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Electric Field MCQ (With Solution) Level -1 : Test 2 - Class 12 MCQ


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25 Questions MCQ Test - Electric Field MCQ (With Solution) Level -1 : Test 2

Electric Field MCQ (With Solution) Level -1 : Test 2 for Class 12 2024 is part of Class 12 preparation. The Electric Field MCQ (With Solution) Level -1 : Test 2 questions and answers have been prepared according to the Class 12 exam syllabus.The Electric Field MCQ (With Solution) Level -1 : Test 2 MCQs are made for Class 12 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Electric Field MCQ (With Solution) Level -1 : Test 2 below.
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Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 1

An electric dipole has a pair of equal and opposite point charges q and -q separated by a distance 2x. The axis of the dipole is defined as

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 1

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 2

The electric field intensity E, due to an electric dipole of moment p, at a point on the equatorial line is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 2



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Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 3

An electric dipole is placed at an angle of 30° to a nonuniform electric field. Th dipole will experience

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 3



Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 4

An electric dipole of moment p is placed at the origin along the x-axis. The electric field at a point P, whose position vector makes an angle q with the x-axis, will make an angle. With the x-axis, where   

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 4


Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 5

An electric dipole is situated in an electric field of uniform intensity E whose dipole moment is p and moment of inertia is I. If the dipole is displaced slightly from the equilibrium position, then the angular frequency of its oscillations is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 5







Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 6

Two particles of masses in the ratio 1 : 2 with charges in the ratio 1 : 1, are placed at rest in a uniform electric field. They are relased and allowed to move for the same time. The ratio of their kinetic energies will be finally

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 6


Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 7

An α particle is situated in an electric field of strength 15 × 104 NC-1. Force acting on it is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 7

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 8

A point charge of 100 µC is placed at 3iˆ + 4 ˆj m. Find the electric field intensity due to this charge at a point located at 9iˆ + 12 ˆj m.

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 8

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 9

An oil drop, carrying six electronic charges and having a mass of 1.6 × 10-12 g, falls with some terminal velocity in a medium. What magnitude of vertical electric field is required to make the drop move upwards with the same speed as it was formerly moving downwards with?Ignore buoyancy.

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 9



Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 10

Five point charges, +q each, are placed at the five vertices of a regular hexagon. The distance of centre of the hexagon from any of the vertices is a. The electric field at the centre of the hexagon is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 10




Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 11

A ring of charge with radius 0.5 m has 0.002 π m gap. If the ring carries a charge of +1 C, the electric field at the centre

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 11



Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 12

If an electron has an initial velocity in a direction different from that of a uniform electric field, the path of the electron is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 12

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 13

A point charge q1 is moved along a circular path of radius r in the electric field of another point charge q2 at the centre of the path. The work done by the electric field on the charge q1 in half revolution is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 13


Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 14

Four identical charges Q are fixed at the four corners of a square of side a. The electric field at a point P located symmetrically at a distance   from the centre of the square is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 14


Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 15

A thin glass rod is bent into a semicircle of radius r. A charge +Q is uniformly distributed along the upper half and charge -Q is uniformly distributed along the lower half. The electric field E at P, the centre of the semicircle is

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 15





Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 16

Find the electric field vector at P (a, a, a) due to three infinitely long lines of charges along the x-,y- and z-axes, respectively. The charge density, i.e,. charge per unit length of each wire is λ.

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 16





Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 17

The unit of electric field is not equivalent to

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 17

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 18

Electric intensity at a point varies as r-1 for

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 18

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 19

The force between two short electric dipole separated by a distance r varies as

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 19

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 20

An electric field can deflect

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 20

Electrons, others are changeless.

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 21

The magnitude of electric field strength E such that an electron placed in it would experience an electrical force equal to its weight, is given by

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 21

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 22

A thin conducting ring of radius R is given a charge + Q. The electric field at the centre O of the ring due to charge on the part AKB is E. The electric field at the centre due to the charge on the part ACDB of the ring is :

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 22


Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 23

If electric field is uniform, then the electric lines of forces are

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 23

If electric field is uniform the lines will be parallel.

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 24

Six charges +Q each are placed at the corners of a regular hexagon of side α. The electric field at the centre of hexagon is :

Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 24

will be zero, as all vectors cancel out each other.

Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 25

The electric dipole is situated in an electric field as shown in fig. The dipole and electric field are both in the plane of the paper. The dipole is rotated about an axis perpendicular to plane of paper passing through A in anticlockwise direction. If the angle of rotation (θ) is measured with respect to the direction of electric field, then the experienced by the dipole for dif f ere nt values of the angle of rotat ion q will be represented in fig. (b) by curve


Detailed Solution for Electric Field MCQ (With Solution) Level -1 : Test 2 - Question 25

z = pE sin θ

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