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Course Structure
The Curriculum Section of this Course covers the following Content :
Attachments 1: Calculus of Single and Multiple Variables
Attachments 2: Multiple Integral
Attachments 3: Partial Derivative
Attachments 4: Jacobian
Attachments 5: Imperfect and Perfect Differentials
Attachments 6: Vectors
Attachments 7: Fourier Series
Attachments 8: Taylors Theorem
Attachments 1: Divergence
Attachments 2: Stoke’s Theorem
Attachments 3: Green’s Theorem
Attachments 4: Linear Differential Equations with Constant Coefficients
Attachments 5: Matrix
Attachments 6: Determinants
Attachments 7: Algebra of Complex Number
Attachments 1: Introduction
Attachments 2: Newton’s Laws of Motion
Attachments 3: Frame of Reference
Attachments 4: Uniform Circular Motion
Attachments 5: Motion of Bodies in Contact
Attachments 6: Friction and Frictional Force
Attachments 7: Computation of Velocity and Acceleration
Attachments 8: Spherical Polar Coordinates
Attachments 9: Circular Cylindrical or Cylindrical Polar Coordinates
Attachments 10: Fictitious or Pseudo Force
Attachments 11: Centrifugal Force
Attachments 12: Uniformly Rotating Frames
Attachments 13: Free Fall of a body on Earth’s Surface
Attachments 14: Foucault’s Pendulum the Period of Precession
Attachments 15: Motion in a central Force Field
Attachments 16: General Features of The Motion
Attachments 17: Motion in Arbitrary Potential Field
Attachments 18: Motion in an inverse-Square law Force Field
Attachments 19: The Kepler Problem : Inverse Square Law
Attachments 20: Escape Velocity
Attachments 21: Conservative and Non-Conservative Forces
Attachments 1: System of Particle
Attachments 2: Centre of Mass
Attachments 3: Motion of Centre of Mass
Attachments 4: Conservation of Linear Momentum
Attachments 5: Centre of Mass-Frame of Reference
Attachments 6: Conservation of Angular Momentum
Attachments 7: Law of Conservation of Linear Momentum
Attachments 8: Law of Conservation of Angular Momentum
Attachments 9: Conservation of Energy
Attachments 10: Conservative Force and Potential Energy
Attachments 11: Motion of a system with Variable Mass
Attachments 12: Collisions
Attachments 13: Types of Collision
Attachments 14: Rigid Body
Attachments 15: Some Physical Quantity in Rotational Motion
Attachments 16: Analog Between Translatory Motion and Rotatory Motion
Attachments 17: Parallel and Perpendicular Axes Theorem
Attachments 18: Moment of Inertia of Some Uniform Bodies
Attachments 19: Angular Momentum and Inertia Tensor
Attachments 20: Principal Axis-Principal Moments of Inertia
Attachments 21: Fluid and Ideal Fluid
Attachments 22: Non-viscous Fluid and Incompressible Fluid
Attachments 23: Streamline and Its properties
Attachments 24: Stream Line Tube
Attachments 25: Streamline flow and Turbulent flow
Attachments 26: Viscous Force, Viscosity and Coefficient of Viscosity
Attachments 27: Velocity of efflux and Torricellie Theorem
Attachments 28: Stoke’s Law
Attachments 29: Pascal’s law
Attachments 30: Floatation
Attachments 31: Archimede’s Principle
Attachments 32: Equation of Continuity
Attachments 33: Euler’s equation
Attachments 34: Bernoulli’s Theorem
Attachments 1: Simple Harmonic Oscillator
Attachments 2: Superposition of One, Two or More Simple Harmonic Oscillators
Attachments 3: Lissajous Figures
Attachments 4: Free, Damped, Forced and Maintained Oscillations
Attachments 5: Resonance
Attachments 6: Waves
Attachments 7: Other Factors-Group Velocity and Phase Velocity
Attachments 8: Sound and Sound Waves
Attachments 9: Doppler Effect
Attachments 1: Fermet Principal
Attachments 2: Mirror and Types or Mirror
Attachments 3: Lens
Attachments 4: Principle of Superposition of Light Waves
Attachments 5: Interference of Light
Attachments 6: Young’s Doubles Slit Experiment
Attachments 7: Fresnel’s Bi-Prism Experiment
Attachments 8: Retardation
Attachments 9: Diffraction
Attachments 10: Rayleigh Criterion & Resolving Power
Attachments 11: Diffraction Grating
Attachments 12: Polarization of Light
Attachments 13: Polarisation by Reflection
Attachments 14: Double Refraction
Attachments 15: Polarodis
Attachments 16: Optical Rotation
Attachments 1: Electricity
Attachments 2: Coulomb’s Law
Attachments 3: Electric Field
Attachments 4: Electric Potential
Attachments 5: Boundary Conditions
Attachments 6: Laplace’s Equation
Attachments 7: Conductors
Attachments 8: Capacitor and Capacitance
Attachments 9: Dielectrics
Attachments 10: Polarization
Attachments 11: Electrostatic energy
Attachments 1: Biot-Savart Law
Attachments 2: Electro Magnetic Induction
Attachments 3: Self Inductance
Attachments 4: Mutual Inductance
Attachments 5: Transformer
Attachments 6: Electric Current
Attachments 7: Alternating Current
Attachments 8: Plane electromagnetic waves
Attachments 1: Electromagnetic Energy, Poynting Theorem
Attachments 2: Reflection and Refraction of E.M. Wave
Attachments 3: Reflection Coefficient and Transmission Coefficient
Attachments 4: Motion of Charge Particles in E.M. Field
Attachments 5: Kinetic Theory of Gases
Attachments 6: Specific Heat & Vandar Waal Gas
Attachments 1: Laws of thermodynamics Zeroth law, First Law and Its Consequence
Attachments 2: Isothermal and Adiabatic Processes, Reversible, Irreversible Processes
Attachments 3: Maxwell’s Thermodynamic Relations Thermodynamic Potentials
Attachments 4: Phase Transitions and Clausius-Clapyron Equation
Attachments 5: Charge Carriers in Semiconductors
Attachments 6: Intrinsic and Extrinsic Materials
Attachments 7: Law of Mass Action
Attachments 8: Impurity Compensation
Attachments 9: The Fermi-Dirac Distribution Function and Fermi Level
Attachments 10: Maxwell - Boltzmann distribution
Attachments 11: The Bose - Einstein distribution
Attachments 1: Special theory of Relativity
Attachments 2: Structure of Atomic Nucleus, Binding Energy
Attachments 3: Radioactivity and its Applications
Attachments 1: Black Body Radiation
Attachments 2: Photo Electric Effect
Attachments 3: Compton Effect
Attachments 4: Bohr atomic Model, X-rays & wave-Particle Duality
Attachments 5: Schrodinger Equation Reflection and Transmission at a Step Potential
Attachments 6: Pauli Exclusion Principle
Attachments 1: Crystal Structure, Bravais Lattices and Basis Miller Indices
Attachments 2: X-Ray Diffraction, Einstein and Debye Theory of Specific Heat
Attachments 3: Origin of Energy Bands. Concept of Holes and Effective Mass
Attachments 1: P-N Junctions, Transistor Circuits in CB, CE, CC Modes
Attachments 2: Operational Amplifiers
Attachments 1: Binary Addition & Subtraction
Attachments 2: Conversion From One to Another System
Attachments 3: Boolean Identities
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