The magnetic field at origin in the situation shown in the figure has magnitude (BCD is a semi-circular arc of radius R in xz plane) 

                          

1. μ0l4πR

2. μ0l2πR4+π2

3. μ0l2πRR2+π2

4. μ0l4πR1+π2

Subtopic:  Magnetic Field due to various cases |
 62%
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Three long straight wires A, B, and C are shown in figure. The resultant magnetic force on wire B is 

                                          

1. Towards left

2. Towards right

3. Upwards (perpendicular to the plane of paper)

4. Downwards (perpendicular to the plane of paper)

Subtopic:  Force between Current Carrying Wires |
 79%
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In a moving coil galvanometer the deflection θ of the coil is related to the electric current by the relation

1. l tan θ

2. lcos θ

3. lθ

4. lθ2

Subtopic:  Moving Coil Galvanometer |
 81%
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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 |
 71%
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A cyclotron cannot be used to accelerate 

1. Deutrons 

2. Protons 

3. Neutrons

4. Both (1) & (3)

 60%
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As indicated, a long, straight conductor \(XY\) carrying a current \(i_1\) is placed antiparallel to a conductor \(AB\) of length \(l\) carrying a current \(i_2.\) How much of a force is acting on \(AB?\)

                
1. \(\mu_{0} i_{1} i_{2}\)
2. \(\dfrac{\mu_{0} i_{1} i_{2}}{\pi}\)
3. \(\dfrac{\mu_{0} i_{1} i_{2}}{2 \pi}\)
4. \(2 \mu_{0} i_{1} i_{2}\) 

Subtopic:  Force between Current Carrying Wires |
 76%
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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 |
 64%
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Cyclotron frequency does not depend upon

1. Specific charge

2. Speed of revolving particle

3. Magnetic induction

4. Charge

 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

 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 |
 54%
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