A closely wound solenoid of \(2000\) turns and area of cross-section as \(1.6\times10^{-4}~\text m^2,\) carrying a current of \(4.0~\text A,\) is suspended through its center allowing it to turn in a horizontal plane. The magnetic moment associated with the solenoid is:
1. \(0.18~\text{Am}^2\)
2. \(3.24~\text{Am}^2\)
3. \(1.28~\text{Am}^2\)
4. \(0.38~\text{Am}^2\)

Subtopic:  Magnetic Moment |
 83%
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A monoenergetic electron beam with an electron speed of 5.20 x 106 m/s is subject to a magnetic field of 1.30 x 10-4 T normal to the beam velocity. What is the radius of the circle traced by the beam, given e/m for electron equals 1.76 x 1011 C kg-1?

1. 22.7 cm
2. 21.3 cm
3. 20.0 cm
4. 21.9 cm

 64%
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An electron gun with its collector at a potential of 100 V fires out electrons in a spherical bulb containing hydrogen gas at low pressure ~10-2mmofHg. A magnetic field of 2.83×10-4T curves the path of the electrons in a circular orbit of radius 12.0 cm. (The path can be viewed because the gas ions in the path focus the beam by attracting electrons, and emitting light by electron capture; this method is known as the 'fine beam tube' method. Specific charge ratio (e/m) is:
1. \(1.21 \times 10^{11} \mathrm{C}~ \mathrm{kg}^{-1}\)
2. \(1.73 \times 10^{11} \mathrm{C}~\mathrm{kg}^{-1}\)
3. \(2.53 \times 10^{11} \mathrm{C}~\mathrm{kg}^{-1}\)
4. \(3.02 \times 10^{11} \mathrm{C}~\mathrm{kg}^{-1}\)

 67%
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A toroid has a core (non-ferromagnetic) of inner radius 25 cm and outer radius 26 cm, around which 3500 turns of a wire are wound. If the current in the wire is 11 A, the magnetic field inside the core of the toroid is:

1. 3×10-2 T
2. 0
3. 2×10-3 T
4. 1×10-2 T

Subtopic:  Magnetic Field due to various cases |
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An electron emitted by a heated cathode and accelerated through a potential difference of 2.0 kV, enters a region with a uniform magnetic field of 0.15 T. if the field is transverse to its initial velocity, the radius of the circular path is:

1. 2.10 mm
2. 0.11 mm
3. 1.01 mm
4. 0.12 mm

Subtopic:  Lorentz Force |
 57%
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A circular coil of wire consisting of 100 turns, each of radius 8.0 cm carries a current of 0.40 A. What is the magnitude of the magnetic field B at the centre of the coil?

1.\(3.14 \times 10^{-4} \ T\) 
2.\(2.12 \times 10^{-4} \ T\) 
3.\(1.41 \times 10^{-4} \ T\) 
4.\(2.01 \times 10^{-4} \ T\)

 

Subtopic:  Magnetic Field due to various cases |
 77%
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Two moving coil meters, M1 and M2 have the following particulars: 

R1 = 10 Ω, N1 = 30, A1 = 3.6 x 10-3 m2 and B1 = 0.25 T

R2 = 14 Ω, N2 = 42, A2 = 1.8 x 10-3 m2 and B2 = 0.50 T

( The spring constants are identical for the two meters.)
The ratio of current sensitivity (M2 to M1) is: 

 

1. 2 : 1
2. 1 : 2
3. 1.4 : 1
4. 1: 1.4
Subtopic:  Moving Coil Galvanometer |
 56%
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A square coil of side \(10~\text{cm}\) consists of \(20~\text{turns}\) and carries a current of \(12~\text{A}.\) The coil is suspended vertically and the normal to the plane of the coil makes an angle of \(30^{\circ}\) with the direction of a uniform horizontal magnetic field of magnitude \(0.80~\text{T}.\) What is the magnitude of torque experienced by the coil?
1. \(0.79~\text{N-m}\)
2. \(0.88~\text{N-m}\)
3. \(0.49~\text{N-m}\)
4. \(0.96~\text{N-m}\)

Subtopic:  Current Carrying Loop: Force & Torque |
 74%
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Closely wound solenoid \(80~\text{cm}\) long has \(5\) layers of windings of \(400\) turns each. The diameter of the solenoid is \(1.8~\text{cm}.\) If the current carried is \(8.0~\text A,\) the magnitude of \(B\) inside the solenoid near its centre is:
1. \(3.7 \times 10^{-2}~\text T\)
2. \(3.1 \times 10^{-2}~\text T\)
3. \(2.5 \times 10^{-2}~\text T\)
4.
 \(1.44 \times 10^{-2}~\text T\)

Subtopic:  Magnetic Field due to various cases |
 67%
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Two long and parallel straight wires \(A\) and \(B\) carrying currents of \(8.0~\text{A}\) and \(5.0~\text{A}\) in the same direction are separated by a distance of \(4.0~\text{cm}.\) The force on a \(10\) cm section of wire A is:

1. \(3\times10^{-5}~\text{N}\) 2. \(2\times10^{-5}~\text{N}\)
3. \(3\times10^{-4}~\text{N}\) 4. \(2\times10^{-4}~\text{N}\)
Subtopic:  Force between Current Carrying Wires |
 79%
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