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Previous year question hub

Electromagnetic Fields - Electrical Engineering Previous Year Questions

Practice Electromagnetic Fields - Electrical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

23Papers
16Years
57Questions
1Topics

Electromagnetic Fields question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Electromagnetic Fields. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 31 54.4%
Medium 26 45.6%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 41 71.9%
Numerical Answer Type (NAT) 14 24.6%
MSQ 2 3.5%

Subject weightage

Top subjects by unique question coverage.

Electrical Engineering
57 Qs

Most asked topics

Top topics across the included previous year papers.

Electromagnetic Fields
57 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Electrostatics and Dielectrics
33 Qs
Magnetic Fields, Induction and Magnetic Circuits
24 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Electrical Engineering (EE) 2024
2 Qs
Electrical Engineering (EE) 2023
2 Qs
Electrical Engineering (EE) 2022
2 Qs
Electrical Engineering (EE) 2021
4 Qs
Electrical Engineering (EE) 2020
3 Qs
Electrical Engineering (EE) 2019
2 Qs
Electrical Engineering (EE) 2018
2 Qs
Electrical Engineering (EE) 2017 [Session 1]
3 Qs
Electrical Engineering (EE) 2017 [Session 2]
3 Qs
Electrical Engineering (EE) 2016 [Session 1]
3 Qs
Electrical Engineering (EE) 2016 [Session 2]
3 Qs
Electrical Engineering (EE) 2014 [Session 1]
2 Qs
Electrical Engineering (EE) 2014 [Session 2]
2 Qs
Electrical Engineering (EE) 2014 [Session 3]
2 Qs
Electrical Engineering (EE) 2013 [Session 3]
4 Qs
Electrical Engineering (EE) 2013 [Session 4]
4 Qs
Electrical Engineering (EE) 2013 [Session 1]
3 Qs
Electrical Engineering (EE) 2013 [Session 2]
3 Qs
Electrical Engineering (EE) 2012
1 Qs
Electrical Engineering (EE) 2011
1 Qs
Electrical Engineering (EE) 2010
1 Qs
Electrical Engineering (EE) 2008
3 Qs
Electrical Engineering (EE) 2007
2 Qs

Browse by subtopics

Open a focused page built from the same verified paper data.

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
Electrical Engineering (EE) 202420242View paper
Electrical Engineering (EE) 202320232View paper
Electrical Engineering (EE) 202220222View paper
Electrical Engineering (EE) 202120214View paper
Electrical Engineering (EE) 202020203View paper
Electrical Engineering (EE) 201920192View paper
Electrical Engineering (EE) 201820182View paper
Electrical Engineering (EE) 2017 [Session 1]20173View paper
Electrical Engineering (EE) 2017 [Session 2]20173View paper
Electrical Engineering (EE) 2016 [Session 1]20163View paper
Electrical Engineering (EE) 2016 [Session 2]20163View paper
Electrical Engineering (EE) 2014 [Session 1]20142View paper
Electrical Engineering (EE) 2014 [Session 2]20142View paper
Electrical Engineering (EE) 2014 [Session 3]20142View paper
Electrical Engineering (EE) 2013 [Session 1]20133View paper
Electrical Engineering (EE) 2013 [Session 2]20133View paper
Electrical Engineering (EE) 2013 [Session 3]20134View paper
Electrical Engineering (EE) 2013 [Session 4]20134View paper
Electrical Engineering (EE) 201220121View paper
Electrical Engineering (EE) 201120111View paper
Electrical Engineering (EE) 201020101View paper
Electrical Engineering (EE) 200820083View paper
Electrical Engineering (EE) 200720072View paper

Sample previous year questions

A varied preview from the papers represented in this selection, with every available option.

1
2007 · Electrical Engineering · Electromagnetic Fields · Electrostatics and Dielectrics
Electrical Engineering (EE) 2007
A solid sphere made of insulating material has a radius R and has a total charge Q distributed uniformly in its volume. What is the magnitude of the electric field intensity, E, at a distance r (0 < r < R) inside the sphere?
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2
2008 · Electrical Engineering · Electromagnetic Fields · Electrostatics and Dielectrics
Electrical Engineering (EE) 2008
A capacitor consists of two metal plates each 500 x 500 mm² and spaced 6 mm apart. The space between the metal plates is filled with a glass plate of 4 mm thickness and a layer of paper of 2 mm thickness. The relative permittivities of the glass and paper are 8 and 2 respectively. Neglecting the fringing effect, the capacitance will be (Given that ε0 = 8.85 x 10⁻¹² F/m)
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3
2010 · Electrical Engineering · Electromagnetic Fields · Electrostatics and Dielectrics
Electrical Engineering (EE) 2010
Divergence of the three-dimensional radial vector field \( \vec{F} \) is
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4
2011 · Electrical Engineering · Electromagnetic Fields · Electrostatics and Dielectrics
Electrical Engineering (EE) 2011
A capacitor is made with a polymeric dielectric having an \(\varepsilon_r\) of 2.26 and a dielectric breakdown strength of 50 kV/cm. The permittivity of free space is 8.85 pF/m. If the rectangular plates of the capacitor have a width of 20 cm and a length of 40 cm, then the maximum electric charge in the capacitor is
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5
2012 · Electrical Engineering · Electromagnetic Fields · Electrostatics and Dielectrics
Electrical Engineering (EE) 2012
The direction of vector A is radially outward from the origin, with |A| = k rn where r2 = x2 + y2 + z2 and k is a constant. The value of n for which ∇·A = 0 is
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6
2013 · Electrical Engineering · Electromagnetic Fields · Magnetic Fields, Induction and Magnetic Circuits
Electrical Engineering (EE) 2013 [Session 1]
The flux density at a point in space is given by B = 4x aₓ + 2ky aᵧ + 8a_z Wb/m². The value of constant k must be equal to
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