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Course Structure Expected Number of Questions & Marks Weightage for CSIR NET Exam SectionExpected No. of QuestionsExpected MarksPart-A4-514-17.5Part-B3-415-20 Course Details: …

COMING SOON

Course Structure

Expected Number of Questions & Marks Weightage for CSIR NET Exam

SectionExpected No. of QuestionsExpected Marks
Part-A4-514-17.5
Part-B3-415-20
  • uncheckedThere will be approximately 30-38 marks out of 200 marks for CSIR-NET Exam.
  • uncheckedExpected Number of Questions & Marks Weightage for GATE Exam: 6 to 7 Questions and 9-12 marks out of 100 marks.
  • uncheckedExpected Number of Questions & Marks Weightage for JEST Exam: 5 to 6 Questions and 12-13 marks out of 100 marks.

Course Details:

We designed this integrated syllabus to provide a comprehensive and efficient preparation pathway for CSIR-NET, GATE, JEST, and SET exams by unifying overlapping topics, enabling aspirants to master core physics concepts and confidently appear for multiple competitive exams with a single course.

We separated the syllabus into focused modules to cover common topics across CSIR-NET, GATE, JEST, and SET, ensuring efficient and targeted preparation.

Module 1: Electrostatics

  • Electrostatics: Gauss’s Law and Applications, Laplace and Poisson Equations and Boundary Value Problems
  • Method of Images, Multipole Expansion

Module 2: Magnetostatics

  • Magnetostatics: Biot-Savart Law, Ampere’s Law

Module 3: Dynamics of Charged Particles

  • Dynamics of Charged Particles in Static and Uniform Electromagnetic Fields 

Module 4: Electrodynamics & Maxwell Equations

  • Electrodynamics: Faraday’s Law, Displacement Current, 
  • Maxwell’s Equations & Boundary Conditions at Interfaces
  • Lorentz Invariance of Maxwell's Equations

Module 5: Potentials & Invariances

  • Scalar and Vector Potentials: Coulomb and Lorentz Gauges; Gauge Invariance

Module 6: Electromagnetic Waves

  • Electromagnetic Waves: Propagation in Free Space and Media; Reflection, Transmission, Polarization, Fresnel's Law
  • Poynting Vector and Theorem
  • Radiation: Moving Charges, Dipoles, Retarded Potentials

Module 7: Plasma & Waveguides

  • Dispersion Relations in Plasma 
  • Transmission Lines and Waveguides

Module 8: Optical Phenomena

  • Optical Phenomena: Interference, Diffraction, Coherence

Reference Books:

  • Introduction to Electrodynamics by David J. Griffiths

Course Currilcum

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