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1 III Intoduction List of books 1 Maneeta singh II Intoduction List of books 1 I Intoduction List of books III Magnetostatic Magnetic field due to a straight wire, circular coil 3 III Magnetostatics Magnetic field due to Helmholtz coils, solenoid, toroid 2 II Free Oscillation Free Oscillation, differential equation of SHM & its solution 1 II Oscillation of coupled system Normal modes of vibration of mechanical with degree 2 I Dynamics of rigid bodies Equation of motion of rigid body III Magnetostatics Lorentz force, magnetisation 5 III Magnetostatics Magnetic permeability and susceptibility 3 II Free Oscillation Example of mechanical & electrical system 4 II Oscillation of coupled system Normal mode of vibration of electrical system with degree 3 I Dynamics of rigid bodies M.I. and radius of gyration Maneeta / Amit III Magnetostatics Electromagnetic induction, induced electric field 7 III Magnetostatics Faraday's law, mutual induction 5 II Free Oscillation Addition of S.H.M. 1 II Oscillation of coupled system Vibration of string 4 III Dynamics of rigid bodies Theorem of parallel axes 8 III Magnetostatics Integral and differential form of Faraday's law 9 III Magnetostatics Series and parallel combination of induction 6 II Free Oscillation Lissajous figure 2 II Oscillation of coupled system Vibration of rectangular membrane 5 III Dynamics of rigid bodies The perpendicular axes III Magnetostatics Coupled circuits 11 III Magnetostatics Ideal transformer
2 II Free Oscillation Lissajous figures with frequency ratio 1:1 and 2:1 3 II Oscillation of coupled system Forced oscillation of coupled system 6 I Dynamics of rigid bodies M.I. of Ring and disc III Electromagnetic waves Maxwell's equations 13 III Electromagnetic waves E.M. waves in vaccum, E.M. Field energy density 8 II Damped harmonic oscillation Mechanical and electrical system 4 II Wave motion Wave motion 7 I Dynamics of rigid bodies M.I. of Rectangular beam Maneeta / Abhishek III Electromagnetic waves Displacement current, poynting vector 15 III A.C. Bridge Introduction, J-operator 9 II Damped harmonic oscillation Lagorithmic decrement, relaxation time, LCR circuito 5 II Wave motion Parameters of wave motion 8 I Dynamics of rigid bodies Hollow and solid cylinders III A.C. Bridge Anderson's Bridge 17 III A.C. Bridge Schering, Robinson's Bridge 10 II Damped harmonic oscillation Moving coil galvanometer 6 II Wave motion Stationary waves 9 I Dynamics of rigid bodies Spherical shell 18 III A.C. Bridge Wein's bridge 19 III Network analysis T and networks 11 II Forced oscillation Forced oscillation of mechanical system 7 II Wave motion Wave velocity and group velocity 10 I Dynamics of rigid bodies Solid and hollow spheres Maneeta/AMIT EVALUATION 20 III Network Analysis Equivalence of T and network 21 III Network Analysis Thevenin's theorems
3 II Forced oscillation Forced oscillation of electrical system 13 II Ultrasonic Production 11 I Dynamics of rigid bodies M.I. of Fly wheel 22 III Network Analysis Norton's Theorem 23 III Network Analysis Maximum Power Transfer Theorem 14 II Forced oscillation Sharpness of reasonance 8 II Ultrasonic Properties of Ultrasonic wave 12 I Dynamics of rigid bodies Compound pendulum 24 III Network Analysis Low Pass Filters 25 III Network Analysis High Pass Filters 15 II Forced oscillation Quality Factor (Q) 9 II Ultrasonic Uses of Ultrasonic Wave 13 I Elasticity Elastic Constant and their mutual relations Maneeta /Amit III Electrostatics Field due to charge distribution 27 III Electrostatics Electric field due to uniform distribution of line charge 16 II Forced oscillation Electrical Impdance 10 II Ultrasonic Acoustic Grating 14 I Elasticity Theory of Bending of beam III Electrostatics Sheet charge and spherical charge 29 III Electrostatics Gauss's Law and its application 17 II Forced oscillation LCR series resonance 11 II Acousties The Acoustics of Halls 15 I Elasticity Torsion of Cylinder III Electrostatics Multiple expansion, 18 II Forced Oscillation LCR Parellel Resonance
4 d{kk % ch-,l&lh- Hkkx&,d f % l= 2016&2017 o " k ; % H k k Sf r d h (Physics) II Acoustics Reverberation of Time 16 I Properties of liquids Steam line motion, Reynold number 17 I Properties of liquids Poiseuille's Equation III Electrostatics Electrostatic field energy, method of images 19 II Fourier Analysis Fourier Theorem, Evaluation of Fourier coefficient 13 AMIT KUMAR II Acpistics Sabine's Formula 18 I Properties of liquids Surface Tension 19 I Properties of liquids Moleular interpretation of surface tension III Electric field inside matter Dieletrics, Parellel Plate Capacitor, Polarization 20 II Fourier Analysis Analysis of Square wave 20 I Properties of liquids Pressure over curved surfaces 21 I Properties of liquids Capillarity, Jager's Method 22 I Control Forces Inverse square law Potential field due to Pherical shell/ sphere III Electric field inside matter Plarization, Displacement vector D 21 II Fourier Analysis Analysis of Sawtooth wave, Full wave rectifier 23 I Central Forces Gravitational Sat energy, Two body problem and reduced mass I Central Forces Kepler's Law, motion of satellite 25 I Central Forces/ New tenion Geostationay satellite, inertial/non interial forms of Mechanics referance I Newtonian Mechanics non-inertial frames of reference 27 I Newtonian Mechanics Galilean transformation velocity, aeceleration, coriolis force I Special theory of Helativity Michelson-Moreley experiment, addition of velocity 29 I Special theory of relativity Lorentz transformation, length contraition
5 fnukad O;k[;ku izk/;kid dk uke 'kh"kzd I Relativistic Dynamics Relativistic momentum, Variation of mass with velocity I Relativistic Dynamics Mass Energy Equivalance, Relativistic energy.d 14 II Accoustics Question paper solving 15 II Fourier Analysis Question paper solving 16 II Fourier Analysis Question paper Solving 17 II REVISION REVISION 18 Maneeta singh III REVISION REVISION 34 Maneeta singh III REVISION REVISION 35 Maneeta singh III REVISION REVISION 36 Maneeta singh III REVISION REVISION
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