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JU-PHY - 2nd Year - Question Analysis
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JU-PHY - 2nd Year

Comprehensive question analysis

Total Questions

2480
In this filter

Subjects

11
Covered

Chapters

75
Covered

Most Recent Year

2021
Latest data

Questions by Year (নির্বাচন করতে বারে ক্লিক করুন)

  • 2021
    25
  • 2020
    186
  • 2019
    170
  • 2018
    176
  • 2017
    173
  • 2016
    187
  • 2015
    154
  • 2014
    134
  • 2013
    208
  • 2012
    177
  • 2011
    172
  • 2010
    139
  • 2009
    147
  • 2008
    145
  • 2007
    156
  • 2006
    18
  • 2005
    90
  • 2004
    22

Questions by Subject (নির্বাচন করতে বারে ক্লিক করুন)

  • Mathematical Physics
    420
  • Thermal Physics
    401
  • Chemistry-II
    330
  • Basic Electronics
    322
  • Classical Mechanics
    311
  • Optics
    308
  • Computer Programming and Numerical Methods
    265
  • Atomic and Molecular Physics
    85
  • Chemistry-I
    25
  • Quantum Mechanics-I
    12
  • ext{and}
    1

Questions by Chapter (নির্বাচন করতে বারে ক্লিক করুন)

  • Special Functions
    150
  • Programing Concepts
    129
  • Theory of Complex Variables
    105
  • The Chemical Bonds
    95
  • Particle Properties of Waves
    92
  • Transport Phenomena in Gases & Real Gases
    89
  • Chemistry of Elements
    89
  • Molecular Geometry and Covalent Bond
    82
  • Transistor Devices and Circuits
    78
  • Atomic Structure
    78
  • Zeroth and First Law of Thermodynamics
    76
  • Polarization
    74
  • Programming with C++
    73
  • Oxidation Reduction Reactions
    69
  • Radiation
    67
  • Semiconductor diode, Rectifier and Filter Circuits
    63
  • Theory of Matrices
    63
  • Diffraction (Fraunhofer Class)
    59
  • Quantum Concepts and Detailed Atomic Structure
    58
  • LASER
    56
  • Heat and Transfer of Heat
    54
  • Interference (Division of amplitude)
    47
  • Wave Properties of Particles
    46
  • Second Law of Thermodynamics
    45
  • Tensor Analysis
    44
  • Entropy & Third Law of Thermodynamics
    42
  • Feedback and Oscillators
    42
  • Interference (Division of wavefront)
    42
  • Partial Differential Equations
    41
  • Modulation, Demodulation and Radio Receivers
    40
  • Molecular Physics
    31
  • Transcendental Equations
    29
  • Power Electronics
    26
  • Transistor Amplifier
    26
  • Basic Operational Amplifier
    26
  • Diffraction (Fresnel Class)
    25
  • Kinematics and Particle Dynamics
    25
  • Interpolation and Curve Fitting
    18
  • Maxwell's Thermodynamic Relations
    16
  • Numerical Differentiation and Integration
    15
  • Hydrogen atom
    12
  • System of Linear Equations
    12
  • Thermodynamic Potentials
    11
  • Elements of Biochemistry
    9
  • Formulation
    8
  • A Brief Introduction to Organic Chemistry
    8
  • Ordinary Differential Equations
    8
  • Special Theory of Relativity
    7
  • Review of Elementary Principles
    7
  • Variational Principle and Lagrange's Equations
    5
  • Fourier Optics
    5
  • Circuit Analysis & Network Theorems
    5
  • Work, Energy and Power
    5
  • Physical Basis
    4
  • Problems in One-dimension
    4
  • Synthesis
    4
  • Integral Calculus
    4
  • Conservation of Linear Momentum
    4
  • Schrödinger's Equation
    3
  • Integrated Circuit Technology
    3
  • Central Force
    3
  • The Rigid Body Motion
    3
  • Analytic Geometry of Two and Three Dimensions
    3
  • Heat and Transfer of Heat
    3
  • Hamilton's Equations of Motion
    2
  • Relativistic Mechanics
    2
  • Introduction of Elementary Calculus
    2
  • Identical Particles
    1
  • CHA 78d00ba8
    1
  • Canonical Transformations
    1
  • Review of Numerical Methods and the Solution of Ordinary Differential Equations
    1
  • Approximate Methods: I) Perturbation Method
    1
  • Excitons, Photoconductivity, Luminescence and Defects in Solids
    1
  • Harmonic Oscillator
    1
  • Complex Numbers and Their Properties
    1

Questions by Topic (নির্বাচন করতে বারে ক্লিক করুন)

  • Program Control Structure, Programming Paradigms and Languages, Types of computer languages
    58
  • Oxidation number
    40
  • Gamma and beta functions
    40
  • Atomic spectra-the Bohr atom, Energy levels and spectra
    33
  • Photoelectric effect and its important features
    32
  • 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
  • Hybrid orbitals
    28
  • Fourier series and integrals
    27
  • Hydrogen bond
    26
  • Residue theorem and evaluation of residues
    26
  • Group V Elements: General remarks; Occurrence, Preparation and properties; Allotropic forms; Binary compounds; Oxides and oxiacids.
    25
  • Equations of motion
    25
  • Stefan-Boltzmann law; Wien's displacement law.
    24
  • the modern concept of acids and bases according to Arrhenius, Browsted-Lowry, and Lewis
    22
  • First and Second Order Iteration Methods
    22
  • Representation of Numbers: Fixed and floating point numbers, Overflow and underflow, Machine precision
    22
  • Fourier and Laplace's transform
    21
  • First Law and Various Processes.
    20
  • Rotational and vibrational energy levels
    20
  • Diffraction by Plane diffraction grating, formation of spectra
    20
  • Maxwell-Boltzmann Statistics and its Applications
    20
  • Change in Entropy.
    19
  • Harmonic functions
    19
  • Legendre
    19
  • Basic data types
    19
  • Brownian Motion and its Significance.
    19
  • Newton's law of cooling
    18
  • X-rays: Production of continuous and characteristic X-rays
    18
  • Alpha-particle scattering experiment and Rutherford model
    18
  • Contra variant and covariant tensors
    18
  • Power series solutions
    18
  • Group III Elements: General remarks: Occurrence; isolation and properties; Chemistry of boron.
    18
  • Field effect transistors: Construction and characteristics of JFET
    17
  • Compton effect
    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
  • 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
  • de Broglie's hypothesis
    15
  • Normal Zeeman effect
    15
  • Solution of Laplace's equation in spherical polar and cylindrical coordinates: and their applications.
    15
  • Negative feedback: Voltage feedback, current feedback
    14
  • Transistor load line analysis
    14
  • Zone plates
    14
  • Properties of PN junction
    13
  • Phase velocity and group velocities of matter waves
    13
  • Dispersive and resolving power of grating
    13
  • Cauchy's integral theorem
    13
  • 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
  • Uncertainty principle and its applications
    12
  • Functions
    12
  • Full-wave rectifier
    11
  • Chemistry of boron.
    11
  • Polarimeter
    11
  • Lorentz theorem
    11
  • Definition
    11
  • Laguerre and Hermite polynomials
    11
  • Loops, array and string
    11
  • Thermal conductivity and thermal diffusivity
    11
  • Applications of First Law: General Relation between Cₚ and Cᵥ.
    11
  • Work Done during Isothermal and Adiabatic Processes.
    11
  • Newton's ring
    11
  • Van-der Waal's Equation of State for Real Gases.
    10
  • UJT: Construction, V-I characteristics and applications
    10
  • Pauli exclusion principle and the periodic table
    10
  • Analytic function
    10
  • Theory of interference
    10
  • Thermodynamic Potentials U, H, F and G: Their Definitions, Properties and Applications.
    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
  • Inverting and non-inverting Op-amp
    9
  • Methods of obtaining polarized light
    9
  • Entropy Changes in Reversible and Irreversible Processes.
    8
  • Electron Spin, Fine structure and anomalous Zeeman effect
    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
  • Atomic excitation-Frank-Hertz experiment
    8
  • 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
  • Class
    7
  • Thermodynamical Equilibrium.
    7
  • Pair production and pair annihilation
    7
  • Transistors connections
    7
  • Planck's radiation law; Solar constant.
    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
  • Introduction of Linear, non-linear and homogeneous differential equations
    7
  • Cauchy's integral formulas
    7
  • Atomic spectra-the Bohr atom
    7
  • Heat capacities
    6
  • Ripple Factor Capacitor filter
    6
  • Four quantum numbers
    6
  • Raman effect
    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
  • Davission-Germer experiment
    6
  • Construction and characteristics of depletion and enhancement type MOSFET
    6
  • Single stage and multi-stage transistor amplifiers
    6
  • Schrödinger's equation for the hydrogen atom in spherical coordinates
    6
  • Strength of acids and bases, measurements of pH of a buffer solution
    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
  • Positive feedback
    6
  • Resonance
    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
  • Vector atom model -s and $j-j$ coupling
    6
  • Transition of Rare-earth Elements.
    6
  • Ionic bonds, covalent bond and coordinate covalent bond
    6
  • 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
  • X-ray diffraction
    5
  • Black holes
    5
  • Electronegativity
    5
  • Fabry-Perot interferometer
    5
  • Choice and decisions
    5
  • Newton's Forward and Backward Difference Interpolation Formula
    5
  • Transistors: Naming the transistor terminals
    5
  • R-C coupled and transformer coupled transistor amplifiers
    5
  • State function and state function space
    5
  • Orbital representation of aliphatic and aromatic hydrocarbons
    5
  • Lorentz transformations
    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
  • Thevenin's theorem
    5
  • Kinetic and potential energies
    5
  • 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
  • Energy levels and spectra
    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
  • Modulation: Amplitude modulation, frequency modulation, modulation factor
    4
  • Potential well
    4
  • Kronecker delta
    4
  • Simpson's Method
    4
  • Voltage stabilization
    4
  • Hamilton's principle
    4
  • Valence shells
    4
  • Cell sand tissue; structure and function
    4
  • Optical feedback
    4
  • Inheritance
    4
  • Iterative Methods Jacobi Method
    4
  • Energy Band Description of semiconductors
    4
  • Vector atom model -s and j-j coupling
    4
  • Rayleigh's criterion for resolution
    4
  • Solution of the angular and radial part of the Schrödinger's equation of the hydrogen atom
    4
  • Caley-Hamilton theorem
    4
  • Joule-Thomson Effect for Real and Van der Waal Gases. Temperature of Inversion.
    4
  • Nuclear motion and reduced mass
    4
  • Applications of LASERS
    4
  • Input and output operations
    4
  • Indefinite integrals and different techniques of integration
    4
  • Deviations from the Ideal Gas Equation. The Virial Equation.
    4
  • Collision phenomena
    4
  • Heat flow through a compound wall
    3
  • Heisenberg uncertainty principle
    3
  • Time-dependent and time-independent Schrödinger's equations
    3
  • Spectrometer
    3
  • Principles of object oriented programming
    3
  • Wien's displacement law.
    3
  • Electromagnetic radiation
    3
  • Stern-Gerlach experiment
    3
  • Zener diode
    3
  • Integrated Circuit
    3
  • Operator overloading
    3
  • Integrator
    3
  • Mechanics of a system of particles
    3
  • Metabolism of protein and carbohydrate
    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
  • Introduction to Numerical Computing
    3
  • Estimates of Mean Free Path.
    3
  • Intensity distribution curve
    3
  • Microscope
    3
  • Photons and gravity
    3
  • Phase shift oscillator
    3
  • Differentiation of complex functions
    3
  • Work and Heat Energy.
    3
  • Hund's rules.
    3
  • Euler's theorem
    3
  • General equations of second degree for two and three dimensions and reductions to standard form
    3
  • Electronic spectra of molecules
    3
  • Transport Phenomenon in Ideal Gases: (1) Viscosity.
    2
  • Thomson model of atom
    2
  • Vander Waal forces
    2
  • ionic bonds
    2
  • Co-efficient of fineness, fringe half-width
    2
  • Pointer
    2
  • Planck's radiation law
    2
  • Nuclear dimensions, Electron orbit
    2
  • Voltage divider biasing method
    2
  • Extrinsic semiconductors
    2
  • Wiedemann-Franz law.
    2
  • D'Alembert's principle & Lagrange's equations
    2
  • Momentum-energy four-vector
    2
  • Synthesis Involving Diazonium Salts
    2
  • Alkanes, amides, amino acids, proteins and carbohydrates
    2
  • Compilers, Interpreters
    2
  • Gauss Elimination Methods
    2
  • Particles and waves in nature
    2
  • Sideband frequencies in AM wave
    2
  • Diffraction at a straight edge
    2
  • Solution of heat flow equation.
    2
  • Constructor and destructors
    2
  • Matrix Inversion
    2
  • Concept of motion and frames of reference
    2
  • Effect of temperature on semiconductors
    2
  • Classification of LASERS
    2
  • Hermite polynomials
    2
  • Matrix Representation
    2
  • Derivatives of elementary functions
    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
  • Cooling due to Adiabatic Demagnetization.
    1
  • Angular momentum
    1
  • Fermions and Bosons
    1
  • Eigenvalue equations
    1
  • Many-electron atoms and atomic spectra
    1
  • Operators and commutation of operators
    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
  • Postulates of special theory of relativity
    1
  • Length contraction and time dilation
    1
  • Legendre transformation & Hamilton's equations of motion
    1
  • The Hamiltonian
    1
  • Derivation of Lagrange's equations from Hamilton's principle
    1
  • Equations of Canonical transformations
    1
  • Two-body central force problem
    1
  • Differential equation of orbit
    1
  • Kepler's law and classification of orbits
    1
  • Generalized co-ordinates
    1
  • Velocity dependent potentials and dissipation function
    1
  • Synthesis Involving Malonic Ester
    1
  • Synthesis Involving Grignard Reagent
    1
  • Nomenclature, structural formula and important properties of simple organic compounds belonging to the following classes
    1
  • lon and pH balance of the body fluid
    1
  • Blood constituents
    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
  • State Functions.
    1
  • P-type semiconductors
    1
  • Metallic bond
    1
  • Solution of wave equations.
    1
  • Virtual functions and polymorphisms
    1
  • Trapezoidal Method
    1
  • First Law and Various Processes
    1
  • Errors in Numerical Methods, Numerical Instabilities
    1
  • Stoke's treatment
    1
  • Flowchart, Pseudopodia, Program Control Structure
    1
  • Telescope
    1
  • Addition: subtraction: multiplication of tensors
    1
  • Solution by Taylor Series
    1
  • Applications of Maxwell's Relations: (4) Joule-Kelvin Coefficient for Ideal and Van der Waal Gases.
    1
  • Analysis of amplitude modulated wave
    1
  • Molecular bonds
    1
  • Selection Rules
    1
  • Luminescence
    1
  • Pi-section filter
    1
  • Measurements in quantum mechanics: Expectation values
    1
  • Eigenenergies and eigenfunctions of harmonic oscillator
    1
  • Conduction
    1
  • Hartley oscillator
    1
  • Amplitude modulation
    1
  • Demodulation: Essentials in demodulation
    1
  • Rate of Convergence
    1
  • Complex numbers
    1
  • Failures of classical mechanics and emergence of quantum mechanics
    1
  • The H2 molecular ion
    1
  • Oxides and oxiacids.
    1
  • Angular momentum operators in spherical polar coordinates
    1
  • Fine structure and anomalous Zeeman effect
    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
  • Newton's laws of motion
    1
  • Rotational dynamics of a rigid body
    1
  • Frankline and Lux-flood Concepts
    1
  • Electron Spin
    1
  • Conduction, Convection
    1
  • Types of LASERS (Ruby, Nd-YAG, He-Ne, $CO_{2}$, Argon-ion, Dye, Semiconductor)
    1

Questions by Set (নির্বাচন করতে বারে ক্লিক করুন)

  • Final
    2480