Showing posts with label GATE 2013 SYLLABUS. Show all posts
Showing posts with label GATE 2013 SYLLABUS. Show all posts

Friday, 27 July 2012

GATE ELECTRONICS AND COMMUNICATION NEW SYLLABUS I GATE SYLLABUS I GATE 2013 SYLLABUS I GATE ELECTRONICS LATEST SYLLABUS I GATE 2013 NEW SYLLABUS I GATE 2012 ELECTRONICS AND COMMUNICATION COMPLETE SYLLABUS I DOWNLOAD GATE 2012 SYLLABUS I GATE EC SYLLABUS I DOWNLOAD GATE 2013 EC NEW SYLLABUS I GATE EXAM SYLLABUS I GATR 2012 EXM SYLLABUS I GATE 2013 EXAM EC SYLLABUS I GATE 2013 EXAM SYLLABUS I DOWNLOAD GATE ELECTRONICS AND COMMUNICATION COMPLETE SYLLABUS I DOWNLOAD GATE EC SYLLABUS IN PDF I GATE 2013 SYLLABI I DOWNLOAD GATE 2013 EC SYLLABI I GATE 2013 MATHEMATICS SYLLABUS I GATE 2013 EC ENGINEERING MATHEMATICS SYLLABUS I GATE DIGITAL ELECTRONICS SYLLABUS I GATE EMT NEW SYLLABUS I GATE SIGNAL AND PROCESSING SYLLABUS I

GATE 2013-14 SYLLABUS FOR
   ELECTRONICS & COMMUNICATION- (EC)

ENGINEERING MATHEMATICS
  • Linear Algebra: Matrix Algebra, Systems of linear equations, Eigen values and eigen vectors.
  • Calculus: Mean value theorems, Theorems of integral calculus, Evaluation of definite and improper integrals, Partial Derivatives, Maxima and minima, Multiple integrals, Fourier series. Vector identities, Directional derivatives, Line, Surface and Volume integrals, Stokes, Gauss and Green's theorems.
  • Differential equations: First order equation (linear and nonlinear), Higher order linear differential equations with constant coefficients, Method of variation of parameters, Cauchy's and Euler's equations, Initial and boundary value problems, Partial Differential Equations and variable separable method.
  • Complex variables: Analytic functions, Cauchy's integral theorem and integral formula, Taylor's and Laurent' series, Residue theorem, solution integrals.
  • Probability and Statistics: Sampling theorems, Conditional probability, Mean, median, mode and standard deviation, Random variables, Discrete and continuous distributions, Poisson, Normal and Binomial distribution, Correlation and regression analysis.
  • Numerical Methods: Solutions of non-linear algebraic equations, single and multi-step methods for differential equations.
  • Transform Theory: Fourier transform, Laplace transform, Z-transform.
ELECTRONICS AND COMMUNICATION ENGINEERING
  • Networks: Network graphs: matrices associated with graphs; incidence, fundamental cut set and fundamental circuit matrices. Solution methods: nodal and mesh analysis. Network theorems: superposition, Thevenin and Norton's maximum power transfer, Wye-Delta transformation. Steady state sinusoidal analysis using phasors. Linear constant coefficient differential equations; time domain analysis of simple RLC circuits, Solution of network equations using Laplace transform: frequency domain analysis of RLC circuits. 2-port network parameters: driving point and transfer functions. State equations for networks. 
  • Electronic Devices: Energy bands in silicon, intrinsic and extrinsic silicon. Carrier transport in silicon: diffusion current, drift current, mobility, and resistivity. Generation and recombination of carriers. p-n junction diode, Zener diode, tunnel diode, BJT, JFET, MOS capacitor, MOSFET, LED, p-I-n and avalanche photo diode, Basics of LASERs. Device technology: integrated circuits fabrication process, oxidation, diffusion, ion implantation, photolithography, n-tub, p-tub and twin-tub CMOS process.
  • Analog Circuits: Small Signal Equivalent circuits of diodes, BJTs, MOSFETs and analog CMOS. Simple diode circuits, clipping, clamping, rectifier. Biasing and bias stability of transistor and FET amplifiers. Amplifiers: single-and multi-stage, differential and operational, feedback, and power. Frequency response of amplifiers. Simple op-amp circuits. Filters. Sinusoidal oscillators; criterion for oscillation; single-transistor and op-amp configurations. Function generators and wave-shaping circuits, 555 Timers. Power supplies.
  • Digital circuits: Boolean algebra, minimization of Boolean functions; logic gates; digital IC families (DTL, TTL, ECL, MOS, CMOS). Combinatorial circuits: arithmetic circuits, code converters, multiplexers, decoders, PROMs and PLAs. Sequential circuits: latches and flip-flops, counters and shift-registers. Sample and hold circuits, ADCs, DACs. Semiconductor memories. Microprocessor(8085): architecture, programming, memory and I/O interfacing.
  • Signals and Systems: Definitions and properties of Laplace transform, continuous-time and discrete-time Fourier series, continuous-time and discrete-time Fourier Transform, DFT and FFT, z-transform. Sampling theorem. Linear Time-Invariant (LTI) Systems: definitions and properties; causality, stability, impulse response, convolution, poles and zeros, parallel and cascade structure, frequency response, group delay, phase delay. Signal transmission through LTI systems.
  • Control Systems: Basic control system components; block diagrammatic description, reduction of block diagrams. Open loop and closed loop (feedback) systems and stability analysis of these systems. Signal flow graphs and their use in determining transfer functions of systems; transient and steady state analysis of LTI control systems and frequency response. Tools and techniques for LTI control system analysis: root loci, Routh-Hurwitz criterion, Bode and Nyquist plots. Control system compensators: elements of lead and lag compensation, elements of Proportional-Integral-Derivative (PID) control. State variable representation and solution of state equation of LTI control systems.
  • Communications: Random signals and noise: probability, random variables, probability density function, autocorrelation, power spectral density. Analog communication systems: amplitude and angle modulation and demodulation systems, spectral analysis of these operations, superheterodyne receivers; elements of hardware, realizations of analog communication systems; signal-to-noise ratio (SNR) calculations for amplitude modulation (AM) and frequency modulation (FM) for low noise conditions. Fundamentals of information theory and channel capacity theorem. Digital communication systems: pulse code modulation (PCM), differential pulse code modulation (DPCM), digital modulation schemes: amplitude, phase and frequency shift keying schemes (ASK, PSK, FSK), matched filter receivers, bandwidth consideration and probability of error calculations for these schemes. Basics of TDMA, FDMA and CDMA and GSM.
  • ElectroMagnetics: Elements of vector calculus: divergence and curl; Gauss and Stokes theorems, Maxwell's equations: differential and integral forms. Wave equation, Poynting vector. Plane waves: propagation through various media; reflection and refraction; phase and group velocity; skin depth. Transmission lines: characteristic impedance; impedance transformation; Smith chart; impedance matching; S parameters, pulse excitation. Waveguides: modes in rectangular waveguides; boundary conditions; cut-off frequencies; dispersion relations. Basics of propagation in dielectric waveguide and optical fibers. Basics of Antennas: Dipole antennas; radiation pattern; antenna gain.
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Monday, 5 July 2010

GATE 2012 AEROSPACE ENGINEERING SYLLABUS I GATE 2012 AEROSPACE ENGINEERING SYLLABUS I DOWNLOAD GATE 2012 AEROSPACE ENGINEERING SYLLABUS I GATE 2013 AEROSPACE ENGINEERING SYLLABUS I GATE 2013 SYLLABUS I GATE AEROSPCE ENGINEERING COMPLETE SYLLABUS I GATE 2013 AEROSPACE ENGINEERING SYLLABUS I GATE 2013 AEROSPCE ENGINEERING COMPLETE SYLLABUS I GATE SYLLABUS FOR AEROSPCE ENGINEERING I GATE 2012 SYLLABUS FOR AEROSPCE ENGINEERING I DOWNLOAD GATE 2012 AEROSPACE ENGINEERING SYLLABUS I SYLLABUS FOR GATE 2012 I GATE 2012 SYLLABUS FOR AEROSPCE ENGINEERING I DOWNLOAD GATE 2012 AEROSPCE ENGINEERING SYLLABUS I GATE 2012 COMPLETES YLLABUS FOR AEROSPCE ENGINEERING I GATE 2012 AEROSPCE ENGINEERING LATEST SYLLABUS I DOWNLOAD GATE 2012 AEROSPACE ENGINEERING NEW SYLLABUS

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GATE SYLLABUS FOR AEROSPACE ENGINEERING (AE)

ENGINEERING MATHEMATICS:
Linear Algebra: Matrix algebra, systems of linear equations, eigen values and eigen vectors. Calculus: Functions of single variable, limit, continuity and differentiability, mean value theorems, evaluation of definite and improper integrals, partial derivatives, total derivative, maxima and minima, gradient, divergence and curl, vector identities, directional derivatives, line, surface and volume integrals. Theorems of Stokes, Gauss and Green.
Differential Calculus: First order linear and nonlinear equations, higher order linear ODEs with constant coefficients, Cauchy and Euler equations, initial and boundary value problems, Laplace transforms. Partial differential equations and separation of variables methods.
Numerical methods: Numerical solution of linear and nonlinear algebraic equations, integration by trapezoidal and Simpson rule, single and multi-step methods for differential equations. 

FLIGHT MECHANICS:
Atmosphere: Properties, standard atmosphere. Classification of aircraft. Airplane (fixed wing aircraft) configuration and various parts.
Airplane performance: Pressure altitude; equivalent, calibrated, indicated air speeds; Primary flight instruments: Altimeter, ASI, VSI, Turn-bank indicator. Drag polar; take off and landing; steady climb & descent,-absolute and service ceiling; cruise, cruise climb, endurance or loiter; load factor, turning flight, V-n diagram; Winds: head, tail & cross winds.
Static stability: Angle of attack, sideslip; roll, pitch & yaw controls; longitudinal stick fixed & free stability, horizontal tail position and size; directional stability, vertical tail position and size; dihedral stability. Wing dihedral, sweep & position; hinge moments, stick forces.
Dynamic stability: Euler angles; Equations of motion; aerodynamic forces and moments, stability & control derivatives; decoupling of longitudinal and lat-directional dynamics; longitudinal modes; lateral-directional modes.

SPACE DYNAMICS:
Central force motion, determination of trajectory and orbital period in simple cases. Orbit transfer, in-plane and out-of-plane. Elements of rocket motor performance.  

AERODYNAMICS
Basic Fluid Mechanics: Incompressible irrotational flow, Helmholtz and Kelvin theorem, singularities and superposition, viscous flows,boundary layer on a flat plate.
Airfoils and wings:Classification of airfoils,aerodynamic characteristics,high lift devices,Kutta Joukowski theorem;lift generation;thin airfoil theory;wing theory;induced drag;qualitative treatment of low aspect ratio wings.
Viscous Flows:Flow separation, introduction to turbulence, transition, structure of a turbulent boundary layer.
Compressible Flows:Dynamics & Thermodynamics of I-D flow,is entropic flow,normal shock, oblique shock,Prandtl-Meyer flow,flow in nozzles and diffusers,inviscid flow in a c-d nozzle,flow in diffusers.subsonic & supersonic airfoils,compressibility effects on lift and drag,critical and drag divergence Mach number,wave drag.
Wind Tunnel Testing: Measurement and visualisation techniques.

STRUCTURES:
Stress and Strain: Equations of equilibrium, constitutive law, strain-displacement relationship, compatibility equations, plane stress and strain, Airy's stress function.
Flight Vehicle Structures: Characteristics of aircraft structures and materials, torsion, bending and flexural shear.Flexural shear flow in thin-walled sections. Buckling. Failure theories. Loads on aircraft.
Structural Dynamics: Free and forced vibration of discrete systems. Damping and resonance. Dynamics of continuous systems.

PROPULSIO:
Thermodynamics of Aircraft Gas Turbine engines,thrust and thrust augmentation.Turbo machinery:Axial compressors and turbines,centrifugal pumps & compressors.Aero thermo dynamics of non rotating propulsion components:Intakes,combustor & nozzle.Thermodynamics of ramjets & scram jets.Elements of rocket propulsion.

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