CSIR NET ACHIEVER (Physical Sciences) June 2020


This Course is designed and developed by a team of Highly Experienced and Qualified Faculties. It covers entire Syllabus and promise to make Student full prepared to give NET Exam with confidence

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Highlight Section

  • 1975 Practice Questions & 5 PSPs with Solutions
  • Complete Syllabus Covered
  • Easy to Understand Format
  • Highly Experienced and Net Qualified Faculty
  • Result Oriented Study Material


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Course Structure

          The Curriculum Section of this Course covers the following Content :

  • 22 Units of Theory [PART A, B & C (10+12 respectively)]
  • 22 Unit wise Practice Question Papers with Solutions (USPs) [PART A, B & C (10+12 respectively)]
  • 8 Volume wise Practice Question Papers with Solutions (VSPs) [PART A, B & C (3+5 respectively)]
  • 5 Model Solved Papers (MSPs) [PART A, B & C]
  • 5 Previous Year Solved Papers (PSPs) [PART A, B & C]- In Online Mode Only

Module: CSIR NET Physical Sciences (Part B & C) Theory Unit 1-12 (2019-20)

  • Subject: Physical Sciences
    • Section 1: Unit-1 (Mathematical Methods of Physics-I)

        Attachments 1: Dimensional Analysis

        Attachments 2: Vector Algebra

        Attachments 3: Vector Calculus

        Attachments 4: Linear Algebra

        Attachments 5: Linear Differential Equations

        Attachments 6: Special Functions

        Attachments 7: Fourier Series

        Attachments 8: Fourier Transforms

        Attachments 9: Laplace Transforms

        Attachments 10: Complex Analysis

        Attachments 11: Series of a Complex Terms

        Attachments 12: Elementary Probability Theory

        Attachments 13: Random Variable

        Attachments 14: Binomial Probability Distribution

        Attachments 15: Poisson Distribution

        Attachments 16: Continuous Distribution

        Attachments 17: Normal Distribution

        Attachments 18: Continuous Random Variables

    • Section 2: Unit-2 (Mathematical Methods of Physics-II)

        Attachments 1: Green’s Function (Influence Function)

        Attachments 2: Partial Differential Equations

        Attachments 3: Numerical Methods

        Attachments 4: Tensor

        Attachments 5: Introductory Group Theory

    • Section 3: Unit-3 (Classical Mechanics)

        Attachments 1: Newtonian Mechanics

        Attachments 2: Stability Analysis

        Attachments 3: Lagrangian Formulation of Classical Mechanics

        Attachments 4: Small Oscillation

        Attachments 5: Hamilton’s Formulation of Classical Mechanics

        Attachments 6: Conservation Laws of Lagrangian & Hamiltonian Formalism

        Attachments 7: Hamilton Jacobi Theory

        Attachments 8: Noether’s Theorem

        Attachments 9: Poisson’s Brackets (PB)

        Attachments 10: Canonical Transformations (CT)

        Attachments 11: Generating Function

        Attachments 12: Phase Space Dynamics

        Attachments 13: Rigid Body Dynamics

        Attachments 14: Special Theory of Relativity (STR)

        Attachments 15: Non-Inertial Frames & Pseudo Forces

        Attachments 16: Collision and Scattering

        Attachments 17: Central Force Motion

    • Section 4: Unit-4 (Electromagnetic Theory-I)

        Attachments 1: Mathematics Required for EMT

        Attachments 2: Electrostatics

        Attachments 3: Magnetostatics

        Attachments 4: Electromagnetic Induction

    • Section 5: Unit-5 (Electromagnetic theory-II)

        Attachments 1: Electromagnetic Wave

        Attachments 2: Scalar and Vector Potentials and Maxwells

        Attachments 3: Reflection and Refraction

        Attachments 4: Polarization

        Attachments 5: Interference

        Attachments 6: Diffraction of Light

        Attachments 7: Dynamics of Charged Particles in Static and Uniform Electromagnetic Fields

        Attachments 8: Dispersion of Light

        Attachments 9: Lorentz Invariance of Maxwells Equation

        Attachments 10: Transmission Lines and Wave-Guides

        Attachments 11: Electrodynamics of a Moving charge and Radiating System

    • Section 6: Unit-6 (Quantum Mechanics-I)

        Attachments 1: Origin of Quantum Mechanics

        Attachments 2: Basic Concepts of Quantum Mechanics

        Attachments 3: One Dimensional Potential

        Attachments 4: Multi Dimensional Potential

        Attachments 5: Schrodingers Equation for Spherically Symmetric Potentials

        Attachments 6: Angular Momentum Algebra

    • Section 7: Unit-7 (Quantum mechanics-II)

        Attachments 1: Identical Particles

        Attachments 2: Approximation Methods

        Attachments 3: Elementary Theory of Scattering

        Attachments 4: Relativistic Quantum Mechanics

        Attachments 5: The Semi-Classical Theory of Radiation

        Attachments 6: Selection Rules

    • Section 8: Unit-8 (Solid state)

        Attachments 1: Introduction

        Attachments 2: Crystal Structure

        Attachments 3: Reciprocal Lattice

        Attachments 4: X-Ray Diffraction (XRD)

        Attachments 5: Bonding Solids

        Attachments 6: Elastic Energy Density in Cubic Crystals

        Attachments 7: Lattice Vibrations

        Attachments 8: Thermal Properties of Solids

        Attachments 9: Free Electron Theory

        Attachments 10: Fermi Distribution Function

        Attachments 11: Band Theory of Solids

        Attachments 12: Semi Conductors

        Attachments 13: Hall Effect

        Attachments 14: Superconductivity

        Attachments 15: Thermo-Electric Effects

        Attachments 16: Defects and Dislocations

        Attachments 17: Kinds of Liquid Crystalline Order

        Attachments 18: Conducting Polymers

        Attachments 19: Quasicrystals

    • Section 9: Unit-9 (Electronics & Experimental Methods)

        Attachments 1: Basics of Network

        Attachments 2: Semiconductor Physics

        Attachments 3: PN Junction Theory

        Attachments 4: Transistors

        Attachments 5: Field Effect Transistor

        Attachments 6: OPTO Electronics

        Attachments 7: Operational Amplifiers

        Attachments 8: Filter Circuits

        Attachments 9: Concept of Feedback

        Attachments 10: Digital Techniques And Application

        Attachments 11: Accuracy And Precision

        Attachments 12: Least Square Curve Fitting

        Attachments 13: Transducer

        Attachments 14: Signal Conditioning And Recovery

        Attachments 15: Impedance Matching

        Attachments 16: Instrumentation Amplifier

        Attachments 17: Noise

        Attachments 18: Grounding

        Attachments 19: Lock In Detector

        Attachments 20: Modulation Techniques

        Attachments 21: High Frequency Devices

    • Section 10: Unit-10 (Thermodynamic and Statistical Physics)

        Attachments 1: Introduction to Thermodynamics

        Attachments 2: Phase Equilibria

        Attachments 3: Maxwells Speed Distribution

        Attachments 4: Statistical Mechanics

        Attachments 5: Distribution Law

        Attachments 6: Black Body Radiation

        Attachments 7: Phase Transition

        Attachments 8: Magnetic Properties of Solid

        Attachments 9: Ising Model

        Attachments 10: Random Walk

        Attachments 11: Brownian Motion

    • Section 11: Unit-11 (Atomic & Molecular Physics)

        Attachments 1: Bohr-Sommerfeld Theory of Hydrogen Atom

        Attachments 2: Fine Structure

        Attachments 3: Spectroscopic Terms L-S and J-J Coupling

        Attachments 4: Spectra of Alkali elements

        Attachments 5: Spectra of Helium

        Attachments 6: Zeeman Effect

        Attachments 7: Paschen Back Effect

        Attachments 8: Stark Effect

        Attachments 9: Hyperfine Structure of Spectral Lines

        Attachments 10: Breadth of Spectral Lines

        Attachments 11: X-Ray Spectra

        Attachments 12: Born-Oppenheimer Approximation

        Attachments 13: Molecular Spectra

        Attachments 14: Laser

    • Section 12: Unit-12 (Nuclear and Particle Physics)

        Attachments 1: Basic Nuclear Properties

        Attachments 2: Binding Energy of Nuclei

        Attachments 3: Semi-Empirical Mass Formula

        Attachments 4: Liquid Drop Model

        Attachments 5: Nuclear Force

        Attachments 6: Shell Model

        Attachments 7: Collective Model

        Attachments 8: Radio Activity

        Attachments 9: Particle Accelerator

        Attachments 10: Nuclear Fission

        Attachments 11: Nuclear Fusion

        Attachments 12: Nuclear Reactions

        Attachments 13: Deuteron Problem

        Attachments 14: Fundamental Forces

        Attachments 15: Elementary Particles

        Attachments 16: Relativistic Kinematics

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