মেনু
QB Archive Quiz Creator Graph Poll Mode View Ques Quiz Leaderboard About
থিম নির্বাচন

আপনার পছন্দের থিম বেছে নিন।

JU-PHY - Final - Question Analysis
Watermark

JU-PHY - Final

Comprehensive question analysis

Total Questions

10234
In this filter

Subjects

30
Covered

Chapters

192
Covered

Most Recent Year

2023
Latest data

Questions by Unit (নির্বাচন করতে বারে ক্লিক করুন)

  • 4th Year
    2827
  • 3rd Year
    2562
  • 2nd Year
    2480
  • 1st Year
    2365

Questions by Year (নির্বাচন করতে বারে ক্লিক করুন)

  • 2023
    74
  • 2022
    472
  • 2021
    640
  • 2020
    378
  • 2019
    572
  • 2018
    801
  • 2017
    728
  • 2016
    758
  • 2015
    661
  • 2014
    638
  • 2013
    702
  • 2012
    602
  • 2011
    617
  • 2010
    485
  • 2009
    551
  • 2008
    448
  • 2007
    465
  • 2006
    174
  • 2005
    313
  • 2004
    75
  • 3
    19

Questions by Subject (নির্বাচন করতে বারে ক্লিক করুন)

  • Atomic and Molecular Physics
    565
  • Quantum Mechanics-I
    502
  • Mechanics
    486
  • Electrodynamics
    467
  • Electricity and Magnetism
    443
  • Mathematical Method for Physics
    424
  • Nuclear Physics -II
    421
  • Mathematical Physics
    420
  • Electricity and Magnetism
    419
  • Solid State Physics-I
    419
  • Nuclear Physics-I
    408
  • Thermal Physics
    401
  • Solid State Physics - II
    380
  • Plasma Physics
    368
  • Statistical Mechanics
    350
  • Chemistry-I
    348
  • Chemistry-II
    339
  • Quantum Mechanics-II
    327
  • Basic Electronics
    322
  • Classical Mechanics
    311
  • Optics
    308
  • Computer Programming and Numerical Methods
    305
  • Reactor Physics
    286
  • Computer Programming and Numerical Methods
    265
  • Principle of Statistics
    261
  • Geophysics
    224
  • Astrophysics
    205
  • Digital Electronics
    173
  • Computational Physics
    86
  • ext{and}
    1

Questions by Chapter (নির্বাচন করতে বারে ক্লিক করুন)

  • Particle Properties of Waves
    217
  • Formulation
    202
  • Atomic Structure
    193
  • Quantum Concepts and Detailed Atomic Structure
    157
  • Special Functions
    150
  • Statistics and Thermodynamics
    142
  • Waves in Bounded Regions
    138
  • Programing Concepts
    133
  • Introduction of Elementary Calculus
    132
  • Crystal Structure
    129
  • Kinematics and Particle Dynamics
    123
  • Stars
    123
  • Introduction
    121
  • Wave Properties of Particles
    121
  • Single-particle Motions
    114
  • Heat and Transfer of Heat
    111
  • Theory of Complex Variables
    105
  • Hydrogen atom
    100
  • Numbers and Binary Codes
    100
  • Matrix Formulation of Quantum Mechanics
    99
  • Simplifying Logic Circuits
    97
  • Propagation of Electromagnetic Waves
    97
  • Solution
    96
  • The Chemical Bonds
    95
  • Nuclear Properties
    94
  • Programming with C++
    94
  • Vector Algebra
    92
  • Current and Resistance
    92
  • Boolean Algebra and Logic Gates
    92
  • Analytic Geometry of Two and Three Dimensions
    91
  • Free Electron Theory of Metals
    91
  • Transport Phenomena in Gases & Real Gases
    89
  • Chemistry of Elements
    89
  • Electromagnetic Field Equations
    88
  • Oxidation Reduction Reactions
    87
  • Conservation of Linear Momentum
    87
  • Molecular Geometry and Covalent Bond
    85
  • Classical Statistical Mechanics
    85
  • Magnetism
    83
  • Lattice Vibrations and Thermal Properties
    81
  • Counters and Registers
    80
  • Zeroth and First Law of Thermodynamics
    78
  • Nuclear Reactions
    78
  • Transistor Devices and Circuits
    78
  • Work, Energy and Power
    77
  • Magnetic Field
    77
  • Superconductivity
    77
  • Electric Field
    76
  • Problems in One-dimension
    74
  • Polarization
    74
  • Waves in Plasmas
    72
  • Band Theory of Insulators and Semiconductors
    72
  • Integral Calculus
    69
  • Molecular Physics
    69
  • Radiation
    69
  • Elements of Probability
    66
  • Excitons, Photoconductivity, Luminescence and Defects in Solids
    66
  • Traveling Waves
    64
  • Chemical Equilibrium
    64
  • Semiconductor diode, Rectifier and Filter Circuits
    63
  • Theory of Matrices
    63
  • Partial Differential Equations
    62
  • Elasticity
    60
  • Diffraction (Fraunhofer Class)
    59
  • Ordinary Differential Equations
    58
  • Flip-Flops
    58
  • Schrödinger's Equation
    58
  • Hydrostatics and Surface Tension
    56
  • Radioactivity
    56
  • LASER
    56
  • Oscillations
    55
  • Set Theory
    55
  • Thermochemistry
    55
  • Potentials, Fields and Radiation
    55
  • Physical Basis
    55
  • Crystal Bonding
    55
  • Heat and Transfer of Heat
    54
  • Gravitation
    53
  • Scattering
    53
  • Sound Waves
    52
  • Hydrodynamics and Viscosity
    51
  • Electrochemistry
    51
  • Nuclear Scattering and Reactions
    51
  • Theory of Scattering
    51
  • Dielectric Properties
    50
  • Elements of Statistics
    49
  • Mechanisms of Nuclear Decay: $gamma$ decay of excited states
    49
  • Two Body Problems
    49
  • The Earth's Gravitational Field
    48
  • Interference (Division of amplitude)
    47
  • Alternating Current
    46
  • Plasma as a Fluid
    46
  • Neutron Chain Reaction
    45
  • Second Law of Thermodynamics
    45
  • Harmonic Oscillator
    44
  • Nuclear Structure Models
    44
  • Tensor Analysis
    44
  • Memory Devices
    43
  • Seismology and the Internal Structure of the Earth
    43
  • Theory of Angular Momentum
    43
  • Feedback and Oscillators
    43
  • D/A and A/D Conversion
    42
  • Stopping and Detecting Nuclear Radiations
    42
  • Neutron
    42
  • Entropy & Third Law of Thermodynamics
    42
  • Interference (Division of wavefront)
    42
  • Electric Potential
    41
  • Electromagnetic Induction and Inductance
    41
  • Semiconductors
    41
  • Mechanisms of Nuclear Decay: $eta$ decay
    40
  • Band Theory of Solids
    40
  • Modulation, Demodulation and Radio Receivers
    40
  • Capacitors and Dielectrics
    39
  • Nuclear Fission
    39
  • The Deuteron Problem
    39
  • Dispersion
    39
  • Circuit Analysis & Network Theorems
    38
  • Complex Numbers and Their Properties
    37
  • Integrated Circuit Technology
    37
  • Approximate Methods: IV) Other Methods / Quantum Dynamics
    37
  • Approximate Methods: I) Perturbation Method
    37
  • Bose Systems
    36
  • Accelerators and Sources of Atomic Particles
    36
  • Measures of Location
    35
  • Tests of Significance
    35
  • Review of Numerical Methods and the Solution of Ordinary Differential Equations
    35
  • Neutron Diffusion
    34
  • Nuclear Force
    34
  • Rotation and Figure of the Earth
    34
  • Vector Integral Theorems & Coordinates
    33
  • Moderation or Slowing Down of Reactor Neutrons
    31
  • Geodynamics (The Earth's Internal Heat)
    31
  • Approximate Methods: III) W.K.B. Method
    31
  • Regression and Correlation
    30
  • Expansion of the Universe
    30
  • A Brief Introduction to Organic Chemistry
    29
  • Transcendental Equations
    29
  • Stationary Waves
    28
  • Kinetic Theory
    28
  • Fermi Systems
    28
  • The Reactor Critical Equation
    27
  • Approximate Methods: II) Variational Method
    27
  • Measures of Dispersion
    26
  • Interaction of Nuclei with Electromagnetic Radiation
    26
  • The Earth in the Solar System
    26
  • Mechanisms of Nuclear Decay: $alpha$ decay
    26
  • Power Electronics
    26
  • Transistor Amplifier
    26
  • Basic Operational Amplifier
    26
  • Matrix Algebra
    25
  • Diffraction (Fresnel Class)
    25
  • Introduction (Reactor Physics)
    24
  • Galaxies
    22
  • Geomagnetism
    22
  • Transport Phenomena and Phase Transition
    20
  • Elementary Particles I
    20
  • Nuclear Reactors
    19
  • Radioactivity and the Age of the Earth
    19
  • Interpolation and Curve Fitting
    18
  • Elements of Biochemistry
    17
  • The Condensed State
    17
  • Quantum Statistical Mechanics
    17
  • Review of Elementary Principles
    16
  • Thermodynamic Potentials
    16
  • Maxwell's Thermodynamic Relations
    16
  • Big Bang Theory and Cosmology
    15
  • Numerical Differentiation and Integration
    15
  • Reactor Control
    14
  • Surface Chemistry and Colloids
    13
  • Special theory of Relativity
    12
  • Multi-electron atoms
    12
  • Special Theory of Relativity
    12
  • System of Linear Equations
    12
  • Sampling Technique
    11
  • The Rigid Body Motion
    10
  • Central Force
    10
  • Theory of Errors
    9
  • Elementary Particles II
    8
  • Hamilton's Equations of Motion
    8
  • Relativistic Mechanics
    8
  • Relativistic Quantum Mechanics
    7
  • Variational Principle and Lagrange's Equations
    7
  • Canonical Transformations
    7
  • The Monte Carlo Methods and Simulation
    6
  • Fourier Optics
    5
  • Synthesis
    4
  • Theory of band structures in crystals
    3
  • Renewable Energy Sources
    2
  • Electronic structure of solids
    1
  • Identical Particles
    1
  • CHA 78d00ba8
    1
  • Quantum Concepts and Detailed Atomic Structure
    1

Questions by Topic (নির্বাচন করতে বারে ক্লিক করুন)

  • Atomic spectra-the Bohr atom, Energy levels and spectra
    77
  • General equations of second degree for two and three dimensions and reductions to standard form
    74
  • Photoelectric effect and its important features
    73
  • Program Control Structure, Programming Paradigms and Languages, Types of computer languages
    58
  • Operators and commutation of operators
    57
  • Properties of stars
    53
  • X-rays: Production of continuous and characteristic X-rays
    47
  • Motion of charged particles in nonuniform E and B fields
    46
  • Rotational and vibrational energy levels
    45
  • Maxwell-Boltzmann Statistics and its Applications
    44
  • Oxidation number
    43
  • Alpha-particle scattering experiment and Rutherford model
    42
  • Reflection and refraction at the boundary of two non-conducting media (normal and oblique incidence)
    41
  • Gamma and beta functions
    40
  • de Broglie's hypothesis
    39
  • Number base conversion.
    39
  • Indefinite integrals and different techniques of integration
    37
  • Concepts of Binomial, Poisson's and Normal distribution
    35
  • Compton effect
    35
  • Collision phenomena
    34
  • Torque and angular momentum and their relation
    34
  • Theories of lattice specific heat Einstein model and Debye model
    34
  • Normal Zeeman effect
    34
  • State function and state function space
    33
  • Uncertainty principle and its applications
    33
  • Map method: Truth table to Karnaugh maps
    32
  • Radioactive decay law
    32
  • Debye length
    32
  • Arithmetic mean
    31
  • Hybrid orbitals
    31
  • Phase velocity and group velocities of matter waves
    31
  • Different number systems: Binary numbers
    31
  • Hermitian operators
    31
  • Relations and functions
    30
  • Projectile motion
    29
  • Equations of motion
    29
  • Eigenenergies and eigenfunctions of harmonic oscillator
    29
  • The Q-value equation and threshold energy
    29
  • Ripple counter, Design of synchronous counter, Parallel Counter
    28
  • Propagation of electromagnetic waves in free space
    28
  • Solution of the angular and radial part of the Schrödinger's equation of the hydrogen atom
    28
  • Group IV Elements: General remarks: occurrence, isolation and preparation of the metals as semiconducting materials.
    28
  • Electronic pair repulsion theory and molecular geometry
    28
  • Different types of matrices and their definitions
    28
  • Scalar and vector products and their significance
    27
  • Digital Logic gates: AND gate
    27
  • Wave guides
    27
  • Calculation of electrostatic energy, binding energy, Madelung constant and bulk modulus
    27
  • Operators and their Representation
    27
  • Fourier series and integrals
    27
  • the modern concept of acids and bases according to Arrhenius, Browsted-Lowry, and Lewis
    26
  • Gradient of scalar quantities
    26
  • Equations of motion in Schrödinger, Heisenberg and Dirac pictures
    26
  • Hydrogen bond
    26
  • Residue theorem and evaluation of residues
    26
  • Centre of mass
    25
  • Doppler effect and its applications
    25
  • Maxwell velocity distribution and mean values
    25
  • The Boltzmann partition function
    25
  • Potential well
    25
  • Orthogonality and the sharing of eigenfunction sets
    25
  • Fission and fusion reactions
    25
  • Quantum mechanical description of scattering cross-section Differential and total scattering cross-section, Center of mass and laboratory coordinates
    25
  • Group V Elements: General remarks; Occurrence, Preparation and properties; Allotropic forms; Binary compounds; Oxides and oxiacids.
    25
  • Equation of traveling waves
    24
  • Determination of length and area of plane curves and volume obtained by revolution of plane curves
    24
  • Kinetic energy of rotation and moment of inertia
    24
  • Entropy
    24
  • Poynting vector
    24
  • Schrödinger's equation for the hydrogen atom in spherical coordinates
    24
  • Failures of classical mechanics and emergence of quantum mechanics
    24
  • Neutrino hypothesis
    24
  • Stefan-Boltzmann law; Wien's displacement law.
    24
  • Derivatives of elementary functions
    23
  • Gauss's divergence theorem, Stokes' theorem and Green's theorem
    23
  • Motion of charged particles in static homogeneous electric and magnetic fields
    23
  • Pauli exclusion principle and the periodic table
    23
  • Fermi gas
    23
  • White dwarfs
    23
  • Ground state of the deuteron
    23
  • Elastic waves and seismic rays: Strain, Stress, Equations of Motion, Wave Equation, P and S-waves
    23
  • Scattering cross section
    23
  • Miller Indices
    23
  • Elevation of boiling point and depression of freezing point
    22
  • RC circuits
    22
  • Propagation between parallel conducting plates
    22
  • A simplified model of an insulator and intrinsic semiconductors
    22
  • Electron statistics
    22
  • Nuclear Shell Model: Independent particle shell model
    22
  • First and Second Order Iteration Methods
    22
  • Representation of Numbers: Fixed and floating point numbers, Overflow and underflow, Machine precision
    22
  • Tests of means
    21
  • Magnetic force on a charge and on a current
    21
  • The equations of motion
    21
  • Laws and theorems of Boolean algebra
    21
  • BCD shift registers
    21
  • Phase Space and Phase Trajectory
    21
  • Propagation of electromagnetic waves in conducting media
    21
  • Scattering by a free electron
    21
  • Heat Flow, Geothermal Gradient
    21
  • Basic data types
    21
  • Fourier and Laplace's transform
    21
  • Angular momentum operators in spherical polar coordinates
    21
  • Potential barrier
    21
  • Capacitor and capacitance-its calculations for different geometry
    20
  • Four quantum numbers
    20
  • Liouville's theorem and its Consequences
    20
  • Maxwell's equations
    20
  • Boundary conditions on the field vectors
    20
  • Bragg Diffraction in Reciprocal Lattice
    20
  • Interaction and absorption of gamma rays
    20
  • First Law and Various Processes.
    20
  • Diffraction by Plane diffraction grating, formation of spectra
    20
  • Simple harmonic motion (SHM)
    19
  • Thevenin's theorem
    19
  • Biot-Savart law and its applications
    19
  • Ampere's law and its applications
    19
  • The fluid equation of motion
    19
  • Electron Spin, Fine structure and anomalous Zeeman effect
    19
  • Commutation relations
    19
  • Dielectric Constants and Polarizabilities
    19
  • Time Independent Perturbation Theory: Nondegenerate Case
    19
  • Black holes
    19
  • Change in Entropy.
    19
  • Harmonic functions
    19
  • Legendre
    19
  • Brownian Motion and its Significance.
    19
  • Tabulation
    18
  • Equilibrum constants
    18
  • Kinetic and potential energies
    18
  • Gauss's law and some of its applications
    18
  • Higher derivatives
    18
  • LCR circuits
    18
  • Basic concepts of temperature
    18
  • Subtraction with r's and (r-1)'s complements
    18
  • Pair production and pair annihilation
    18
  • Schrödinger equation
    18
  • Scalar and vector potentials
    18
  • Measurements in quantum mechanics: Expectation values
    18
  • Nuclear reaction cross-section
    18
  • Transformation Theory
    18
  • State Vectors in Hilbert Space
    18
  • Newton's law of cooling
    18
  • Contra variant and covariant tensors
    18
  • Power series solutions
    18
  • Group III Elements: General remarks: Occurrence; isolation and properties; Chemistry of boron.
    18
  • Atomic excitation-Frank-Hertz experiment
    18
  • Atomic spectra-the Bohr atom
    18
  • Energy in electromagnetic fields
    18
  • Simple correlation
    17
  • Continuity and related theories
    17
  • General properties of conic sections
    17
  • Work done by constant and variable forces
    17
  • Introduction of Linear, non-linear and homogeneous differential equations
    17
  • Divergence and curl of vector quantities
    17
  • Adiabatic invariants
    17
  • D/A accuracy and resolution
    17
  • Integrated Circuit
    17
  • Wave equations for E and H and their solutions
    17
  • Ehrenfest's theorems
    17
  • Photoconductivity in crystals
    17
  • Yukawa potential
    17
  • Field effect transistors: Construction and characteristics of JFET
    17
  • Heisenberg uncertainty principle
    17
  • Bessels
    17
  • Carnot Engine and its Efficiency.
    17
  • ionic bonds, covalent bond and coordinate covalent bond
    17
  • Oscillators: Tuned collector oscillator, Colpitts oscillator, Hartley oscillator, phase shift oscillator, Wien bridge oscillators, Crystal oscillator
    17
  • Entropy, Free energy and other thermodynamic functions and their equilibrium conditions
    17
  • Potential step
    17
  • Nernst distribution law
    16
  • Conservative and non-conservative forces
    16
  • Work-energy theorem
    16
  • Electric potential energy
    16
  • De Moivere's theorem and its applications
    16
  • Uniform circular motion
    16
  • Tangential and normal components of acceleration in a plane
    16
  • Equation of continuity
    16
  • Electromagnetic waves in magnetic fields
    16
  • Binary ladder, D/A converter
    16
  • Davission-Germer experiment
    16
  • Magnetic dipole moment and electric moments
    16
  • Red shifts
    16
  • London equation
    16
  • Direct and compound-nuclear mechanisms
    16
  • Dirac Bra and Ket Notations
    16
  • Spectral emissive and absorptive powers, Kirchoff's law, blackbody radiation, energy density, radiation pressure.
    16
  • Common base, common emitter, common collector connections, and their characteristics
    16
  • Molecular orbitals
    16
  • Population inversion
    16
  • Adjoint and inverse of a square matrix
    16
  • SCR: Construction, V-I characteristics and applications
    16
  • Types of computer languages
    16
  • Normal and anomalous dispersion
    16
  • Electrical conductivity and Ohm's law
    16
  • Complex numbers
    15
  • Le Chatelier principle and variables affecting equilibrium concentration
    15
  • Kirchhoff's laws: Single loop and multi loop circuits
    15
  • Dipole in an electric field
    15
  • Nuclear motion and reduced mass
    15
  • Semiconductor memory technologies
    15
  • Solution of Laplace's equation in spherical polar and cylindrical coordinates: and their applications.
    15
  • Attributes and variables
    14
  • Euler's rule for partial differentiation of homogeneous functions
    14
  • Heats of reaction
    14
  • Vant Hoff's law of osmotic pressure
    14
  • Potential and field strength
    14
  • Motion of a system of particles and its linear momentum
    14
  • Electric field
    14
  • Photon interactions - photoelectric effect, Compton scattering, pair production and annihilation
    14
  • Neutron cycle and multiplication factors
    14
  • The source of energy of the sun
    14
  • Models for an impurity semiconductor
    14
  • Hall effect in semiconductors
    14
  • Four factor formula
    14
  • Eigenvalues and Eigen functions of Angular Momentum
    14
  • Electrostatic electron and ion waves in magnetic fields
    14
  • Weiss theory of ferromagnetism
    14
  • Origin of magnetism and its classification
    14
  • Thermodynamic Potentials U, H, F and G: Their Definitions, Properties and Applications.
    14
  • Negative feedback: Voltage feedback, current feedback
    14
  • Transistor load line analysis
    14
  • Energy levels and spectra
    14
  • Zone plates
    14
  • Vector atom model -s and $j-j$ coupling
    14
  • Particle Statistics: Principle of indistinguishability for quantum particles, Spin-statistics connection, Exchange degeneracy
    14
  • Skin depth
    14
  • Vibrations of monatomic linear lattice
    14
  • Cavity resonators
    14
  • Probability current density
    14
  • Normal modes and proper frequencies of a stretched string
    13
  • Group speed and phase speed
    13
  • Solutions of second order differential equations with constant and variable coefficients
    13
  • Frictional forces
    13
  • Vector and scalar quantities
    13
  • Newton's laws of motion
    13
  • Parallel and perpendicular axis theorems for moment of inertia
    13
  • Bernoulli's equation and its applications
    13
  • Plasma oscillations
    13
  • X-ray diffraction
    13
  • Ensembles: Microcanonical Ensemble, Canonical Ensemble-its Connection with thermodynamic parameters and grandcanonical ensemble
    13
  • Concepts and postulates of quantum mechanics
    13
  • Time-dependent and time-independent Schrödinger's equations
    13
  • Binding energy: Binding energy curve
    13
  • Scintillators properties of different phosphors
    13
  • Bloch theorem
    13
  • Multiple radiation and selection rules
    13
  • Spin dependence of neutron-proton scattering
    13
  • Gravitational Potential due to Nearly Spherical Body
    13
  • The Chandler wobble
    13
  • Relation of plasma physics to ordinary electromagnetic
    13
  • Loops, array and string
    13
  • Functions
    13
  • Properties of PN junction
    13
  • Dispersive and resolving power of grating
    13
  • Cauchy's integral theorem
    13
  • Inter-planar Spacing Concept of Reciprocal Lattice
    13
  • Solutions of linear first order differential equations
    12
  • Elements of logic
    12
  • Heats of formation
    12
  • Strength of acids and bases, measurements of pH of a buffer solution
    12
  • Raoult's law of vapour pressure lowering
    12
  • Self and mutual inductance and their applications
    12
  • Faradays' law of electromagnetic induction
    12
  • Coefficient of viscosity: Poiseuille's law
    12
  • Hydrostatic pressure
    12
  • Nomenclature, structural formula and important properties of simple organic compounds belonging to the following classes
    12
  • Equations of kinetic theory
    12
  • De Morgan's theorems
    12
  • Adders: half-adder and Full-adder
    12
  • Raman effect
    12
  • Concept of Reciprocal Lattice
    12
  • Wiedmann-Franz law
    12
  • Quarks, hadrons and leptons
    12
  • Concept of domains and hysteresis
    12
  • Weighted codes: The 8421 code
    12
  • Magnetic field effects: cyclotron resonance and Hall effect
    12
  • Values of Critical Constants. Gibbs' phase rule and simple applications. P-V Diagrams. Joule's Experiment.
    12
  • Mean Free Path. Collision Probability.
    12
  • Electronic theory of valency
    12
  • Retardation plates
    12
  • Radiometric dating, Types of decay
    12
  • Geiger-Nuttal law and theory of alpha decay
    12
  • Time variation of expectation values
    12
  • Coefficient of variation
    11
  • Type 1, Type 11 level of significance, size of the test, power of the test
    11
  • Electrochemical cell
    11
  • Calculation of moment of inertia
    11
  • Maxima
    11
  • Drift speed of charge carrier
    11
  • Gravitational field
    11
  • SR Latches: Transistor latch
    11
  • Fermi-Dirac distribution function
    11
  • Superfluidity in Liquid He
    11
  • Quantum mechanical tunneling
    11
  • Hilbert space
    11
  • Bravais Lattice
    11
  • Energy levels and density of states in one dimension
    11
  • Nuclear forces
    11
  • Semi-empirical mass formula
    11
  • Cyclotron
    11
  • Quantum theory of paramagetism
    11
  • Thermodynamics of superconductivity
    11
  • Type-I and type-II superconductors
    11
  • Ripple counter
    11
  • The complete set of fluid equations
    11
  • Pointing-Robertson effect
    11
  • Full-wave rectifier
    11
  • Chemistry of boron.
    11
  • Polarimeter
    11
  • Lorentz theorem
    11
  • Definition
    11
  • Laguerre and Hermite polynomials
    11
  • Thermal conductivity and thermal diffusivity
    11
  • Planck's radiation law
    11
  • Applications of First Law: General Relation between Cₚ and Cᵥ.
    11
  • Work Done during Isothermal and Adiabatic Processes.
    11
  • Newton's ring
    11
  • Unit Cell
    11
  • Simple random sampling
    10
  • Kepler's laws
    10
  • Relations between elastic constants
    10
  • Intensity and intensity levels
    10
  • Thermochemical laws
    10
  • R.M.S. Value of an AC voltage applied to resistors, capacitors and inductors
    10
  • Potential due to a point charge, A group of point charges and a dipole
    10
  • Taylor series
    10
  • Damped harmonic motion
    10
  • Conservation of linear momentum for a system of particles
    10
  • Occurrence of plasma in nature
    10
  • Electron plasma waves
    10
  • Memory addressing
    10
  • Maxwell's modification of Ampere's law
    10
  • Jk master-slave flip-flop
    10
  • Basic components of a nuclear reactor: Reactor core, cladding, coolant, moderator, control rod or control system, blanket, reflector, reactor vessel, shielding, reactor building
    10
  • One speed diffusion equation
    10
  • Hubble's law regarding expansion of the universe
    10
  • Tunneling and Josephson Effect
    10
  • Neutron-proton scattering at low energy
    10
  • Optical Model: Complex Potential
    10
  • Radioactive Decay
    10
  • Earth tides
    10
  • Seismicity of the earth: Historical Perspective, Introduction
    10
  • Precession of the equinoxes
    10
  • Application to Bound States
    10
  • Basic principle of variation method
    10
  • First-Order Perturbation
    10
  • Optical Theorem
    10
  • Harmonic Oscillator
    10
  • BCS theory
    10
  • Excitons
    10
  • Van-der Waal's Equation of State for Real Gases.
    10
  • UJT: Construction, V-I characteristics and applications
    10
  • Angular momentum
    10
  • Analytic function
    10
  • Theory of interference
    10
  • Photons and gravity
    10
  • Dispersion in gases
    10
  • Mean free path, Viscosity and Diffusion
    10
  • Ionic crystals
    10
  • Radiation from a half-wave antenna
    10
  • Gas-filled counters - ionization chambers, proportional and Geiger-Müller counter
    10
  • Packing Factor
    10
  • Statistics: Its nature and scope
    9
  • Stress-strain diagram
    9
  • Stokes' law
    9
  • Pressure difference across a surface film
    9
  • Surface energy
    9
  • Surface tension
    9
  • Applications of ordinary differential equations in physics problems
    9
  • Exothermic and endothermic reactions
    9
  • Thermoelectricity: Peltier effect
    9
  • Coulomb's law
    9
  • Partial differentiation
    9
  • Various types of standard solution
    9
  • Electric flux
    9
  • Reflection and transmission at a junction
    9
  • Alkanes, amides, amino acids, proteins and carbohydrates
    9
  • reactions and e.m.f. of standard cells
    9
  • Applications of SHM
    9
  • Viscosity
    9
  • Definition of plasma
    9
  • Specific heat of solids
    9
  • Total internal reflection
    9
  • Domain of quantum mechanics
    9
  • Solution of Schrödinger's equation for the one-dimensional harmonic oscillator
    9
  • Vibrations of diatomic linear lattice
    9
  • D-type flip-flop: Unclocked and clocked D flip-flop
    9
  • IC Fabrication: Purification and preparation of silicon wafer
    9
  • Stopping power, range and strangling for charged nuclear particles
    9
  • Neutron cross section
    9
  • Radioactive elements and the principle of radiometric dating
    9
  • Criteria for plasmas
    9
  • The meaning of distribution function f (v)
    9
  • Group velocity and phase velocity
    9
  • Expanding cosmological models and the Big bang theory
    9
  • Ferrimagnetism and structure of ferrites
    9
  • Improved model of an insulator and intrinsic semiconductors
    9
  • Meissner effect
    9
  • Schottky defects
    9
  • Decoders: BCD- to decimal decoder
    9
  • Internal conversion
    9
  • The Gray code
    9
  • Kronig-Penney model
    9
  • General properties and characteristics
    9
  • JK flip-flop: Edge-triggered JK flip-flop
    9
  • Eigenvalue equations
    9
  • Brewster's law
    9
  • Michelson's interferometer
    9
  • Einstein's relations
    9
  • Stimulated emission
    9
  • Similarity transformation
    9
  • covalent bond and coordinate covalent bond
    9
  • Planck's radiation law; Solar constant.
    9
  • Inverting and non-inverting Op-amp
    9
  • Methods of obtaining polarized light
    9
  • Electric dipole radiation
    9
  • Clausius-Mossotti Relation
    9
  • Propagation of electromagnetic waves in ionized gases
    9
  • Fitting of simple linear regression
    8
  • Combination of harmonic motions
    8
  • Loudness and pitch
    8
  • Algebra of sets
    8
  • Faraday's law of electrolysis
    8
  • Concept of motion and frames of reference
    8
  • Rotation with constant angular acceleration
    8
  • Torque on a current loop
    8
  • Solvent extraction
    8
  • Calculation of equilibrium constants
    8
  • Examples
    8
  • Maximum power transfer theorem
    8
  • Theorems of total, compound and conditional probability
    8
  • Forced oscillations and resonance
    8
  • Chain rule
    8
  • angle of contact and capillarity
    8
  • LR circuit
    8
  • Orbital representation of aliphatic and aromatic hydrocarbons
    8
  • Thermodynamical Equilibrium.
    8
  • Multivibrators
    8
  • The universal building block
    8
  • Quantum liquids with Bose-type spectrum
    8
  • Retarded potentials
    8
  • Laue equations and Bragg law
    8
  • Free electron gas in three dimensions
    8
  • Interatomic forces and crystal bonding
    8
  • Dielectric Phenomena in an Ac Field
    8
  • Standard Model of Particle Physics, Three generations of particles
    8
  • Parabolic Equations - Diffusion
    8
  • Introduction
    8
  • Average logarithmic energy decrement
    8
  • Neutron leakage and critical size
    8
  • Concept of holes and effective mass
    8
  • carrier concentration and transport
    8
  • Conservation laws: Angular momentum, Baryon number, lepton number, Strangeness, Isospin, Parity, charge conjugation and CP
    8
  • Crustal structure and the principle of isostasy
    8
  • Validity Criterion
    8
  • Approximate Solutions and Asymptotic Nature of Solutions
    8
  • Application to Harmonic Oscillator
    8
  • Basic properties of superconductors
    8
  • Resonance
    8
  • Alkali vapor magnetometer
    8
  • Application of plasma physics
    8
  • Traps
    8
  • Fuel consumption
    8
  • Arithmetic Circuits: Complements: The r's and $(r-1)^{,}$ s complements
    8
  • Input and output operations
    8
  • Class
    8
  • Entropy Changes in Reversible and Irreversible Processes.
    8
  • Double refraction axes of crystals and their types Nicol Prism
    8
  • Diffraction by double slit
    8
  • Diffraction by a single slit
    8
  • Derivations of Maxwell's Relations.
    8
  • Ideal Op-amp
    8
  • Eigenfunctions and basis vectors
    8
  • Characteristics of an ideal measure of dispersion
    7
  • Asymptotic and tangent normal of curves, Arc length and radius of curvature of curves
    7
  • Energy stored in an electric field
    7
  • Principle of conservation of energy
    7
  • Conservation of angular momentum
    7
  • Current and current density
    7
  • Transmission of energy by traveling waves
    7
  • Specific conductance
    7
  • Thermocouple
    7
  • Coil spring
    7
  • Properties of non-volatile, non-electrolytic dilute solutions
    7
  • Plasma frequency
    7
  • Neutrino Masses
    7
  • Thermodynamic Probability
    7
  • Pyro, piezo and Ferroelectricity
    7
  • Introduction to Numerical Computing
    7
  • Euler's Method
    7
  • Errors in Numerical Methods, Numerical Instabilities
    7
  • Collision kinematics
    7
  • Neutron stars
    7
  • Formation of stars
    7
  • Multiplexers
    7
  • Magic numbers
    7
  • Born Approximation
    7
  • Classification of neutron according to energy
    7
  • Rough scales of the astronomical universe
    7
  • Breit-Wigner dispersion formula for an s-state
    7
  • Ladder operators
    7
  • Electric quadrupole moment and deuteron wave function
    7
  • Principles of object oriented programming
    7
  • Lorentz transformations
    7
  • Reversible and Irreversible Changes.
    7
  • Rayleigh-Jeans formula; Planck's radiation law; Solar constant.
    7
  • Internal Energy.
    7
  • Types of AM radio receivers: Straight radio receiver, superheterodyne radio receiver
    7
  • Radio broadcasting: Transmission and reception
    7
  • Reflection from a film of varying thickness
    7
  • Cauchy-Riemann equations
    7
  • Kronecker delta as a mixed tensor
    7
  • Transistors connections
    7
  • Power in AM wave
    7
  • Types of bonds
    7
  • Carnot Cycle.
    7
  • First Law of Thermodynamics (Differential form of First Law).
    7
  • Half-wave rectifier
    7
  • Optical activity
    7
  • Cauchy's integral formulas
    7
  • Stirling Approximation
    7
  • Mass defect
    7
  • Solids at low and high temperature
    7
  • Mirror nuclei
    7
  • Local Electric Field at an Atom
    7
  • Experiment
    6
  • The superposition principle
    6
  • Union, Intersection and Cartesian product
    6
  • Colloids- Classification, Preparation, Purification, Properties and Importance
    6
  • Adsorption
    6
  • Relation between linear and angular kinematics of a particle in circular motion
    6
  • Electric charge
    6
  • Dielectric and Gauss's law
    6
  • AC current and voltage in series RL and RC circuits
    6
  • Norton's theorem
    6
  • L' Hospitals rule
    6
  • Limits
    6
  • Hyperbolic functions and their relations to trigonometric functions
    6
  • Heats of combustion
    6
  • Equilibrium states
    6
  • Vector addition and subtractions
    6
  • Energy stored in a magnetic field
    6
  • Elastic moduli
    6
  • Reflection at a fixed end of a stretched string
    6
  • Law of mass action
    6
  • Power dissipation in an AC circuit
    6
  • Longitudinal waves in a bar
    6
  • Lines and tubes of flow
    6
  • Torsion
    6
  • Stress
    6
  • Thermionic Emission
    6
  • Symmetry operations
    6
  • Subtractors: Half-subtractor and full subtractor
    6
  • Attenuation and shielding
    6
  • Elliptic Equations Poisson's Equation, 1-D Problem with Dirichlet Boundary Conditions, 2-D Problem with Neumann Boundary Conditions, Example Solution of Poisson's Equation in 1-D, 2-D And 3-D
    6
  • Matrix Eigenvalue Problems Schrödinger's Equation, General Principles, Full Diagonalization, The Generalized Eigenvalue Problem, Partial Diagonalization, Sturm Sequence, Sparse Matrices and The Lanczos Algorithm, Numerical Solution of Schrodinger Equation for Spherically Symmetric Potentials - Scattering States, Calculation of Phase Shifts, Resonance
    6
  • Microscopic and macroscopic cross sections
    6
  • Fission product poisoning, $^{135}Xe$ poisoning, $^{149}Sm$ poisoning
    6
  • Peculiar galaxies and quasars
    6
  • The milky way system
    6
  • Clocked SR flip-flop
    6
  • Effective range theory in n-p scattering
    6
  • Coherent and incoherent scattering at low energy neutrons
    6
  • Exchange forces
    6
  • Fissions rate
    6
  • Energy release from fission
    6
  • Figure of the earth
    6
  • Thermal conduction in the mantle
    6
  • nuclear Binding energy: mass defect, separation energy
    6
  • Breeding reaction
    6
  • XOR and XNOR gates
    6
  • Gravity as a gradient of the geopotential
    6
  • Compilers, Interpreters
    6
  • Binary parallel adder, Decimal adder, BCD adder
    6
  • Fission energy and thermonuclear energy
    6
  • Choice and decisions
    6
  • D'Alembert's principle & Lagrange's equations
    6
  • Heat capacities
    6
  • Ripple Factor Capacitor filter
    6
  • Conditions of interference
    6
  • Huygen's principle
    6
  • Two classes of diffraction phenomena
    6
  • Hermite and Lagrange's Interpolation Formula
    6
  • Experimental measurements of thermal conductivity
    6
  • Stern-Gerlach experiment
    6
  • Construction and characteristics of depletion and enhancement type MOSFET
    6
  • Single stage and multi-stage transistor amplifiers
    6
  • Error Analysis
    6
  • Concepts of Algorithm, Good algorithm Vs. bad algorithm
    6
  • Program design: structured programming
    6
  • Linear and Polynomial Least Squares Curve Fitting
    6
  • Impossibility of Attainability of Absolute Zero: Third Law of Thermodynamics.
    6
  • Adder and subtractor
    6
  • Power amplifier: Class A, class B, and class C amplifiers
    6
  • Covalent bond and coordinate covalent bond
    6
  • Gauss Elimination Methods
    6
  • Positive feedback
    6
  • Vector atom model -s and j-j coupling
    6
  • Solution of linear equations by matrix method and by Cramer's rule
    6
  • Fringe width
    6
  • Programming Paradigms and Languages, Types of computer languages
    6
  • Transition of Rare-earth Elements.
    6
  • Ionic bonds, covalent bond and coordinate covalent bond
    6
  • Hund's rules.
    6
  • Van de Graff accelerator
    6
  • Scattering by a bound electron
    6
  • Specification of States of a System
    6
  • Expectation values of some observables for the pure and mixed states of harmonic oscillator
    6
  • Macrostates and Microstates
    6
  • Energy and orbits
    5
  • Electrolytic conduction
    5
  • Application of the linear momentum in the case of rocket propulsion
    5
  • Meaning and definition of probability
    5
  • Fundamental theorem of integral calculus
    5
  • Determination of gravitational constant
    5
  • Speed of propagation of waves in a stretched string
    5
  • The Hall effect
    5
  • Gravitational attraction
    5
  • Beats
    5
  • Rotational dynamics of a rigid body
    5
  • Parallel plate capacitor with and without dielectric
    5
  • Fluid drifts
    5
  • ROM architecture
    5
  • Molecular bonds
    5
  • Harmonic oscillator
    5
  • Propagation of electromagnetic waves in isotropic non-conducting media
    5
  • Elastic vibration of a continuous medium
    5
  • A/D converter, A/D accuracy and resolution
    5
  • Algebraic simplification
    5
  • Energy dependence of neutron cross section
    5
  • Prompt and delayed neurons
    5
  • Classification of reactors according to the purpose
    5
  • Critical equation and reactor buckling
    5
  • Ferromagnetism
    5
  • Paramagnetism
    5
  • Point defects in solids: Lattice vacancies
    5
  • Simplification of Boolean functions
    5
  • NOR gate
    5
  • Photodisintegration
    5
  • Phase shift
    5
  • Classification and general properties
    5
  • Fundamental equations
    5
  • Comparison of ion and electron waves
    5
  • Formation and classification of galaxies
    5
  • Schrödinger, Heisenberg and Dirac pictures
    5
  • Ion waves
    5
  • Strong, electromagnetic and weak interactions
    5
  • Necessity of variational method
    5
  • Angular momentum matrices
    5
  • Solution of one-group reactor equation: For the slab reactor, for a spherical reactor, for an infinite cylindrical reactor, for a rectangular parallelepiped reactor, for a finite cylindrical reactor
    5
  • The end states of stars
    5
  • Scattering by spherically symmetric potential: Partial wave analysis
    5
  • Plasma parameters
    5
  • Orbital angular momentum operators and their representation in spherical polar co-ordinates
    5
  • Motion of charged particles in time-varying E and B fields
    5
  • Satellite Geoid
    5
  • Inheritance
    5
  • Reaction dynamics
    5
  • Hamilton's principle
    5
  • Equations of Canonical transformations
    5
  • Generalized co-ordinates
    5
  • Second Law of Thermodynamics: Kelvin-Planck and Clausius Statements and their Equivalence.
    5
  • Refrigerator and its Efficiency.
    5
  • Entropy of a Perfect Gas.
    5
  • Transistor action
    5
  • Transistor biasing
    5
  • Intrinsic semiconductor
    5
  • Push-pull amplifier
    5
  • Electronegativity
    5
  • Fabry-Perot interferometer
    5
  • Newton's Forward and Backward Difference Interpolation Formula
    5
  • Electromagnetic radiation
    5
  • Transistors: Naming the transistor terminals
    5
  • R-C coupled and transformer coupled transistor amplifiers
    5
  • Color of thin films
    5
  • Practical LASERs (Ruby, Nd-YAG, He-Ne, $CO_{2}$, Argon-ion, Dye, Semiconductor)
    5
  • Solution of the differential equations by the method of separation of variables
    5
  • Generating functions and recurrence relations
    5
  • Numerical Integration: Trapezoidal Method
    5
  • Applications of Maxwell's Relations: (1) Clausius Clapeyron equation.
    5
  • Analysis of polarized light
    5
  • Young's experiments
    5
  • Half period zones and strips
    5
  • Evaluations of definite integrals
    5
  • Inverse Laplace's transform
    5
  • Numerical Differentiation using Interpolation
    5
  • Elliptical & circular polarization
    5
  • Fourier's equation for heat conduction its solution for rectilinear and radial (spherical and cylindrical) flow of heat.
    5
  • Electron Spin
    5
  • Volume in Phase Space
    5
  • The Specific heat of Solids
    5
  • Fine structure
    5
  • The Drude free electron theory
    5
  • Nonelectronic dynamical properties: Phonon
    5
  • Bose-Einstein distribution function and it's application
    5
  • Drude phenomenology of electronic properties, Fermi gas, Energy levels and density of states in one dimension
    5
  • Phonon momentum
    5
  • Radioactive equilibrium
    5
  • Drude-Lorentz harmonic oscillator model
    5
  • Fermi gas, Energy levels and density of states in one dimension
    5
  • Nuclear and chemical reactions
    5
  • Bohr atom and old quantum theory
    5
  • Reaction cross sections, Resonances, Optical potential, Direct and compound-nuclear mechanisms
    5
  • Relationship between variables
    4
  • Constant equivalent conductance
    4
  • Transport numbers
    4
  • Error
    4
  • Del and Laplacian operators in polar, cylindrical and spherical coordinates
    4
  • Alternating voltage and current and their graphical representation
    4
  • Cantilever
    4
  • DNA, RNA
    4
  • Resistance, resistivity and conductivity
    4
  • Ohm's law
    4
  • Superposition theorem
    4
  • Inertial and gravitational mass
    4
  • Metabolism of protein and carbohydrate
    4
  • Boolean functions
    4
  • Length contraction and time dilation
    4
  • Many-electron atoms and atomic spectra
    4
  • Density of States and its General Behavior
    4
  • Thermodynamic classification of Phase transition
    4
  • The Crystalline State of Solids
    4
  • Heat capacity of the electron gas
    4
  • RAM architecture
    4
  • Types of Equations
    4
  • Adaptive Integration Methods
    4
  • The Runge-Kutta Method
    4
  • Solution by Taylor Series
    4
  • Iterative Methods, The Jacobi Method, The Gauss-Seidel Method
    4
  • Matrix Inversion
    4
  • Minterm and maxterm
    4
  • Slowing down time
    4
  • Neutron yield and neutron production ratio
    4
  • The thermal diffusion length
    4
  • Modern astronomy
    4
  • Color centers
    4
  • SR Latches: NAND and NOR latch
    4
  • Ortho- and para hydrogen
    4
  • Reactor power
    4
  • Attenuation of Neutrons
    4
  • Mean free path
    4
  • Solution of diffusion equation for different geometry
    4
  • Age of the universe
    4
  • Classification of solids by their electrical properties at zero temperature: metals and insulators
    4
  • Frenkel defects
    4
  • Transition between two low-lying states of nuclei
    4
  • Homogenous and heterogeneous reactor system
    4
  • Travel Time Curves and Radial Earth Structure
    4
  • Static cosmological models
    4
  • Diamagnetism
    4
  • Probability of multiple emission and absorption
    4
  • Scattering lengths
    4
  • Spin and magnetic moments of nuclei
    4
  • Meteorites and the Bulk Composition of the Earth
    4
  • Figure of the Earth
    4
  • Fermi's Golden Rule
    4
  • Derivations of fluid equations
    4
  • Control and reactor kinetics
    4
  • The sun as a star, Surveying the solar system
    4
  • Negative energy states and hole theory
    4
  • Spin-orbit interaction & potential
    4
  • Commutation relations among orbital angular momentum operators
    4
  • Formation of integrated circuit elements
    4
  • Theory of alpha decay
    4
  • Distinction among metals, insulators and intrinsic semiconductors
    4
  • impurities, intrinsic and doped semiconductors, concept of hole charge carriers and effective mass, Electron statistics
    4
  • Static and dynamic RAM
    4
  • Curie-Weiss law
    4
  • Eulerian angles
    4
  • The Hamiltonian
    4
  • Scattering in a central force field
    4
  • Momentum-energy four-vector
    4
  • Quantum Dynamics: Schrödinger, Heisenberg and Dirac pictures
    4
  • Carnot Theorem.
    4
  • Temperature of the sun; Application of radiation laws.
    4
  • Zeroth Law of Thermodynamics and Concept of Temperature.
    4
  • Filter circuits
    4
  • Classifications of amplifiers
    4
  • Frequency modulation
    4
  • Thomson model of atom
    4
  • Nicol Prism
    4
  • Concept of Polarization of light
    4
  • Compilers, Interpreters, Program design: structured programming
    4
  • Deviations from the Ideal Gas Equation. The Virial Equation. Van-der Waal's Equation of State for Real Gases.
    4
  • Nuclear dimensions, Electron orbit
    4
  • Modulation: Amplitude modulation, frequency modulation, modulation factor
    4
  • Kronecker delta
    4
  • Simpson's Method
    4
  • Voltage stabilization
    4
  • Valence shells
    4
  • Cell sand tissue; structure and function
    4
  • Optical feedback
    4
  • Iterative Methods Jacobi Method
    4
  • Particles and waves in nature
    4
  • Energy Band Description of semiconductors
    4
  • Rayleigh's criterion for resolution
    4
  • Caley-Hamilton theorem
    4
  • Joule-Thomson Effect for Real and Van der Waal Gases. Temperature of Inversion.
    4
  • Applications of LASERS
    4
  • Deviations from the Ideal Gas Equation. The Virial Equation.
    4
  • Electronic spectra of molecules
    4
  • Statistical Equilibrium
    4
  • Bose-Einstein Condensation
    4
  • Wave functions of identical particles. Exchange symmetry.
    4
  • Propagation between parallel conducting plates, Wave guides
    4
  • Hall effect
    4
  • Stochastic Processes, Markov Chain
    4
  • Lienard-Wiechert potentials
    4
  • Measurement of alpha-particle energies
    4
  • Conservation of energy
    4
  • Coulomb displacement energy
    4
  • Van der Waals and repulsive interactions
    4
  • Angular momentum: Spin, parity and symmetry
    4
  • Measurement of disintegration energies
    4
  • Constitution of the nucleus
    4
  • Simple Crystal Structures
    4
  • Skewness and kurtosis
    3
  • Contingency table analysis
    3
  • Elastic hysteresis
    3
  • Random variables
    3
  • Thermoelectricity: Seeback effect
    3
  • Arc length and radius of curvature of curves
    3
  • Concept of mass and force
    3
  • Magnetic induction and magnetic effects of currents
    3
  • Escape velocity
    3
  • Internal elastic potential energy
    3
  • The bending of beams
    3
  • Solutions of the differential equations by the method of variable separation
    3
  • Definite integral as the limit of a sum
    3
  • Sample space and event
    3
  • Gravitational potential energy
    3
  • Lenz's law
    3
  • Heats of solution
    3
  • Graphs and diagrams
    3
  • The acceleration due to gravity
    3
  • Deviations from distribution laws
    3
  • Determination of molecular weight of substances using Raoult's law
    3
  • Energy transfer in an electric circuit, Electromotive force and potential difference
    3
  • Probability functions
    3
  • Blood constituents
    3
  • Vector differentiation and integration
    3
  • Distribution of error
    3
  • Electric dipole
    3
  • Velocity addition
    3
  • Relativistic Mass and Energy
    3
  • Pauli Paramagnetism
    3
  • Fermi Energy
    3
  • Boltzmann transport equation
    3
  • Transition from Classical to Quantum Statistical Mechanics
    3
  • Reciprocal Lattice
    3
  • Variable-resistor network
    3
  • Natural and artificial radioactivity
    3
  • Hyperbolic Equations Wave Equations, wave propagation, initial conditions and limits, modes, Eigen frequencies, stability analysis
    3
  • TTL circuits
    3
  • The ASCII code
    3
  • Angular and energy distribution
    3
  • Slowing down power and moderating ratio
    3
  • Criticality calculations: The group diffusion method, two-group critical equations, modified one-group critical equation
    3
  • conductivity
    3
  • One-dimensional Earth's Structure
    3
  • Hilbert Space
    3
  • Plasma oscillations and Landau damping
    3
  • Neutron reaction
    3
  • Fick's law
    3
  • Fermi age, $ au$
    3
  • Contents of the universe
    3
  • Radius of deuteron
    3
  • Fissile materials
    3
  • Tidal friction and the history of the Earth-Moon system
    3
  • Spin angular momentum
    3
  • Solar System Formation, Accretion, and the Early Thermal State of the Earth
    3
  • Cosmic ray exposures of meteorites
    3
  • Active galaxies
    3
  • Classification of reactors according to the material used
    3
  • Radial Earth Structure
    3
  • Neutron transport equation: Basic definitions, assumptions
    3
  • Antiferromagnetism
    3
  • multipolarity, selection rules and decay probabilities
    3
  • Plasma production
    3
  • Dispersion in liquids and solids
    3
  • Program errors and exception handling
    3
  • Luminescence and excitons
    3
  • The Classical Limit
    3
  • Angular momentum operators in spherical polar co-ordinates
    3
  • Derivation of Lagrange's equations from Hamilton's principle
    3
  • Relativistic energy
    3
  • Two-body central force problem
    3
  • Heat flow through a compound wall
    3
  • Spectrometer
    3
  • Wien's displacement law.
    3
  • Zener diode
    3
  • Operator overloading
    3
  • Integrator
    3
  • Mechanics of a system of particles
    3
  • Fundamental principles
    3
  • Cauchy's integral formula
    3
  • Invariance of tensors
    3
  • Flowchart, Pseudopodia, Program Control Structure, Programming Paradigms and Languages, Types of computer languages
    3
  • Principle of Increase of Entropy.
    3
  • Reflectance, reflectivity, etc.
    3
  • Types of LASERS
    3
  • analysis of amplitude modulated wave
    3
  • Amplitude modulation, frequency modulation, modulation factor
    3
  • Fresnel's biprism
    3
  • Estimates of Mean Free Path.
    3
  • Intensity distribution curve
    3
  • Microscope
    3
  • Phase shift oscillator
    3
  • Differentiation of complex functions
    3
  • Work and Heat Energy.
    3
  • Euler's theorem
    3
  • Fine structure and anomalous Zeeman effect
    3
  • The Postulates of Classical Statistical Mechanics
    3
  • Propagation of electromagnetic waves in conducting media, Skin depth
    3
  • LINAC
    3
  • Liquid drop model and Shell model
    3
  • Condition of alpha decay
    3
  • Normal and Umklapp processes
    3
  • Stopping of neutrons
    3
  • Properties of gamma rays
    3
  • Successive radioactive transformations
    3
  • Absolute measure
    2
  • Frankline and Lux-flood Concepts
    2
  • Homogeneous and heterogeneous equilibria
    2
  • Discrete and continuous variable
    2
  • Point charge in an electric field
    2
  • measurements of pH of a buffer solution
    2
  • Waves in three dimensions
    2
  • Interference of spherical (sound) waves
    2
  • Polar, spherical and cylindrical coordinates
    2
  • Work, Energy and Power
    2
  • Pascal's law
    2
  • Method of data collection
    2
  • Seeback effect
    2
  • Thrust on an immersed plane
    2
  • Equivalent conductance
    2
  • Plane waves in fluid
    2
  • Hydrostatic paradox
    2
  • lon and pH balance of the body fluid
    2
  • Solutions by the method of variation of parameters and undetermined coefficients
    2
  • Line, surface and volume elements
    2
  • Geometric mean
    2
  • Thermoelectricity: Thermocouple
    2
  • Mass and density of the earth
    2
  • Newton's law of gravitation
    2
  • State Functions.
    2
  • Neutralization Reactions
    2
  • Expectation of sum and products
    2
  • Basic Postulates of special theory of relativity
    2
  • Molecular orbital theory applied to covalent bonding.
    2
  • Pauli exclusion principle.
    2
  • Hydrogen molecule.
    2
  • Oxidization
    2
  • Proton synchrotron
    2
  • Finite Difference and Finite Element Schemes
    2
  • The Fast Fourier Transform and applications
    2
  • Introduction to Nonlinear Systems Period-Doubling Bifurcations, The Route to Chaos, Sensitivity to Initial Conditions, The Definition of Chaos, Periodic Windows
    2
  • Systems of Equations and Matrix Inversion -- Exact Methods, Iterative Methods, The Jacobi Method, The Gauss-Seidel Method
    2
  • Reaction rate
    2
  • Fissionable materials
    2
  • Control rod worth
    2
  • The non-leakage factor
    2
  • Complements: The r's and $(r-1)^{,}$ s complements
    2
  • Design of synchronous counter
    2
  • Hamming code
    2
  • Nuclear reactions
    2
  • Classification of fissile
    2
  • One-group critical equation
    2
  • Solution of one-group reactor equation: For a spherical reactor
    2
  • general properties and band structures, impurities, intrinsic and doped semiconductors, concept of hole charge carriers and effective mass, Electron statistics
    2
  • Excited state of the deuteron
    2
  • Decay probabilities
    2
  • Rotation and Angular Momentum
    2
  • Schrödinger's relativistic equation Klein-Gordan Equation
    2
  • Average energy loss per collision and average cosine of scattering angle
    2
  • luminescence and excitons, p-n junctions
    2
  • The geothermal flux
    2
  • Plasma approximation
    2
  • Mass and energy
    2
  • Luminescence
    2
  • Six factor formula
    2
  • Nomenclature of Body Waves in Earth's Interior
    2
  • Source of the Internal Field: The Geodynamo
    2
  • Space as a Continuum
    2
  • Hydrogen Atom and Helium Atom
    2
  • Meaning of neutron diffusion
    2
  • Critical size and geometrical buckling
    2
  • One-group reactor equation
    2
  • The 8421 code
    2
  • Maximum to average fluxes and power
    2
  • Early universe
    2
  • The sun's outer layers
    2
  • Band Structure Calculations: Revision of the tight binding model
    2
  • The Main Field
    2
  • Virtual functions and polymorphisms
    2
  • Distinction among metals, insulators and semiconductors
    2
  • Fast neutron diffusion and Fermi age equation
    2
  • Astronomical coordinates
    2
  • Neutron moderation by elastic scattering
    2
  • The Magnetic Field of the Earth
    2
  • Postulates of special theory of relativity
    2
  • Galilean transformations
    2
  • Symmetrical top
    2
  • Lagrange and Poisson's brackets
    2
  • Types of PROMS and EPROMS
    2
  • Magnetic Core and bubble memory Cache memory
    2
  • Photolithographic process
    2
  • Exchange of virtual particles
    2
  • Liquid drop model
    2
  • Linear harmonic oscillator
    2
  • Time-dependent Perturbation Theory: Principle of the Method
    2
  • Legendre transformation & Hamilton's equations of motion
    2
  • Differential equation of orbit
    2
  • Solar energy
    2
  • Transport Phenomenon in Ideal Gases: (1) Viscosity.
    2
  • Vander Waal forces
    2
  • ionic bonds
    2
  • Co-efficient of fineness, fringe half-width
    2
  • Pointer
    2
  • Voltage divider biasing method
    2
  • Extrinsic semiconductors
    2
  • Wiedemann-Franz law.
    2
  • Synthesis Involving Diazonium Salts
    2
  • Sideband frequencies in AM wave
    2
  • Diffraction at a straight edge
    2
  • Solution of heat flow equation.
    2
  • Constructor and destructors
    2
  • Effect of temperature on semiconductors
    2
  • Classification of LASERS
    2
  • Hermite polynomials
    2
  • Matrix Representation
    2
  • Conduction, Convection, Wiedemann-Franz law.
    2
  • Concept of Temperature.
    2
  • blackbody radiation
    2
  • Spectral emissive and absorptive powers, Kirchoff's law, blackbody radiation
    2
  • coordinate covalent bond
    2
  • Programming Paradigms and Languages
    2
  • Superposition of waves
    2
  • Orthogonal functions
    2
  • Fermi-Dirac gas
    2
  • Quantum liquids with Fermi-type spectrum
    2
  • Electrical Conductivity, Brownian motion
    2
  • Fermi Velocity and Mean Velocity of a free electron in a Metal
    2
  • Forced vibration
    2
  • Poynting vector, Energy in electromagnetic fields
    2
  • Retarded potentials, Lienard-Wiechert potentials
    2
  • Hamiltonian operator
    2
  • Metal crystals and hydrogen bonded crystals
    2
  • Measurements of nuclear mass and charge radii: electron scattering, muonic atoms
    2
  • Neutron sources
    2
  • Stability analysis of numerical schemes
    2
  • Monte-Carlo Integration
    2
  • Resonance scattering
    2
  • Brillouin Zones
    2
  • Crystals of inert gases
    2
  • Alpha decay properties
    2
  • The Photon Gas
    2
  • Radiation from an oscillating dipole
    2
  • Covalent crystals
    2
  • Enumeration of normal modes
    2
  • Field of a moving point charge
    2
  • Drude phenomenology of electronic properties, Fermi gas
    2
  • Preparation of standard solution
    1
  • Measurement of error
    1
  • Multiple correlation and multiple regression
    1
  • Three Electric vectors
    1
  • Transient currents
    1
  • Langmuir Adsorption Isotherm
    1
  • Reversible and irreversible cell
    1
  • Application of Vant Hoffs law for measuring molecular weight of monomers and polymers
    1
  • Stratified random sampling and systematic sampling
    1
  • Stokes' theorem and Green's theorem
    1
  • Potentiometer, ammeter, voltmeter and galvanometer
    1
  • Coefficient of dispersion
    1
  • Peltier effect
    1
  • Hooke's law
    1
  • Variation of viscosity with temperature
    1
  • Transformer
    1
  • Percentiles
    1
  • Volume elements
    1
  • Factors affecting surface tension
    1
  • Solutions by the method of variable separation
    1
  • Electromotive force and potential difference
    1
  • Pressure gauges: Force against a dam
    1
  • Median
    1
  • One dimensional forces depending on position only
    1
  • Rotational quantities as vectors
    1
  • The simple AC generator
    1
  • Determination of the elastic constants
    1
  • Waves in a canal
    1
  • Change of pressure with elevation
    1
  • Energy units
    1
  • Standard Deviation
    1
  • Range
    1
  • Nature of statistical data
    1
  • Calculation of field strength from potential
    1
  • Magnetic effects of currents
    1
  • Dissociative and associative reactions
    1
  • Minimizing error, examples related to physics problems
    1
  • Magnetizing force
    1
  • Plane stress
    1
  • Harmonic motion
    1
  • concept of hole charge carriers and effective mass, dynamics in presence of magnetic field
    1
  • Helium atom
    1
  • Exchange symmetry.
    1
  • Sheet resistance
    1
  • Complements: The r's and (r-1)'s complements
    1
  • Quark model with three flavours
    1
  • A/D accuracy and resolution
    1
  • Introduction (Neutron Chain Reaction)
    1
  • Doubling time
    1
  • Curie Law
    1
  • Tabulation method: Determination and selection of Prime-Implicants.
    1
  • Linear Variation Function
    1
  • Wien bridge oscillators
    1
  • Yields and mass distribution of fission products
    1
  • Use of various magnetic materials
    1
  • Edge-triggered JK flip-flop
    1
  • Demultiplexers
    1
  • Nuclear force
    1
  • Partial wave analysis
    1
  • Fission cross section
    1
  • Digital Logic gates: OR Gate
    1
  • Other 4-bit BCD codes
    1
  • Deformation
    1
  • Eigenvalues and Eigen functions of total angular momentum operators
    1
  • Neutron flux
    1
  • Thermal utilization factor
    1
  • Encoders
    1
  • Single particle potentials
    1
  • Planetary Formation
    1
  • Solutions near a Turning Point
    1
  • Application to Scattering by Square Well Hard Sphere and Coulomb Potential
    1
  • Fusion reactor
    1
  • two-group critical equations
    1
  • Cosmic rays
    1
  • Clusters of galaxies
    1
  • BCD adder
    1
  • Surface Waves
    1
  • Proton precession magnetometer
    1
  • Clebsch-Gordon Coefficients
    1
  • Class templates
    1
  • luminescence and excitons
    1
  • Geothermal Gradient
    1
  • Energy source for the geomagnetic dynamo
    1
  • Sources of neutrons
    1
  • Moderating ratio
    1
  • Effects of temperature on reactor kinetics
    1
  • General feature of reactor control
    1
  • The mechanism of fission
    1
  • Reflector savings
    1
  • Cache memory
    1
  • Compositions of terrestrial planets
    1
  • Scattering angles in L and C.M systems
    1
  • Maxwellian distribution of gas, atoms or nuclei
    1
  • Introduction to the Standard Model and Ideas of Unification
    1
  • The Poisson and Laplace Equations
    1
  • Measurement of the magnetic field
    1
  • Dirac equations
    1
  • Application of Hamilton's equations
    1
  • Relativity of mass and momentum
    1
  • direct and indirect fundamental bandgap, valence and conduction bands
    1
  • Diffusion
    1
  • Binary multiplier
    1
  • Neutron-proton scattering at intermediate and high energies
    1
  • Isospin
    1
  • Concepts of matrix, tensors and dyadic
    1
  • The Lagrangian
    1
  • SQUID
    1
  • impurities
    1
  • The tight binding approximation
    1
  • Encapsulation
    1
  • Epitaxial growth
    1
  • High-Tₑ superconductors
    1
  • Code conversion
    1
  • Nuclear reactors and their classifications
    1
  • Particle- antiparticle
    1
  • Connection Formulae
    1
  • Phenomenological Optical Model Cross-sections by the Method of Partial Waves
    1
  • Ground state spins
    1
  • Vibrational and rotational motion
    1
  • Potentials
    1
  • Saturation induction magnetometer
    1
  • Expectation Value of the Energy
    1
  • S-matrics
    1
  • Classification of reactors according to the mean energy of neutrons causing fissions
    1
  • Application to Hydrogen Atom and Helium Atom
    1
  • Cooling due to Adiabatic Demagnetization.
    1
  • Fermions and Bosons
    1
  • Gauss-Seidel Method
    1
  • Gauss-Jordon Method
    1
  • Methods of transistor biasing: base resistor method, biasing with feedback resistor, voltage divider biasing method
    1
  • Kepler's law and classification of orbits
    1
  • Velocity dependent potentials and dissipation function
    1
  • Synthesis Involving Malonic Ester
    1
  • Synthesis Involving Grignard Reagent
    1
  • Lloyd's mirror
    1
  • Interpretation of Parseval's formula
    1
  • Fraunhofer diffraction single and double slits
    1
  • Fourier transforms in two dimensions
    1
  • Lens as a Fourier transformer
    1
  • Convolution and convolution theorem
    1
  • Spline Interpolation
    1
  • Applications of Maxwell's Relations: (3) Tds Equations.
    1
  • First and second order Phase Transitions.
    1
  • P-type semiconductors
    1
  • Metallic bond
    1
  • Solution of wave equations.
    1
  • Trapezoidal Method
    1
  • First Law and Various Processes
    1
  • Stoke's treatment
    1
  • Flowchart, Pseudopodia, Program Control Structure
    1
  • Telescope
    1
  • Addition: subtraction: multiplication of tensors
    1
  • Applications of Maxwell's Relations: (4) Joule-Kelvin Coefficient for Ideal and Van der Waal Gases.
    1
  • Analysis of amplitude modulated wave
    1
  • Selection Rules
    1
  • Pi-section filter
    1
  • Conduction
    1
  • Hartley oscillator
    1
  • Amplitude modulation
    1
  • Demodulation: Essentials in demodulation
    1
  • Rate of Convergence
    1
  • The H2 molecular ion
    1
  • Oxides and oxiacids.
    1
  • Cornu's spiral
    1
  • Complex functions
    1
  • Hypergeometric functions
    1
  • Extensive and Intensive Thermodynamic Variables.
    1
  • Applications of Maxwell's Relations: (2) Values of Cₚ-Cᵥ.
    1
  • Crystal oscillator
    1
  • Conduction, Convection
    1
  • Types of LASERS (Ruby, Nd-YAG, He-Ne, $CO_{2}$, Argon-ion, Dye, Semiconductor)
    1
  • de Broglie's hypothesis, Davission-Germer experiment
    1
  • length contraction and time dilation
    1
  • Rotational and vibrational energy levels, Electronic spectra of molecules
    1
  • Maxwell's modification of Ampere's law, Maxwell's equations
    1
  • concept of hole charge carriers and effective mass
    1
  • Experimental diffraction methods-Laue method: Rotating crystal method and power methods
    1
  • H-theorem, validity of the equation
    1
  • Magnetic dipole moment and electric moments, Nuclear deformation
    1
  • Fission and fusion reactions, Fission energy and thermonuclear energy
    1
  • Neutrino hypothesis, Measurement of disintegration energies
    1
  • The Diffusion Equation 1-D Problem With Dirichlet, Neumann, Mixed Boundary Conditions, Explicit schemes, finite differences.
    1
  • The 1-D Wave Equation, The 2-D Resonant Cavity
    1
  • Nuclear stability
    1
  • Semiconductor detectors: silicon, germanium, HPGe detector
    1
  • Statistical Distribution Function
    1
  • Heat conductivity
    1
  • Solid state counter
    1
  • Phonon
    1
  • Diffraction of X-rays by crystals
    1
  • Thermal expansion
    1
  • Degenerate Fermi systems
    1
  • Electrical and thermal conductivity: scattering of electrons from crystal defects and phonons, Pauli paramagnetism, Sommerfeild theory of conduction in metals
    1
  • Metallic reflection
    1
  • Assemblies
    1
  • The hydrogen molecule
    1
  • Flavours and flavour mixing, Quark model with three flavours, Heavy-quark hadrons, CP violation, The origin (s) of mass
    1
  • Phase velocity and group velocities of matter waves, de Broglie's hypothesis
    1
  • Photoelectric effect and its important features, X-rays: Production of continuous and characteristic X-rays
    1
  • Thomson model of atom, Alpha-particle scattering experiment and Rutherford model
    1
  • neutron scattering by a crystal
    1
  • Mirror Nuclei
    1