  • 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.


138.

A particle of charge q and mass m starts moving from the origin under the action of an electric field E = E0i^  and B = B0 i^ velocity  v = v0 j^. The speed of the particle will become 52 ν0 after a time

  • m ν0q E0

  • m ν02q E0

  • 3 02q E0

  • 5 02q E0


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139.

Assertion:  Magnetic lines forms closed loops in nature. 

Reason: Mono-magnetic pole does not exist in nature.

  • 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.


140.

An electron projected with velocity v = v0 i^ in the electric field E = E0 j^. Trace the path followed by the electron E0.

  • Parabola

  • Circle

  • Straight line in + y direction.

  • Straight line in -y direction


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