Moving Charges and Magnetism

107 Questions
2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 4th May Evening Shift

As shown in the figure, a uniform straight wire of length $30 \sqrt{3} \mathrm{~cm}$ is bent in the form of an equilateral triangle $A B C$. A uniform magnetic field $2 T$ is applied parallel to the side $B C$. If the current through the wire is 2 A , the magnitude of the force on the side $A C$ is ( $\bar{B}$ represents the direction of the magnetic field)TG EAPCET 2025 (Online) 4th May Evening Shift Physics - Moving Charges and Magnetism Question 28 English

A.

$2 \sqrt{3} \mathrm{~N}$

B.

$02 \sqrt{3} \mathrm{~N}$

C.

1.2 N

D.

0.6 N

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 4th May Evening Shift

A proton moving with a velocity of $8 \times 10^5 \mathrm{~ms}^{-1}$ enters a uniform magnetic fleld normal to the direction of the magnetic field. If the radius of the circular path of the proton in the magnetic field is 8.3 cm , then the magnitude of the magnetic field is

(Charge of proton $=1.6 \times 10^{-19} \mathrm{C}$ and mass of the proton $=1.66 \times 10^{-27} \mathrm{~kg}$ )

A.

500 mT

B.

$100 \mathrm{mT}^{\top}$

C.

200 mT

D.

$400 \mathrm{mT}^{}$

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 4th May Morning Shift

The number of turns of two circular coils $A$ and $B$ are 300 and 200 respectively. The magnetic moments of the two coils $A$ and $B$ are in the ratio $1: 2$. If the two coils carry equal currents, then the ratio of radii of coils $A$ and $B$ is

A.

$2: \sqrt{3}$

B.

$2: 3$

C.

$1: 2$

D.

$1: \sqrt{3}$

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 4th May Morning Shift

Two long straight parallel wires carry currents of 8 A and 10 A in opposite directions. If the distance of separation between the wires is 9 cm , then the net magnetic field at a point between the two wires, which is at a perpendicular distance of 4 cm from the wire carrying 8 A current is

A.

zero

B.

$4 \times 10^{-5} \mathrm{~T}$

C.

$8 \times 10^{-5} \mathrm{~T}$

D.

$12 \times 10^{-5} \mathrm{~T}$

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 3rd May Evening Shift

An alpha particle moving with certain speed towards east enters a uniform magnetic field directed vertically up. The alpha particle will then move in

A.

vertical circular path with the same speed.

B.

horizontal circular path with the same speed.

C.

vertical circular path with increased speed.

D.

vertical circular path with decreased speed.

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 3rd May Evening Shift

A solenoid of 1000 turns per metre has a core of material with relative permeability 400 . The windings of the solenoid are insulated from the core and a current of 2 A is passed through the solenoid. Then, the value of the magnetic intensity inside the solenoid is

A.

$2 \times 10^3 \mathrm{Am}^{-1}$

B.

$1.0 \mathrm{Am}^{-1}$

C.

$8 \times 10^5 \mathrm{Am}^{-1}$

D.

$794 \mathrm{Am}^{-1}$

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 3rd May Morning Shift

The magnetic field due to a current carrying circular coil on its axis at a distance of $\sqrt{2} \mathrm{~d}$ from the centre of the coil is $B$. If $d$ is the diameter of the coil, then the magnetic field at the centre of the coil is

A.

$18 B$

B.

$27 B$

C.

$3 B$

D.

$9 B$

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 3rd May Morning Shift

A square coil of side 10 cm having 200 turns is placed in a uniform magnetic field of 2 T such that the plane of the coil is in the direction of magnetic field. If the current through the coil is 3 mA , then the torque acting on the coil is

A.

$12 \times 10^{-3} \mathrm{Nm}$

B.

$24 \times 10^{-3} \mathrm{Nm}$

C.

$6 \times 10^{-3} \mathrm{Nm}$

D.

zero

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 2nd May Evening Shift

Two identical wires, carrying equal currents are bent into circular coils $A$ and $B$ with 2 and 3 turns respectively. The ratio of the magnetic fields at the centres of the coils $A$ and $B$ is

A.

$4: 9$

B.

$2: 3$

C.

$9: 4$

D.

$3: 2$

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 2nd May Evening Shift

A current of 4 A is passed through a square loop of side 5 cm made of a uniform manganin wire as shown in the figure. The magnetic field at the centre of the loop is

TG EAPCET 2025 (Online) 2nd May Evening Shift Physics - Moving Charges and Magnetism Question 37 English
A.

$\frac{24 \sqrt{2}}{5} \times 10^{-5} \mathrm{~T}$

B.

$\frac{3 \sqrt{2}}{5} \times 10^{-5} \mathrm{~T}$

C.

$\frac{6 \sqrt{2}}{5} \times 10^{-5} \mathrm{~T}$

D.

zero

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 2nd May Morning Shift

A proton and an alpha particle moving with equal speeds enter normally into a uniform magnetic field. The ratio of times taken by the proton and the alpha particle to make one complete revolution in the magnetic field is

A.

$1: \sqrt{2}$

B.

$1: 2$

C.

$\sqrt{2}: 1$

D.

$2: 1$

2025 TS-EAMCET MCQ
TG EAPCET 2025 (Online) 2nd May Morning Shift

A solenoid of length 50 cm and radius 10 cm has two closely wound layers of windings 100 turns each. If a current of 2.5 A is passing through the windings, the magnetic field (in $10^{-4} \mathrm{~T}$ ) at a point 5 cm from the axis is

A.

$2 \pi$

B.

31.4

C.

$4 \pi$

D.

zero

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 26th May Morning Shift
If a current of 15 A passes through a solenoid of length 25 cm , radius 2 cm and number of turns 500 , then the magnetic moment of the solenoid is
A.

$6 \mathrm{JT}^{-1}$

B.

$3 \mathrm{JT}^{-1}$

C.

$3 \pi \mathrm{JT}^{-1}$

D.

$6 \pi \mathrm{JT}^{-1}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 26th May Morning Shift

The maximum magnetic field produced by a current of 12 A passing through a copper wire of diameter 1.2 mm is

A.

2 mT

B.

4 mT

C.

1.5 mT

D.

8 mT

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 26th May Morning Shift

Two moving coil galvanometers $A$ and $B$ having identical springs are placed in magnetic fields of 0.25 T and 0.5 T respectively. If the number of turns in $A$ and $B$ are respectively 36 and 48 and the areas of the coils $A$ and $B$ are $2.4 \times 10^{-3} \mathrm{~m}^2$ and $4.8 \times 10^{-3} \mathrm{~m}^2$ respectively, then the ratio of the current sensitivities of the galvanometer $A$ and $B$ is

A.

$3: 16$

B.

$16: 3$

C.

$4: 3$

D.

$3: 4$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 27th May Morning Shift

If a wire of length ' $L$ ' carrying a current ' $i$ ' is bent in the shape of a semi-circular arc as shown in the figure, then the magnetic field at centre of the arc is

AP EAPCET 2025 - 27th May Morning Shift Physics - Moving Charges and Magnetism Question 1 English

A.
$\frac{\pi \mu_0 i}{4 L}$
B.
$\frac{\pi \mu_0 i}{2 L}$
C.
$\frac{\mu_0{ }^j}{2 \pi L}$
D.
$\frac{\mu_0 i}{4 \pi L}$
2025 AP-EAPCET MCQ
AP EAPCET 2025 - 27th May Morning Shift

A galvanometer having 30 divisions has a current sensitivity of $0.0625 \frac{d i \nu}{\mu A}$. If it is converted into a voltmeter to read a maximum of 6 V , then the resistance of that voltmeter is

A.

$7.5 \mathrm{k} \Omega$

B.

$12.5 \mathrm{k} \Omega$

C.

$6 \mathrm{k} \Omega$

D.

$5 \mathrm{k} \Omega$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 26th May Evening Shift

The magnetic field at the centre of a long solenoid having 400 turns per unit length and carrying a current ' $i$ ' is $6.24 \times 10^{-2} \mathrm{~T}$. The magnetic field at the centre of another long solenoid having 200 turns per unit length and carrying a current $\frac{i}{2}$ is

A.

$1.56 \times 10^{-2} \mathrm{~T}$

B.

$2.4 \times 10^{-2} \mathrm{~T}$

C.

$26 \times 10^{-2} \mathrm{~T}$

D.

$2.6 \times 10^{-2} \mathrm{~T}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 26th May Evening Shift

If a proton of kinetic energy 8.35 MeV enters a uniform magnetic field of 10 T at right angles to the direction of the field, then the force acting on the proton is

(Mass of proton $=1.67 \times 10^{-27} \mathrm{~kg}$ and Charge of proton $=1.6 \times 10^{-19} \mathrm{C}$ )

A.

$48 \times 10^{-12} \mathrm{~N}$

B.

$16 \times 10^{-12} \mathrm{~N}$

C.

$64 \times 10^{-12} \mathrm{~N}$

D.

$32 \times 10^{-12} \mathrm{~N}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 24th May Morning Shift

Two charged particles of specific charges in the ratio 2:1 and masses in the ratio $1: 4$ moving with same kinetic energy enter a uniform magnetic field at right angles to the direction of the field. The ratio of the radii of the circular paths in which the particles move under the influence of the magnetic field is

A.

$2: 1$

B.

$1: 1$

C.

$4: 1$

D.

$8: 1$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 23rd May Evening Shift
The magnetic moment of an electron moving in a circular orbit of radius $R$ with a time period $T$ is
A.

$\frac{2 \pi R e}{T}$

B.

$\frac{\pi e R}{T}$

C.

$\frac{\pi e R^2}{T}$

D.

$\pi R^2 e^T$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 23rd May Evening Shift

A solenoid of one metre length and 3.55 cm inner diameter carries a current of 5 A . If the solenoid consists of five closely packed layers each with 700 turns along its length, then the magnetic field at its centre is

A.

22 mT

B.

44 mT

C.

35 mT

D.

15 mT

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 23rd May Morning Shift

If a charged particle enters a uniform magnetic field normally with certain velocity, then the time period of revolution of the particle

A.

decreases with increase of velocity of the particle.

B.

increases with increase of radius of the orbit.

C.

increases with increase of magnetic field.

D.

decreases with increase of specific charge of the particle.

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 23rd May Morning Shift

A long straight wire of circular cross-section of radius ' $a$ ' is carrying a steady current. The current is distributed uniformly across the cross-section of the wire. The ratio of the magnetic fields at points $0.5 a$ and $1.5 a$ from the centre of the wire is

A.

$1: 1$

B.

$2: 3$

C.

$1: 2$

D.

$3: 4$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 22nd May Evening Shift

In a wire of radius 1 mm a steady current of 2 A uniformly distributed across the cross-section of the wire is flowing. Then the magnetic field at a point 0.25 mm from the centre of the wire is

A.

$100 \mu \mathrm{~T}$

B.

$200 \mu \mathrm{~T}$

C.

$300 \mu \mathrm{~T}$

D.

$400 \mu \mathrm{~T}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 22nd May Evening Shift

The magnetic field at the centre of a current carrying circular coil of radius $R$ is $B_c$ and the magnetic field at a point on its axis at a distance $R$ from its centre is $B_a$. The value of $\frac{B_c}{B_a}$ is

A.

$\sqrt{2}$

B.

$\frac{1}{2 \sqrt{2}}$

C.

$2 \sqrt{2}$

D.

$\frac{1}{\sqrt{2}}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 22nd May Morning Shift

The force per unit length on a straight wire carrying current of 8 A making an angle of $30^{\circ}$ with a uniform magnetic field of 0.15 T is

A.

$1.2 \mathrm{Nm}^{-1}$

B.

$1.02 \mathrm{Nm}^{-1}$

C.

$0.6 \mathrm{Nm}^{-1}$

D.

$2.4 \mathrm{Nm}^{-1}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 22nd May Morning Shift

An alpha particle moves along a circular path of radius 0.5 mm in a magnetic field of $2 \times 10^{-2} \mathrm{~T}$. The de-Broglie wavelength associated with the alpha particle is nearly (Planck's constant $=6.63 \times 10^{-34} \mathrm{~J} \mathrm{~s}$ )

A.

$3.1\mathop {\rm{A}}\limits^{\rm{o}}$

B.

$1.1 \mathop {\rm{A}}\limits^{\rm{o}}$

C.

$0.1 \mathop {\rm{A}}\limits^{\rm{o}}$

D.

$2.1 \mathop {\rm{A}}\limits^{\rm{o}}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 21st May Evening Shift

If a straight current carrying wire of linear density $0.12 \mathrm{~kg} \mathrm{~m}^{-1}$ is suspended in mid air by a uniform horizontal magnetic field of 0.5 T normal to the length of the wire, then the current through the wire is (Acceleration due to gravity $=10 \mathrm{~ms}^{-2}$, Neglect Earth's magnetic field)

A.

2.4 A

B.

1.2 A

C.

0.6 A

D.

4.8 A

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 21st May Evening Shift

Two concentric loops $A$ and $B$ of same radius $2 \pi \mathrm{~cm}$ are placed at right angles to each other. If the currents flowing through $A$ and $B$ are 3 A and 4 A respectively, then the net magnetic field at their common centre is

A.

$0.75 \times 10^{-5} \mathrm{~T}$

B.

$25 \times 10^{-5} \mathrm{~T}$

C.

$5 \times 10^{-5} \mathrm{~T}$

D.

$2.5 \times 10^{-5} \mathrm{~T}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 21st May Morning Shift

The magnetic field at a distance of 10 cm from a long straight thin wire carrying a current of 4 A is

A.

$6 \mu \mathrm{~T}$

B.

$16 \mu \mathrm{~T}$

C.

$8 \mu \mathrm{~T}$

D.

$4 \mu T$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 21st May Morning Shift

A velocity selector is to be constructed to select ions with a velocity of $6 \mathrm{~km} \mathrm{~s}^{-1}$. If the electric field used is $400 \mathrm{~V} \mathrm{~m}^{-1}$, then the magnetic field to be used is

A.

$\frac{11}{20} T$

B.

$\frac{2}{3} T$

C.

$\frac{1}{15} \mathrm{~T}$

D.

$\frac{2}{15} \mathrm{~T}$

2025 AP-EAPCET MCQ
AP EAPCET 2025 - 21st May Morning Shift

A closely wound solenoid of 1200 turns and area of cross-section $5 \mathrm{~cm}^2$ carries a current. If the magnetic moment of the solenoid is $1.2 \mathrm{JT}^{-1}$, then the current through the solenoid is

A.

2.5 A

B.

2 A

C.

3 A

D.

1.5 A

2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 11th May Morning Shift
A magnetic field is applied in $y$-direction on an $\alpha$-particle travelling along $x$-direction. The motion of the $\alpha$-particle will be
A.
along $X$-axis
B.
a circle in XZ-plane
C.
a circle in $Y Z$-plane
D.
a circle in $X Y$-plane
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 11th May Morning Shift
A straight wire carrying a current of $2 \sqrt{2} \mathrm{~A}$ is making an angle of $45^{\circ}$ with the direction of uniform magnetic field of 3 T . The force per unit length of the wire due to the magnetic field is
A.
$4 \mathrm{Nm}^{-1}$
B.
$8 \mathrm{Nm}^{-1}$
C.
$6 \mathrm{Nm}^{-1}$
D.
$3 \mathrm{Nm}^{-1}$
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 10th May Evening Shift
An electron falling freely under the influence of gravity enters a uniform magnetic field directed towards south. The electron is initially deflected towards
A.
east
B.
west
C.
north
D.
south
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 10th May Evening Shift
Two long straight parallel wires $A$ and $B$ separated by 5 m carry currents 2 A and 6 A respectively in the same direction. The resultant magnetic field due to the two wires at a point of 2 m distance from the wire $A$ in between the two wires is
A.
$2 \times 10^{-6} \mathrm{~T}$
B.
$2 \times 10^{-7} \mathrm{~T}$
C.
$4 \times 10^{-7} \mathrm{~T}$
D.
$4 \times 10^{-6} \mathrm{~T}$
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 10th May Morning Shift
A long straight rod of diameter 4 mm carries a steady current $i$. The current is uniformly distributed across its cross-section. The ratio of the magnetic fields at distances 1 mm and 4 mm from the axis of the rod is
A.
$1: 2$
B.
$1: 4$
C.
$4: 1$
D.
$1: 1$
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 10th May Morning Shift
A straight wire of length 20 cm carrying a current of $\frac{3 .}{\pi^2} \mathrm{~A}$ is bent in the form of a circle. The magnetic field at the centre of the circle is
A.
$3 \times 10^{-6} \mathrm{~T}$
B.
$8 \times 10^{-6} \mathrm{~T}$
C.
$12 \times 10^{-6} \mathrm{~T}$
D.
$6 \times 10^{-6} \mathrm{~T}$
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 10th May Morning Shift
A circular coil carrying a current of 2.5 A is free to rotate about an axis in its plane perpendicular to an external field. When the coil is made to oscillate, the time period of oscillation is $T$. If the current through the coil is 10 A , the time period of oscillation is
A.
$\frac{T}{2}$
B.
$T$
C.
$2 T$
D.
$\frac{T}{4}$
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 9th May Evening Shift
Two points $A$ and $B$ on the axis of a circular current loop are at distances of 4 cm and $3 \sqrt{3} \mathrm{~cm}$ from the centre of the loop. If the ratio of the induced magnetic fields at points $A$ and $B$ is $216: 125$, then radius of the loop is
A.
3 cm
B.
4 cm
C.
5 cm
D.
6 cm
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 9th May Evening Shift
Two charged particles $A$ and $B$ of masses $m$ and $2 m$, charges $2 q$ and $3 q$ respectively moving with same velocity enter a uniform magnetic field such that both the particles make same angle ( $<90^{\circ}$ ) with the direction of the magnetic field. Then, the ratio of pitches of the helical paths of the particles $A$ and $B$ is
A.
$4: 3$
B.
$3: 2$
C.
$3: 4$
D.
$2: 3$
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 9th May Morning Shift
A particle of charge 2 C is moving with a velocity of $(3 \hat{\mathbf{i}}+4 \hat{\mathrm{j}}) \mathrm{ms}^{-1}$ in the presence of magnetic and electric fields. If the magnetic field is $(\hat{\mathbf{i}}+2 \hat{\mathbf{j}}+3 \hat{\mathbf{k}}) \mathrm{T}$ and the electric field is $(-2 \hat{\mathbf{k}}) \mathrm{NC}^{-1}$, then the Lorentz force on the particle is
A.
50 N
B.
20 N
C.
30 N
D.
40 N
2024 TS-EAMCET MCQ
TG EAPCET 2024 (Online) 9th May Morning Shift
A rectangular coil of 400 turns and $10^{-2} \mathrm{~m}^2$ area, carrying a current of 0.5 A is placed in a uniform magnetic field of IT such that the plane of the coil makes an angle of $60^{\circ}$ with the direction of the magnetic field. The initial moment of force acting on the coil in $\mathrm{N}-\mathrm{m}$ is
A.
$\sqrt{3}$
B.
$1 / \sqrt{3}$
C.
1
D.
$\sqrt{3} / 2$
2024 AP-EAPCET MCQ
AP EAPCET 2024 - 23th May Morning Shift
A charge $q$ is spread uniformly over an isolated ring $R$. The ring is rotated about its natural axis with angular speed $\omega$. The magnetic dipole moment of the ring is
A.
$\frac{q \omega R}{2}$
B.
$q \omega R^2$
C.
$\frac{q w R^2}{2}$
D.
$\frac{q \omega}{2 R}$
2024 AP-EAPCET MCQ
AP EAPCET 2024 - 22th May Evening Shift
Current flows in a conductor from east to west. The direction of the magnetic field at a point below the conductor is towards
A.
north
B.
south
C.
east
D.
west
2024 AP-EAPCET MCQ
AP EAPCET 2024 - 22th May Evening Shift
Two infinite length wires carry currents 8 A and $6^{\mathrm{A}}$ respectively and are placed along $X$ and $Y$-axes respectively. Magnetic field at a point $P(0,0, C)$ will
A.
$\frac{7 \mu_0}{\pi d}$
B.
$\frac{10 \mu_0}{\pi d}$
C.
$\frac{14 \mu_0}{\pi d}$
D.
$\frac{5 \mu}{\pi d}$
2024 AP-EAPCET MCQ
AP EAPCET 2024 - 22th May Evening Shift
A short magnet oscillates with a time period 0.1 s at a place where horizontal magnetic field is $24 \mu \mathrm{~T}$. A downward current of 18 A is established in a vertical wire kept at a distance of 20 cm east of the magnet. The new time period of oscillations of the magnet is
A.
0.1 s
B.
0.089 s
C.
0.076 s
D.
0.057 s
2024 AP-EAPCET MCQ
AP EAPCET 2024 - 22th May Morning Shift
Two toroids with number of turns 400 and 200 have average radii respectively 30 cm and 60 cm . If they carry the same current, the ratio of magnetic fields in these two toroids is
A.
$2: 1$
B.
$1: 4$
C.
$2: 3$
D.
$4: 1$
2024 AP-EAPCET MCQ
AP EAPCET 2024 - 22th May Morning Shift

Three rings, each with equal radius $r$ are placed mutually perpendicular to each other and each having centre at the origin of coordinate system. $I$ is current passing through each ring. The magnetic field value at the common centre is

AP EAPCET 2024 - 22th May Morning Shift Physics - Moving Charges and Magnetism Question 26 English

A.
zero
B.
$(\sqrt{3}-1) \frac{\mu_0 I}{2 \pi r}$
C.
$\sqrt{3} \frac{\mu_0 dl}{2 r}$
D.
$\sqrt{2} \frac{\mu_0 l}{2 r}$