CSIR NET Physics Syllabus – Complete & Updated Guide for Exam Preparation
The CSIR NET Physics syllabus is designed to test a candidate’s conceptual clarity, analytical ability, and problem‑solving skills across core areas of physics. Conducted by the Council of Scientific and Industrial Research (CSIR), the CSIR NET Physical Sciences exam determines eligibility for Junior Research Fellowship (JRF) and Lectureship/Assistant Professor positions in India.This page provides a full, unit‑wise CSIR NET Physics syllabus, along with exam pattern highlights and preparation tips
CSIR NET Physics Exam Overview
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Exam Name: CSIR UGC NET – Physical Sciences
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Conducting Body: NTA on behalf of CSIR
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Mode: Computer Based Test (CBT)
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Total Marks: 200
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Duration: 3 Hours
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Question Type: Objective (MCQs)
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Negative Marking: Yes
CSIR NET Physics Exam Pattern
The CSIR NET Physics paper consists of three parts:
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Part A: General aptitude (common to all subjects)
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Part B: Subject‑based conceptual questions
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Part C: Advanced analytical and application‑based problems
Part B and Part C are entirely based on the CSIR NET Physics syllabus.
CSIR NET Physics Syllabus (Unit‑Wise)
Unit 1: Mathematical Methods of Physics
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Vector algebra and vector calculus
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Linear algebra, matrices, eigenvalues and eigenvectors
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Complex analysis
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Differential equations
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Special functions (Legendre, Bessel, Hermite polynomials)
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Fourier series and transforms
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Green’s functions
Unit 2: Classical Mechanics
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Newtonian mechanics
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Lagrangian and Hamiltonian formulation
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Central force problems
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Rigid body dynamics
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Small oscillations
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Non‑linear dynamics and chaos
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Relativistic mechanics
Unit 3: Electromagnetic Theory
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Electrostatics and magnetostatics
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Maxwell’s equations
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Electromagnetic waves
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Boundary value problems
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Waveguides and resonant cavities
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Radiation and scattering
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Special theory of relativity
Unit 4: Quantum Mechanics
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Postulates of quantum mechanics
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Schrödinger equation
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Operators and commutation relations
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Angular momentum and spin
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Approximation methods
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Time‑dependent perturbation theory
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Identical particles and symmetry
Unit 5: Thermodynamics & Statistical Physics
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Laws of thermodynamics
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Thermodynamic potentials
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Kinetic theory of gases
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Classical and quantum statistics
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Bose‑Einstein and Fermi‑Dirac statistics
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Phase transitions
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Fluctuations
Unit 6: Atomic & Molecular Physics
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Atomic structure
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Spectra of atoms and molecules
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Fine and hyperfine structure
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Zeeman and Stark effects
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Lasers and masers
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Molecular spectroscopy
Unit 7: Nuclear & Particle Physics
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Nuclear properties and models
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Radioactive decay
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Nuclear reactions
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Particle accelerators
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Elementary particles
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Symmetries and conservation laws
Unit 8: Condensed Matter Physics
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Crystal structure and symmetry
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X‑ray diffraction
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Lattice dynamics
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Free electron and band theory
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Semiconductors
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Superconductivity
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Magnetism
Unit 9: Electronic Devices
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Semiconductor physics
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Diodes and transistors
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Amplifiers and oscillators
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Operational amplifiers
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Digital electronics
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Logic gates and circuits
Unit 10: Experimental Methods
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Error analysis
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Measurement techniques
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Experimental design
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Data analysis
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Numerical methods
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Computational physics basics
CSIR NET Physics Syllabus PDF
Candidates are advised to download the official CSIR NET Physics syllabus PDF from the NTA website and align their preparation accordingly.
Preparation Tips for CSIR NET Physics
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Build strong fundamentals from standard textbooks
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Focus more on problem‑solving for Part C
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Practice previous year CSIR NET Physics question papers
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Revise formulas and derivations regularly
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Take mock tests to improve speed and accuracy
Why CSIR NET Physics Syllabus is Important
Understanding the complete syllabus helps aspirants:
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Plan a structured study schedule
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Identify high‑weightage topics
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Avoid irrelevant preparation
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Improve selection chances for JRF and Lectureship
The CSIR NET Physics syllabus is comprehensive and concept‑oriented. With proper planning, consistent practice, and a clear understanding of fundamentals, candidates can successfully crack the exam. Bookmark this page for quick syllabus reference during your preparation journey.
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