Class 12 Physics MCQs | Chapter 4: Moving Charges And Magnetism – Part 2
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Class 12 Physics MCQs | Chapter 4: Moving Charges and Magnetism – Part 2

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111. A rectangular current loop is placed in a uniform magnetic field. The angle between its magnetic dipole moment \(\vec{m}\) and the magnetic field \(\vec{B}\) is \(\theta\). For which value of \(\theta\) is the torque maximum?
ⓐ. \(0^\circ\)
ⓑ. \(45^\circ\)
ⓒ. \(180^\circ\)
ⓓ. \(90^\circ\)
112. A coil has \(N=100\) turns, current \(I=0.20\,\text{A}\), and area \(A=4.0\times10^{-3}\,\text{m}^2\). It is placed in a uniform magnetic field \(B=0.50\,\text{T}\). The plane of the coil is parallel to the magnetic field. What is the torque on the coil?
ⓐ. \(0\,\text{N m}\)
ⓑ. \(4.0\times10^{-2}\,\text{N m}\)
ⓒ. \(2.0\times10^{-2}\,\text{N m}\)
ⓓ. \(8.0\times10^{-2}\,\text{N m}\)
113. A current loop is placed in a uniform magnetic field such that its magnetic dipole moment \(\vec{m}\) is parallel to \(\vec{B}\). Which statement is correct?
ⓐ. Torque is maximum and potential energy is minimum
ⓑ. Torque is maximum and potential energy is maximum
ⓒ. Torque is zero and potential energy is maximum
ⓓ. Torque is zero and potential energy is minimum
114. A current loop is placed in a uniform magnetic field such that its magnetic dipole moment \(\vec{m}\) is antiparallel to \(\vec{B}\). Which statement is correct?
ⓐ. Torque is zero and the orientation is stable
ⓑ. Torque is maximum and the orientation is stable
ⓒ. Torque is zero and the orientation is unstable
ⓓ. Torque is maximum and the orientation is unstable
115. Study the table and identify the row that correctly describes torque and potential energy of a current loop in a uniform magnetic field.
RowAngle between \(\vec{m}\) and \(\vec{B}\)Torque \(\tau\)Potential energy \(U\)
P\(0^\circ\)Maximum\(-mB\)
Q\(90^\circ\)Maximum\(0\)
R\(180^\circ\)Maximum\(+mB\)
S\(90^\circ\)Zero\(-mB\)
ⓐ. Row Q
ⓑ. Row P
ⓒ. Row R
ⓓ. Row S
116. A coil with magnetic moment \(0.60\,\text{A m}^2\) is placed in a uniform magnetic field of \(0.25\,\text{T}\). The angle between \(\vec{m}\) and \(\vec{B}\) is \(30^\circ\). What are the torque and potential energy of the coil?
ⓐ. \(\tau=0.130\,\text{N m}\), \(U=-0.075\,\text{J}\)
ⓑ. \(\tau=0.075\,\text{N m}\), \(U=-0.130\,\text{J}\)
ⓒ. \(\tau=0.150\,\text{N m}\), \(U=0.075\,\text{J}\)
ⓓ. \(\tau=0.075\,\text{N m}\), \(U=0.130\,\text{J}\)
117. A current loop has current \(I\) flowing anticlockwise when viewed from the front. What is the direction of its magnetic dipole moment \(\vec{m}\) as seen by the observer?
ⓐ. Into the plane of the loop
ⓑ. Along the tangent to the loop
ⓒ. Radially outward in the plane of the loop
ⓓ. Out of the plane of the loop
118. Which unit is correct for the magnetic dipole moment of a current loop?
ⓐ. \(\text{A m}^2\)
ⓑ. \(\text{A m}^{-2}\)
ⓒ. \(\text{T m}\)
ⓓ. \(\text{N A}^{-1}\)
119. Match the quantities with their correct expressions or units.
Column IColumn II
P. Magnetic moment of \(N\)-turn coil1. \(NIA\)
Q. Torque magnitude on a coil2. \(NIAB\sin\theta\)
R. Potential energy of magnetic dipole3. \(-mB\cos\theta\)
S. Unit of magnetic moment4. \(\text{A m}^2\)
ⓐ. P-2, Q-1, R-4, S-3
ⓑ. P-1, Q-3, R-2, S-4
ⓒ. P-1, Q-2, R-3, S-4
ⓓ. P-4, Q-2, R-3, S-1
120. A circular coil of radius \(7.0\,\text{cm}\) has \(200\) turns and carries current \(0.50\,\text{A}\). What is its magnetic dipole moment? Take \(\pi=\frac{22}{7}\).
ⓐ. \(1.54\,\text{A m}^2\)
ⓑ. \(0.77\,\text{A m}^2\)
ⓒ. \(3.08\,\text{A m}^2\)
ⓓ. \(15.4\,\text{A m}^2\)
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