Explore topic-wise MCQs in Electrical Engineering.

This section includes 682 Mcqs, each offering curated multiple-choice questions to sharpen your Electrical Engineering knowledge and support exam preparation. Choose a topic below to get started.

601.

The divergence of distance vector is

A. 0
B. 3
C. 2
D. 1
Answer» C. 2
602.

Find the work done moving a charge 2C having potential V = 24volts is

A. 96
B. 24
C. 36
D. 48
Answer» E.
603.

Find the potential at a point (4, 3, -6) for the function V = 2x2y + 5z.

A. 96
B. 66
C. 30 d) -66
Answer» C. 30 d) -66
604.

Find the electric potential for an electric field 3units at a distance of 2m.

A. 9
B. 4
C. 6 d) 3/2
Answer» D.
605.

The electric flux density and electric field intensity have which of the following relation?

A. linear
B. nonlinear
C. inversely linear
D. inversely nonlinear
Answer» B. nonlinear
606.

Find the potential of the function V = 60cos θ/r at the point P(3, 60, 25).

A. 20
B. 10
C. 30
D. 60
Answer» C. 30
607.

With Gauss law as reference which of the following law can be derived?

A. ampere law
B. faraday’s law
C. coulomb’s law
D. ohm’s law
Answer» D. ohm’s law
608.

Gauss law cannot be expressed in which of the following forms?

A. differential
B. integral
C. point
D. stokes theorem
Answer» E.
609.

Gauss law can be used to compute which of the following?

A. permittivity
B. permeability
C. radius of gaussian surface
D. electric potential
Answer» D. electric potential
610.

Gauss law can be evaluated in which coordinate system?

A. cartesian
B. cylinder
C. spherical
D. depends on the gaussian surface
Answer» E.
611.

Gauss law for magnetic fields is given by

A. div(e) = 0
B. div(b) = 0
C. div(h) = 0
D. div(d) = 0
Answer» C. div(h) = 0
612.

The work done by a charge of 10μC with a potential 4.386 is (in μJ)

A. 32.86
B. 43.86
C. 54.68
D. 65.68
Answer» C. 54.68
613.

The total charge of a surface with densities 1,2,…,10 is

A. 11
B. 33
C. 55
D. 77
Answer» D. 77
614.

The Gaussian surface for a point charge will be

A. cube
B. cylinder
C. sphere
D. cuboid
Answer» D. cuboid
615.

Gauss law cannot be used to find which of the following quantity?

A. electric field intensity
B. electric flux density
C. charge
D. permittivity
Answer» E.
616.

The Gaussian surface for a line charge will be

A. sphere
B. cylinder
C. cube
D. cuboid
Answer» C. cube
617.

Divergence theorem is based on

A. gauss law
B. stoke’s law
C. ampere law
D. lenz law
Answer» B. stoke’s law
618.

The voltage at any point in an ac circuit will be

A. peak voltage
B. rms voltage
C. average voltage
D. source voltage
Answer» C. average voltage
619.

The potential taken between two points across a resistor will be

A. positive
B. negative
C. zero
D. infinity
Answer» C. zero
620.

What is the potential difference between 10sinθcosφ/r2 at A(1,30,20) and B(4,90,60)?

A. 2.386
B. 3.386
C. 4.386
D. 5.386
Answer» D. 5.386
621.

The potential difference in an open circuit is

A. zero
B. unity
C. infinity
D. circuit does not exist open
Answer» D. circuit does not exist open
622.

Find the potential of V = 60sin θ/r2 at P(3,60,25)

A. 5.774
B. 6.774
C. 7.774
D. 8.774
Answer» B. 6.774
623.

A point charge 2nC is located at origin. What is the potential at (1,0,0)?

A. 12
B. 14
C. 16
D. 18
Answer» E.
624.

Which of the following correctly states Gauss law?

A. electric flux is equal to charge
B. electric flux per unit volume is equal to charge
C. electric field is equal to charge density
D. electric flux per unit volume is equal to volume charge density
Answer» E.
625.

The Gaussian surface is

A. real boundary
B. imaginary surface
C. tangential
D. normal
Answer» C. tangential
626.

The electric flux density is the

A. product of permittivity and electric field intensity
B. product of number of flux lines and permittivity
C. product of permeability and electric field intensity
D. product of number of flux lines and permeability
Answer» B. product of number of flux lines and permittivity
627.

Electric flux density in electric field is referred to as

A. number of flux lines
B. ratio of flux lines crossing a surface and the surface area
C. direction of flux at a point
D. flux lines per unit area
Answer» C. direction of flux at a point
628.

The lines of force are said to be

A. real
B. imaginary
C. drawn to trace the direction
D. not significant
Answer» D. not significant
629.

For a test charge placed at infinity, the electric field will be

A. unity
B. +∞
C. zero
D. -∞
Answer» D. -∞
630.

Find the force on a charge 2C in a field 1V/m.

A. 0
B. 1
C. 2
D. 3
Answer» D. 3
631.

Electric field intensity due to infinite sheet of charge σ is

A. zero
B. unity
C. σ/ε
D. σ/2ε
Answer» E.
632.

The electric field intensity is defined as

A. force per unit charge
B. force on a test charge
C. force per unit charge on a test charge
D. product of force and charge
Answer» D. product of force and charge
633.

For a charge Q1, the effect of charge Q2 on Q1 will be,

A. f1 = f2
B. f1 = -f2
C. f1 = f2 = 0
D. f1 and f2 are not equal
Answer» C. f1 = f2 = 0
634.

The Coulomb law is an implication of which law?

A. ampere law
B. gauss law
C. biot savart law
D. lenz law
Answer» C. biot savart law
635.

Two charges 1C and -4C exists in air. What is the direction of force?

A. away from 1c
B. away from -4c
C. from 1c to -4c
D. from -4c to 1c
Answer» D. from -4c to 1c
636.

Find the force between 2C and -1C separated by a distance 1m in air(in newton).

A. 18 x 106
B. -18 x 106
C. 18 x 10-6
D. -18 x 10-6
Answer» C. 18 x 10-6
637.

Coulomb law is employed in

A. electrostatics
B. magnetostatics
C. electromagnetics
D. maxwell theory
Answer» B. magnetostatics
638.

Coulomb is the unit of which quantity?

A. field strength
B. charge
C. permittivity
D. force
Answer» C. permittivity
639.

Divergence theorem computes to zero for a solenoidal function. State True/False.

A. true
B. false
Answer» B. false
640.

Find the divergence theorem value for the function given by (ez, sin x, y2)

A. 1
B. 0
C. -1
D. 2
Answer» C. -1
641.

The Gauss divergence theorem converts

A. line to surface integral
B. line to volume integral
C. surface to line integral
D. surface to volume integral
Answer» E.
642.

Gauss theorem uses which of the following operations?

A. gradient
B. curl
C. divergence
D. laplacian
Answer» D. laplacian
643.

Using volume integral, which quantity can be calculated?

A. area of cube
B. area of cuboid
C. volume of cube
D. distance of vector
Answer» D. distance of vector
644.

The volume integral is three dimensional. State True/False

A. true
B. false
Answer» B. false
645.

The triple integral is used to compute volume. State True/False

A. true
B. false
Answer» B. false
646.

The divergence theorem converts

A. line to surface integral
B. surface to volume integral
C. volume to line integral
D. surface to line integral
Answer» C. volume to line integral
647.

The ultimate result of the divergence theorem evaluates which one of the following?

A. field intensity
B. field density
C. potential
D. charge and flux
Answer» E.
648.

Evaluate Gauss law for D = 5r2/4 i in spherical coordinates with r = 4m and θ = π/2.

A. 600
B. 599.8
C. 588.9
D. 577.8
Answer» D. 577.8
649.

Coulomb’s law can be derived from Gauss law. State True/ False

A. true
B. false
Answer» B. false
650.

Surface integral is used to compute

A. surface
B. area
C. volume
D. density
Answer» C. volume