A half-metre long wire is lying in a plane perpendicular to the magnetic field. A force of 2 kg wt is acting on it in a magnetic field of 0.98 tesla. The current flowing in it will be

1. 400 A 

2. 40 A

3. 4 A

4. 1 A

Subtopic:  Force between Current Carrying Wires |
 69%
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A cyclotron cannot be used to accelerate 

1. Deutrons 

2. Protons 

3. Neutrons

4. Both (1) & (3)

Subtopic:  Cyclotron (OLD NCERT) |
 59%
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As indicated, a long, straight conductor XY carrying a current i1 is placed antiparallel to a conductor AB of length l carrying a current i2. How much of a force is acting on AB?

   

1. μ0i1i2

2.  μ0i1i2π

3. μ0i1i22π

4. 2μ0i1i2

Subtopic:  Force between Current Carrying Wires |
 74%
From NCERT
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Two long straight conductors with currents l1 and l2 are placed along X and Y-axes. The locus of points of zero magnetic induction is

                              

1. A parabola

2. A rectangular hyperbola

3. A straight line

4. An ellipse

Subtopic:  Magnetic Field due to various cases |
 61%
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Cyclotron frequency does not depend upon

1. Specific charge

2. Speed of revolving particle

3. Magnetic induction

4. Charge

Subtopic:  Cyclotron (OLD NCERT) |
 76%
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The maximum kinetic energy of an α-particle coming out of a cyclotron accelerator is 20 MeV. The maximum kinetic energy of a proton that can be obtained from this accelerator is 

1. 20 MeV

2. 40 MeV

3. 10 MeV

4. 5 MeV

Subtopic:  Cyclotron (OLD NCERT) |
 55%
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In a moving coil galvanometer, magnetic fields line by magnet are made

1. Uniform

2. Concentric

3. Helical

4. Radical

Subtopic:  Moving Coil Galvanometer |
 53%
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A wire abcdef with each side of length L bent as shown and carrying a current I is placed in a uniform magnetic field B parallel to the positive y-direction. What is the magnitude and direction of the force experienced by the wire?

     

1. BIL along +z-direction

2. BIL along +y-direction

3. BIL along -z-direction

4. BIL along -y-direction

 

Subtopic:  Current Carrying Loop: Force & Torque |
 58%
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Current sensitivity of a moving coil galvanometer is \(1~\text{rad /A}\) and its resistance is \(5~\Omega\). Its voltage sensitivity is:
1. \(0.2~\text{rad/V}\)
2. \(0.1~\text{rad/V}\)
3. \(1~\text{rad/V}\)
4. \(2~\text{rad/V}\) 

Subtopic:  Moving Coil Galvanometer |
 89%
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Torque on a current-carrying coil is maximum in a uniform magnetic field, when

1. Plane of the coil makes an angle 45 with the field

2. Plane of the coil is perpendicular to the field

3. Plane of the coil is parallel to the field

4. Plane of the coil makes an angle 60 with the field

 

Subtopic:  Current Carrying Loop: Force & Torque |
 51%
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