Moving Charges & Magnetism  MCQs

MCQs of Moving Charges & Magnetism

Showing 61 to 70 out of 123 Questions
61.
Two particles of masses M1 and M2 and having the equal electric charge are accelerated through equal potential difference and then move inside a uniform magnetic field, normal to it. If the radii of their circular paths are R1 and R2 respectively, find the ratio of their masses.
(a) R2R12
(b) R2R1
(c) R1R2
(d) R1R22
Answer:

Option (d)

62.
The deflection in a moving-coil galvanometer falls from 50 divisions to 10 divisions, When a shunt of 12 Ω is connected with it, The resistance of galvanometer coil is _____ .
(a)
(b) 48Ω
(c) 24Ω
(d) 12Ω
Answer:

Option (b)

63.
A circular coil having N turns is made from a wire L meter long. If a current of I ampere is passed through this coil suspended in a uniform magnetic field of B tesla, find the maximum torque that can act on this coil.
(a) ILB2πN
(b) zero
(c) IL2B4πN
(d) IL2B8π2N
Answer:

Option (c)

64.
A proton and a deuteron having the same kinetic energies enter a region of uniform magnetic field perpendicularly. Deuteron's mass is twice that of proton. Calculate the ratio of the radii of their circular paths.
(a) 2 : 1
(b) 1 : 2
(c) 22 : 1
(d) 1 : 22
Answer:

Option (a)

65.
An electron and a proton of equal linear momentum enter in the direction perpendicular to uniform magnetic field. If the radii of circular paths be re and rp respectively, then rerp is equal to me=mass of electron. mp=mass of proton
(a) memp12
(b) mpme12
(c) 1
(d) mpme
Answer:

Option (c)

66.
A rectangular coil of 120 turns and an area of 10 x 10-4 m2 is suspended in a radial magnetic field of 45 x 10-4 T. If a current of 0.2mA through the coil gives it a deflection of 36°, find the effective torsional constant for the spring system holding the coil.
(a) 17.2 x 10-8
(b) 1.72 x 10-8
(c) 12.7 x 10-8
(d) 1.27 x 10-8
Answer:

Option (a)

67.
Two rings X and Y are placed in such a way that their axes are along the X and the Y axes respectively and their centres are at the origin. Both the rings X and Y have the same radii of 3.14 cm. If the current through X and Y rings are 0.6 A and 0.8 A respectively, find the value of the resultant magnetic field at the origin. (μ0 = 4π x 10-7 SI)
(a) 10-5
(b) 2 x 10-5
(c) 3 x 10-5
(d) 4 x 10-5
Answer:

Option (b)

68.
Two parallel very long straight wires carrying currents of 20 A and 30 A respectively are at a separation of 3 m between them. If the currents are in the same direction, find the attractive force between them per unit length. (μ0 = 4π x 10-7 SI)
(a) 2 x 10-5 Nm
(b) 3 x 10-5 Nm
(c) 4 x 10-5 Nm
(d) 10-5 Nm
Answer:

Option (c)

69.
A very long straight wire carries a current of 5 A. An electron moves with a velocity of 106 ms-1 remaining parallel to the wire at a distance of 10 cm from wire in a direction opposite to that of electric current. Find the force on this electron. (Here the mass of electron is taken as constant)

(e = -1.6 x 10-19C, μ0 = 4π x 10-7 SI)

(a) 1.6 x 10-19
(b) 1.6 x 10-17
(c) 16 x 10-19
(d) 16 x 10-20
Answer:

Option (c)

70.
An infinite straight current carrying conductor is bent in such a way that a circular loop is formed on it as shown in the figure. If the radius of the loop is R, the magnetic field at the centre of the loop is _____.
(a) μ04π.2Irπ+1
(b) μ04π.2Irπ-1
(c) Zero
(d) Infinite
Answer:

Option (a)

Showing 61 to 70 out of 123 Questions