Explore topic-wise MCQs in Electromagnetic Theory.

This section includes 13 Mcqs, each offering curated multiple-choice questions to sharpen your Electromagnetic Theory knowledge and support exam preparation. Choose a topic below to get started.

1.

Find the magnetic field intensity when the current density is 0.5 units for an area up to 20 units.

A. 10
B. 5
C. 20
D. 40
Answer» B. 5
2.

When the rotational path of the magnetic field intensity is zero, then the current in the path will be

A. 1
B. 0
C.
D. 0.5
Answer» C. ∞
3.

Find the magnetic field intensity due to an infinite sheet of current 5A and charge density of 12j units in the positive y direction and the z component is below the sheet.

A. 6
B. 0
C. -6
D. 60k
Answer» D. 60k
4.

Find the magnetic flux density of a finite length conductor of radius 12cm and current 3A in air( in 10-6 order)

A. 4
B. 5
C. 6
D. 7
Answer» C. 6
5.

FIND_THE_MAGNETIC_FIELD_INTENSITY_WHEN_THE_CURRENT_DENSITY_IS_0.5_UNITS_FOR_AN_AREA_UP_TO_20_UNITS.?$

A. 10
B. 5
C. 20
D. 40
Answer» B. 5
6.

When the rotational path of the magnetic field intensity is zero, then the current in the path will b?

A. 1
B. 0
C. ‚àû
D. 0.5
Answer» C. ‚Äö√Ñ√∂‚àö‚Ć‚àö¬™
7.

Find the current density on the conductor surface when a magnetic field H = 3cos x i + zcos x j A/m, for z>0 and zero, otherwise is applied to a perfectly conducting surface in xy plane.

A. cos x i
B. –cos x i
C. cos x j
D. –cos x j
Answer» C. cos x j
8.

Find the magnetic field intensity due to an infinite sheet of current 5A and charge density of 12j units in the positive y direction and the z component is above the sheet.

A. -6
B. 12k
C. 60
D. 6
Answer» E.
9.

Calculate the magnetic field intensity due to a toroid of turns 50, current 2A and radius 159mm.

A. 50
B. 75
C. 100
D. 200
Answer» D. 200
10.

Find the magnetic flux density of a finite length conductor of radius 12cm and current 3A in air( in 10-6 order)

A. 4
B. 5
C. 6
D. 7
Answer» C. 6
11.

Electric field will be maximum outside the conductor and magnetic field will be maximum inside the conductor. State True/False.

A. True
B. False
Answer» B. False
12.

The Ampere law is based on which theorem?

A. Green’s theorem
B. Gauss divergence theorem
C. Stoke’s theorem
D. Maxwell theorem
Answer» D. Maxwell theorem
13.

The point form of Ampere law is given by

A. Curl(B) = I
B. Curl(D) = J
C. Curl(V) = I
D. Curl(H) = J
Answer» E.