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Course Structure Expected Number of Questions & Marks Weightage for CSIR NET Exam SectionExpected No. of QuestionsExpected MarksPart-A3-410.5-14Part-B2-310-15 Course Details: …

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Course Structure

Expected Number of Questions & Marks Weightage for CSIR NET Exam

SectionExpected No. of QuestionsExpected Marks
Part-A3-410.5-14
Part-B2-310-15
  • There will be approximately 20-30 marks out of 200 marks for CSIR-NET Exam.
  • Expected Number of Questions & Marks Weightage for GATE Exam: 4 to 5 Questions and 6-10 marks out of 100 marks.
  • Expected Number of Questions & Marks Weightage for JEST Exam: 8 to 9 Questions and 16-20 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: Fundamentals of Thermodynamics

  • Laws of Thermodynamics and Their Consequences; Thermodynamic Potentials; Maxwell Relations
  • Chemical Potential

Module 2: Phase Transitions & Critical Phenomenone

  • Phase Equilibria; Critical Points

Module 3: Radiation and Kinetic Theory

  • Blackbody Radiation and Planck’s Law
  • Kinetic Theory of Gases

Module 4: Foundation of Statistical Mechanics

  • Statistical Ensembles: Microcanonical, Canonical, Grand-Canonical

Module 5: Partition Function and Thermodynamics Quantitites

  • Partition Functions; Free Energy; Thermodynamic Quantities

Module 6: Classical & Quantum Statistics

  • Classical and Quantum Statistics
  • Classical Ideas Gas, Harmonic Oscillators

Module 7: Quantum Gasses

  • Ideal Bose and Fermi Gases; Bose-Einstein Condensation
  • Degenerate Fermi Gas
  • First and Second Order Phase Transitions

Module 8: Stochastic Processes

  • Random Walk; Diffusion Equation; Brownian Motion
  • Principle of Detailed Balance

Module 9: Magnetic Systems

  • Statistics of Diamagnetism, Paramagnetism and Ferromagnetism, Ising Model

Module 10: Introduction to Non-equilibrium Processes

  • Non-equilibrium Processes (Introduction)

Reference Books:

  • Thermodynamics by Garg, Bansal and Ghosh
  • Statistical Mechanics by R.K Pathria
  • Fundamentals of Statistical Mechanics and Thermal Physics by F. Reif

Course Currilcum

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