

InterviewSolution
This section includes InterviewSolutions, each offering curated multiple-choice questions to sharpen your knowledge and support exam preparation. Choose a topic below to get started.
1. |
The complex permittivity is given by 2-j. Find the loss tangent.(a) 1/2(b) -1/2(c) 2(d) -2This question was addressed to me in an interview for job.The origin of the question is Loss Tangent topic in division Maxwell Equations of Electromagnetic Theory |
Answer» CORRECT option is (a) 1/2 Explanation: The LOSS TANGENT for a GIVEN complex permittivity of ε = ε’ – jε’’ is given by tan δ = ε’’/ ε’. Thus the loss tangent is 1/2. |
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2. |
Find the loss angle in degrees when the loss tangent is 1.(a) 0(b) 30(c) 45(d) 90This question was addressed to me in an online quiz.My enquiry is from Loss Tangent topic in section Maxwell Equations of Electromagnetic Theory |
Answer» Correct OPTION is (C) 45 |
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3. |
The expression for the loss tangent is given by(a) σ/ωε(b) ωε/σ(c) σ/ω(d) ω/εI got this question in class test.I'm obligated to ask this question of Loss Tangent in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right option is (a) σ/ωε |
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4. |
The loss tangent of a wave propagation with an intrinsic angle of 20 degree is(a) Tan 20(b) Tan 40(c) Tan 60(d) Tan 80This question was posed to me in a national level competition.Question is taken from Loss Tangent in portion Maxwell Equations of Electromagnetic Theory |
Answer» Right OPTION is (b) TAN 40 |
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5. |
Find the loss tangent of a material with conduction current density of 5 units and displacement current density of 10 units.(a) 2(b) 0.5(c) 5(d) 10I had been asked this question in an international level competition.My question comes from Loss Tangent topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» RIGHT answer is (b) 0.5 To EXPLAIN: The loss tangent is the ratio of JC by Jd. On substituting for Jc = 5 and Jd = 10, the loss tangent, tan δ = 5/10 = 0.5. It is to be NOTED that it is tangent angle, so that the maxima and minima lies between 1 and -1 respectively. |
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6. |
The loss tangent is also referred to as(a) Attenuation(b) Propagation(c) Dissipation factor(d) PolarizationI had been asked this question in an interview for internship.My doubt stems from Loss Tangent in chapter Maxwell Equations of Electromagnetic Theory |
Answer» The correct choice is (c) DISSIPATION factor |
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7. |
At high frequencies, which parameter is significant?(a) Conduction current(b) Displacement current(c) Attenuation constant(d) Phase constantI had been asked this question in a national level competition.Question is taken from Loss Tangent topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right answer is (b) Displacement current |
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8. |
Calculate the conduction current density when the resistivity of a material with an electric field of 5 units is 4.5 units.(a) 22.5(b) 4.5/5(c) 5/4.5(d) 9.5I got this question by my college director while I was bunking the class.Enquiry is from Loss Tangent in section Maxwell Equations of Electromagnetic Theory |
Answer» Correct choice is (c) 5/4.5 |
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9. |
The propagation of the electromagnetic waves can be illustrated by(a) Faraday law(b) Ampere law(c) Flemming rule(d) Coulomb lawThis question was addressed to me during an internship interview.Query is from Maxwell Law in Time Varying Fields topic in portion Maxwell Equations of Electromagnetic Theory |
Answer» Right answer is (c) Flemming rule |
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10. |
The loss tangent refers to the(a) Power due to propagation in conductor to that in dielectric(b) Power loss(c) Current loss(d) Charge lossI got this question by my school principal while I was bunking the class.My doubt stems from Loss Tangent in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right ANSWER is (a) Power DUE to propagation in conductor to that in dielectric |
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11. |
Which components exist in an electromagnetic wave?(a) Only E(b) Only H(c) Both E and H(d) Neither E or HI had been asked this question in an interview for job.This intriguing question comes from Maxwell Law in Time Varying Fields in portion Maxwell Equations of Electromagnetic Theory |
Answer» CORRECT option is (c) Both E and H To explain: In an electromagnetic WAVE, the electric and magnetic components coexist. They propagate perpendicular to each other and to the DIRECTION of propagation in space. |
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12. |
Find the time constant of a capacitor with capacitance of 2 microfarad having an internal resistance of 4 megaohm.(a) 2(b) 0.5(c) 8(d) 0.25The question was asked in final exam.Origin of the question is Maxwell Law in Time Varying Fields topic in section Maxwell Equations of Electromagnetic Theory |
Answer» Right option is (c) 8 |
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13. |
The gradient of the magnetic vector potential can be expressed as(a) –με dV/dt(b) +με dE/dt(c) –με dA/dt(d) +με dB/dtThis question was posed to me during an online interview.This key question is from Maxwell Law in Time Varying Fields topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right answer is (a) –με dV/dt |
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14. |
When electric potential is null, then the electric field intensity will be(a) 0(b) 1(c) dA/dt(d) –dA/dtI had been asked this question during an interview.Question is taken from Maxwell Law in Time Varying Fields topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right option is (d) –dA/dt |
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15. |
Harmonic electromagnetic fields refer to fields varying sinusoidally with respect to time. State True/False.(a) True(b) FalseI got this question at a job interview.This interesting question is from Maxwell Law in Time Varying Fields in chapter Maxwell Equations of Electromagnetic Theory |
Answer» The correct choice is (a) True |
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16. |
The surface integral of which parameter is zero?(a) E(b) D(c) B(d) HThe question was posed to me at a job interview.This key question is from Maxwell Law in Time Varying Fields in portion Maxwell Equations of Electromagnetic Theory |
Answer» Right option is (c) B |
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17. |
The charge build up in a capacitor is due to(a) Conduction current density(b) Displacement current density(c) Polarisation(d) MagnetizationThis question was posed to me in quiz.The query is from Maxwell Law in Time Varying Fields in portion Maxwell Equations of Electromagnetic Theory |
Answer» Right ANSWER is (b) DISPLACEMENT current density |
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18. |
The magnitude of the conduction current density for a magnetic field intensity of a vector yi + zj + xk will be(a) 1.414(b) 1.732(c) -1.414(d) -1.732I got this question in an interview for job.The doubt is from Maxwell Law in Time Static Fields topic in portion Maxwell Equations of Electromagnetic Theory |
Answer» Correct choice is (B) 1.732 |
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19. |
Find the curl of E when B is given as 15t.(a) 15(b) -15(c) 7.5(d) -7.5I have been asked this question in an international level competition.My query is from Maxwell Law in Time Varying Fields topic in division Maxwell Equations of Electromagnetic Theory |
Answer» The CORRECT choice is (b) -15 |
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20. |
The line integral of which parameter is zero for static fields?(a) E(b) H(c) D(d) BI have been asked this question in an international level competition.I need to ask this question from Maxwell Law in Time Static Fields topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» The CORRECT option is (a) E |
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21. |
For static fields, the curl of E will be(a) Rotational(b) Irrotational(c) Solenoidal(d) DivergentI have been asked this question during a job interview.I would like to ask this question from Maxwell Law in Time Static Fields topic in section Maxwell Equations of Electromagnetic Theory |
Answer» Correct answer is (b) Irrotational |
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22. |
Which of the following relations is correct?(a) MMF = ∫ B.dl(b) MMF = ∫ H.dl(c) EMF = ∫ E.dl(d) EMF = ∫ D.dlI had been asked this question at a job interview.Enquiry is from Maxwell Law in Time Static Fields in chapter Maxwell Equations of Electromagnetic Theory |
Answer» The CORRECT option is (C) EMF = ∫ E.dl |
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23. |
The line integral of the electric field intensity is(a) Mmf(b) Emf(c) Electric potential(d) Magnetic potentialThe question was posed to me in an international level competition.This question is from Maxwell Law in Time Static Fields in division Maxwell Equations of Electromagnetic Theory |
Answer» CORRECT choice is (B) Emf For explanation I would say: From the Maxwell FIRST law, the transformer emf is given by the line integral of the ELECTRIC field INTENSITY. Thus the emf is given by ∫ E.dl. |
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24. |
The electric field intensity of a field with velocity 10m/s and flux density of 2.8 units is(a) 0.28(b) 28(c) 280(d) 10/2.8The question was posed to me in homework.My doubt is from Maxwell Law in Time Static Fields in division Maxwell Equations of Electromagnetic Theory |
Answer» | |
25. |
Find the electric field intensity of a charge 2.5C with a force of 3N.(a) -7.5(b) 7.5(c) 2.5/3(d) 3/2.5This question was posed to me during an online interview.The query is from Maxwell Law in Time Static Fields in chapter Maxwell Equations of Electromagnetic Theory |
Answer» The correct answer is (d) 3/2.5 |
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26. |
Find the emf induced in a coil of 60 turns with a flux rate of 3 units.(a) -60(b) -180(c) 60(d) 180I had been asked this question in a national level competition.This interesting question is from Maxwell Law in Time Static Fields in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right choice is (b) -180 |
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27. |
Calculate the emf in a material with flux linkage of 3.5t^2 at 2 seconds.(a) 3.5(b) -7(c) -14(d) 28This question was posed to me in final exam.The question is from Maxwell Law in Time Static Fields in portion Maxwell Equations of Electromagnetic Theory |
Answer» The CORRECT option is (C) -14 |
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28. |
Will dielectric breakdown lead to formation of magnetic monopole?(a) Yes(b) NoThis question was posed to me in exam.This interesting question is from Maxwell Law 4 topic in division Maxwell Equations of Electromagnetic Theory |
Answer» Correct CHOICE is (B) No |
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29. |
Which equation will hold good for a magnetic material?(a) Line integral of H is zero(b) Surface integral of H is zero(c) Line integral of B is zero(d) Surface integral of B is zeroI had been asked this question during an interview.Question is taken from Maxwell Law 4 topic in division Maxwell Equations of Electromagnetic Theory |
Answer» The correct answer is (d) Surface INTEGRAL of B is zero |
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30. |
The non existence of the magnetic monopole is due to which operation?(a) Gradient(b) Divergence(c) Curl(d) LaplacianI have been asked this question in semester exam.This interesting question is from Maxwell Law 4 in division Maxwell Equations of Electromagnetic Theory |
Answer» Correct choice is (b) Divergence |
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31. |
The reason for non existence of magnetic monopoles is(a) The magnetic field cannot be split(b) Due to permeability(c) Due to magnetization(d) Due to magnetostrictionThis question was posed to me in an interview for internship.This intriguing question comes from Maxwell Law 4 in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right answer is (a) The magnetic FIELD cannot be SPLIT |
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32. |
The sequence for finding H from E is(a) E-B-H(b) E-V-H(c) E-D-H(d) E-A-HThe question was asked in exam.I'm obligated to ask this question of Maxwell Law 4 topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Correct OPTION is (a) E-B-H |
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33. |
Find the sequence to find B when E is given.(a) E-D-H-B(b) B-E-D(c) H-B-E-D(d) V-E-BThis question was posed to me during an online interview.Origin of the question is Maxwell Law 4 topic in division Maxwell Equations of Electromagnetic Theory |
Answer» Correct answer is (a) E-D-H-B |
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34. |
The Gauss law for magnetic field is valid in(a) Air(b) Conductor(c) Dielectric(d) All casesThe question was asked in unit test.The doubt is from Maxwell Law 4 in division Maxwell Equations of Electromagnetic Theory |
Answer» The correct option is (d) All cases |
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35. |
Which equation will be true, if the medium is considered to be air?(a) Curl(H) = 0(b) Div(H) = 0(c) Grad(H) = 0(d) Div(H) = 1The question was asked during an internship interview.This intriguing question comes from Maxwell Law 4 in portion Maxwell Equations of Electromagnetic Theory |
Answer» Right option is (b) Div(H) = 0 |
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36. |
Which quantity is solenoidal in the electromagnetic theory?(a) Electric field intensity(b) Electric flux density(c) Magnetic field intensity(d) Magnetic flux densityI have been asked this question in exam.My question is from Maxwell Law 4 in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right ANSWER is (d) Magnetic FLUX density |
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37. |
The sequence for finding E when charge density is given is(a) E-D-ρv(b) E-B-ρv(c) E-H-ρv(d) E-V-ρvI got this question in quiz.My doubt is from Maxwell Law 3 in division Maxwell Equations of Electromagnetic Theory |
Answer» | |
38. |
The charge density of a system with the position vector as electric flux density is(a) 0(b) 1(c) 2(d) 3This question was posed to me in examination.This interesting question is from Maxwell Law 3 topic in portion Maxwell Equations of Electromagnetic Theory |
Answer» Correct option is (d) 3 |
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39. |
From the Gauss law for electric field, we can compute which of the following parameters?(a) B(b) H(c) E(d) AThis question was addressed to me in final exam.This interesting question is from Maxwell Law 3 topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» The correct OPTION is (C) E |
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40. |
Find the electric flux density of a material whose charge density is given by 12 units in a volume region of 0.5 units.(a) 12(b) 24(c) 6(d) 48I got this question in an internship interview.My doubt is from Maxwell Law 3 in division Maxwell Equations of Electromagnetic Theory |
Answer» The correct choice is (c) 6 |
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41. |
In a dipole, the Gauss theorem value will be(a) 1(b) 0(c) -1(d) 2I had been asked this question in an online quiz.This interesting question is from Maxwell Law 3 in section Maxwell Equations of Electromagnetic Theory |
Answer» Correct choice is (b) 0 |
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42. |
For a solenoidal field, the surface integral of D will be,(a) 0(b) 1(c) 2(d) 3The question was posed to me in final exam.My question comes from Maxwell Law 3 topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» RIGHT answer is (a) 0 For explanation I WOULD say: For a SOLENOIDAL field, the divergence will be zero. By divergence THEOREM, the surface integral of D and the volume integral of DIV(D) is same. So as the Div(D) is zero for a solenoidal field, the surface integral of D is also zero. |
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43. |
In a medium other than air, the electric flux density will be(a) Solenoidal(b) Curl free(c) Irrotational(d) DivergentThis question was addressed to me in semester exam.This is a very interesting question from Maxwell Law 3 topic in division Maxwell Equations of Electromagnetic Theory |
Answer» Correct answer is (d) Divergent |
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44. |
In the medium of free space, the divergence of the electric flux density will be(a) 1(b) 0(c) -1(d) InfinityI had been asked this question in quiz.I'm obligated to ask this question of Maxwell Law 3 in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Correct option is (B) 0 |
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45. |
The charge density of a electrostatic field is given by(a) Curl of E(b) Divergence of E(c) Curl of D(d) Divergence of DI got this question by my college professor while I was bunking the class.This is a very interesting question from Maxwell Law 3 in section Maxwell Equations of Electromagnetic Theory |
Answer» Right option is (d) Divergence of D |
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46. |
At dc field, the displacement current density will be(a) 0(b) 1(c) Jc(d) ∞I have been asked this question in an international level competition.The above asked question is from Maxwell Law 2 topic in section Maxwell Equations of Electromagnetic Theory |
Answer» RIGHT OPTION is (a) 0 To elaborate: The DC field refers to zero frequency. The conduction current is independent of the frequency, WHEREAS the DISPLACEMENT current density is dependent on the frequency, i.e, Jd = jwεE. THUS at DC field, the displacement current density will be zero. |
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47. |
The total current density is given as 0.5i + j – 1.5k units. Find the curl of the magnetic field intensity.(a) 0.5i – 0.5j + 0.5k(b) 0.5i + j -1.5k(c) i – j + k(d) i + j – kI got this question in an interview.I want to ask this question from Maxwell Law 2 topic in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Correct answer is (b) 0.5i + j -1.5k |
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48. |
Find the equation of displacement current density in frequency domain.(a) Jd = jwεE(b) Jd = jwεH(c) Jd = wεE/j(d) Jd = jεE/wThis question was posed to me in an interview for internship.Origin of the question is Maxwell Law 2 in division Maxwell Equations of Electromagnetic Theory |
Answer» The CORRECT choice is (a) Jd = jwεE |
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49. |
An implication of the continuity equation of conductors is given by(a) J = σ E(b) J = E/σ(c) J = σ/E(d) J = jwEσThis question was posed to me during an internship interview.Question is taken from Maxwell Law 2 topic in section Maxwell Equations of Electromagnetic Theory |
Answer» CORRECT answer is (a) J = σ E The EXPLANATION: The continuity equation INDICATES the current density in conductors. This is the product of the CONDUCTIVITY of the conductor and the electric field subjected to it. THUS J = σE is the implication of the continuity equation for conductors. |
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50. |
In the conversion of line integral of H into surface integral, which theorem is used?(a) Green theorem(b) Gauss theorem(c) Stokes theorem(d) It cannot be convertedThis question was addressed to me in my homework.The above asked question is from Maxwell Law 2 in chapter Maxwell Equations of Electromagnetic Theory |
Answer» Right answer is (C) STOKES THEOREM |
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