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Chapter 3: Electromagnetic Theory Exam Tests

Electromagnetic Theory MCQs - Chapter 3

Metamaterials Multiple Choice Questions (MCQs) PDF Download - 1

The Book Metamaterials Multiple Choice Questions and Answers (MCQs), Metamaterials MCQs PDF Download, Free Ch. 3-1 to study advance electromagnetic theory Online Course. Practice Metamaterials Basics MCQs, Metamaterials trivia questions and answers PDF to prepare for job interview. The Metamaterials MCQs App Download: Free learning app for dilute metals, noble metals, ferrites, split ring resonator career test for online high school and college acceptance.

The Multiple Choice Question (MCQ Quiz): Natural resonant frequency of a plasma oscillation, equal to the minimum frequency of electromagnetic waves that can travel through the plasma without attenuation is called; "Metamaterials" App Download (Free) with answers radio frequency, plasma frequency, amplitude frequency and microwave frequency to learn online educational courses. Solve metamaterials basics quiz questions, download Google eBook (Free Sample) for questions to ask during an interview.

Metamaterials Questions & Answers PDF Download: MCQ Quiz 1

MCQ 1: The natural resonant frequency of a plasma oscillation, equal to the minimum frequency of electromagnetic waves that can travel through the plasma without attenuation is called

  1. plasma frequency
  2. radio frequency
  3. amplitude frequency
  4. microwave frequency

MCQ 2: Pendry et al. proposed dilute metals with extremely

  1. high plasma frequency
  2. low plasma frequency
  3. low microwave frequency
  4. high microwave frequency

MCQ 3: Metal that resists chemical action, does not corrode, and is not easily attacked by acids is called

  1. super insulators
  2. ideal insulators
  3. base metals
  4. noble metals

MCQ 4: Ferrites are material having electric permitivity

  1. equals to zero
  2. less than zero
  3. greater than zero
  4. infinite

MCQ 5: Effective relative magnetic permeability of an SRR array is given by

  1. µr,eff(w)=1-Fw2/w2-w2o+iγw
  2. µr,eff(w)=1+Fw2/w2-w2o+iγw
  3. ∊;r,eff(w)=w2/w2-w2o+iγw
  4. r,eff(w)=Fw2/w2-w2o+iγw

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Metamaterials App (Android & iOS)

Metamaterials App (Android & iOS)

Advance Electromagnetic Theory App (Android & iOS)

Advance Electromagnetic Theory App (iOS & Android)

Electric Circuit Analysis App (Android & iOS)

Electric Circuit Analysis App (Android & iOS)

Integrated Circuits App (Android & iOS)

Integrated Circuits App (iOS & Android)