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GATE 2013 Syllabus for COMPUTER SCIENCE AND INFORMATION TECHNOLOGY–CS & IT

Engineering Mathematics
Mathematical Logic: Propositional Logic; First Order Logic.

Probability: Conditional Probability; Mean, Median, Mode and Standard Deviation; Random Variables; Distributions; uniform, normal, exponential, Poisson, Binomial.

Set Theory & Algebra: Sets; Relations; Functions; Groups; Partial Orders; Lattice; Boolean Algebra.

Combinatorics: Permutations; Combinations; Counting; Summation; generating functions; recurrence relations; asymptotics.

Graph Theory: Connectivity; spanning trees; Cut vertices & edges; covering; matching; independent sets; Colouring; Planarity; Isomorphism.

Linear Algebra: Algebra of matrices, determinants, systems of linear equations, Eigen values and Eigen vectors.

Numerical Methods: LU decomposition for systems of linear equations; numerical solutions of non-linear algebraic equations by Secant, Bisection and Newton-Raphson Methods; Numerical integration by trapezoidal and Simpson's rules.

Calculus: Limit, Continuity & differentiability, Mean value Theorems, Theorems of integral calculus, evaluation of definite & improper integrals, Partial derivatives, Total derivatives, maxima & minima.
GENERAL APTITUDE(GA):
Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction.
Computer Science and Information Technology
Digital Logic: Logic functions, Minimization, Design and synthesis of combinational and sequential circuits; Number representation and computer arithmetic (fixed and floating point).

Computer Organization and Architecture: Machine instructions and addressing modes, ALU and data-path, CPU control design, Memory interface, I/O interface (Interrupt and DMA mode), Instruction pipelining, Cache and main memory, Secondary storage.

Programming and Data Structures: Programming in C; Functions, Recursion, Parameter passing, Scope, Binding; Abstract data types, Arrays, Stacks, Queues, Linked Lists, Trees, Binary search trees, Binary heaps.

Algorithms: Analysis, Asymptotic notation, Notions of space and time complexity, Worst and average case analysis; Design: Greedy approach, Dynamic programming, Divide-and-conquer; Tree and graph traversals, Connected components, Spanning trees, Shortest paths; Hashing, Sorting, Searching. Asymptotic analysis (best, worst, average cases) of time and space, upper and lower bounds, Basic concepts of complexity classes P, NP, NP-hard, NP-complete.

Theory of Computation: Regular languages and finite automata, Context free languages and Push-down automata, Recursively enumerable sets and Turing machines, Undecidability.

Compiler Design: Lexical analysis, Parsing, Syntax directed translation, Runtime environments, Intermediate and target code generation, Basics of code optimization.

Operating System: Processes, Threads, Inter-process communication, Concurrency, Synchronization, Deadlock, CPU scheduling, Memory management and virtual memory, File systems, I/O systems, Protection and security.

Databases: ER-model, Relational model (relational algebra, tuple calculus), Database design (integrity constraints, normal forms), Query languages (SQL), File structures (sequential files, indexing, B and B+ trees), Transactions and concurrency control.

Information Systems and Software Engineering:
information gathering, requirement and feasibility analysis, data flow diagrams, process specifications, input/output design, process life cycle, planning and managing the project, design, coding, testing, implementation, maintenance.

Computer Networks: ISO/OSI stack, LAN technologies (Ethernet, Token ring), Flow and error control techniques, Routing algorithms, Congestion control, TCP/UDP and sockets, IP(v4), Application layer protocols (icmp, dns, smtp, pop, ftp, http); Basic concepts of hubs, switches, gateways, and routers. Network security basic concepts of public key and private key cryptography, digital signature, firewalls.

Web technologies: HTML, XML, basic concepts of client-server computing.

GATE 2013 Syllabus for ELECTRONICS AND COMMUNICATION ENGINEERING–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.
GENERAL APTITUDE(GA):
Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction.
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.

GATE 2013 Syllabus for ELECTRICAL ENGINEERING–EE

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.
 
GENERAL APTITUDE(GA):
Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction.
 
Electrical Engineering
Electric Circuits and Fields: Network graph, KCL, KVL, node and mesh analysis, transient response of dc and ac networks; sinusoidal steady-state analysis, resonance, basic filter concepts; ideal current and voltage sources, Thevenin's, Norton's and Superposition and Maximum Power Transfer theorems, two-port networks, three phase circuits; Gauss Theorem, electric field and potential due to point, line, plane and spherical charge distributions; Ampere's and Biot-Savart's laws; inductance; dielectrics; capacitance.

Signals and Systems: Representation of continuous and discrete-time signals; shifting and scaling operations; linear, time-invariant and causal systems; Fourier series representation of continuous periodic signals; sampling theorem; Fourier, Laplace and Z transforms.

Electrical Machines: Single phase transformer - equivalent circuit, phasor diagram, tests, regulation and efficiency; three phase transformers - connections, parallel operation; auto-transformer; energy conversion principles; DC machines - types, windings, generator characteristics, armature reaction and commutation, starting and speed control of motors; three phase induction motors - principles, types, performance characteristics, starting and speed control; single phase induction motors; synchronous machines - performance, regulation and parallel operation of generators, motor starting, characteristics and applications; servo and stepper motors.

Power Systems: Basic power generation concepts; transmission line models and performance; cable performance, insulation; corona and radio interference; distribution systems; per-unit quantities; bus impedance and admittance matrices; load flow; voltage control; power factor correction; economic operation; symmetrical components; fault analysis; principles of over-current, differential and distance protection; solid state relays and digital protection; circuit breakers; system stability concepts, swing curves and equal area criterion; HVDC transmission and FACTS concepts.

Control Systems: Principles of feedback; transfer function; block diagrams; steady-state errors; Routh and Niquist techniques; Bode plots; root loci; lag, lead and lead-lag compensation; state space model; state transition matrix, controllability and observability.

Electrical and Electronic Measurements: Bridges and potentiometers; PMMC, moving iron, dynamometer and induction type instruments; measurement of voltage, current, power, energy and power factor; instrument transformers; digital voltmeters and multimeters; phase, time and frequency measurement; Q-meters; oscilloscopes; potentiometric recorders; error analysis.

Analog and Digital Electronics: Characteristics of diodes, BJT, FET; amplifiers - biasing, equivalent circuit and frequency response; oscillators and feedback amplifiers; operational amplifiers - characteristics and applications; simple active filters; VCOs and timers; combinational and sequential logic circuits; multiplexer; Schmitt trigger; multi-vibrators; sample and hold circuits; A/D and D/A converters; 8-bit microprocessor basics, architecture, programming and interfacing.

Power Electronics and Drives: Semiconductor power diodes, transistors, thyristors, triacs, GTOs, MOSFETs and IGBTs - static characteristics and principles of operation; triggering circuits; phase control rectifiers; bridge converters - fully controlled and half controlled; principles of choppers and inverters; basis concepts of adjustable speed dc and ac drives.

GATE 2013 Syllabus for INSTRUMENTATION ENGINEERING–IN

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.
 
GENERAL APTITUDE(GA):
Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction.
 
Instrumentation Engineering
Basics of Circuits and Measurement Systems: Kirchoff's laws, mesh and nodal Analysis. Circuit theorems. One-port and two-port Network Functions. Static and dynamic characteristics of Measurement Systems. Error and uncertainty analysis. Statistical analysis of data and curve fitting.

Transducers, Mechanical Measurement and Industrial Instrumentation: Resistive, Capacitive, Inductive and piezoelectric transducers and their signal conditioning. Measurement of displacement, velocity and acceleration (translational and rotational), force, torque, vibration and shock. Measurement of pressure, flow, temperature and liquid level. Measurement of pH, conductivity, viscosity and humidity.

Analog Electronics: Characteristics of diode, BJT, JFET and MOSFET. Diode circuits. Transistors at low and high frequencies, Amplifiers, single and multi-stage. Feedback amplifiers. Operational amplifiers, characteristics and circuit configurations. Instrumentation amplifier. Precision rectifier. V-to-I and I-to-V converter. Op-Amp based active filters. Oscillators and signal generators.

Digital Electronics: Combinational logic circuits, minimization of Boolean functions. IC families, TTL, MOS and CMOS. Arithmetic circuits. Comparators, Schmitt trigger, timers and mono-stable multi-vibrator. Sequential circuits, flip-flops, counters, shift registers. Multiplexer, S/H circuit. Analog-to-Digital and Digital-to-Analog converters. Basics of number system. Microprocessor applications, memory and input-output interfacing. Microcontrollers.

Signals, Systems and Communications: Periodic and aperiodic signals. Impulse response, transfer function and frequency response of first- and second order systems. Convolution, correlation and characteristics of linear time invariant systems. Discrete time system, impulse and frequency response. Pulse transfer function. IIR and FIR filters. Amplitude and frequency modulation and demodulation. Sampling theorem, pulse code modulation. Frequency and time division multiplexing. Amplitude shift keying, frequency shift keying and pulse shift keying for digital modulation.

Electrical and Electronic Measurements: Bridges and potentiometers, measurement of R,L and C. Measurements of voltage, current, power, power factor and energy. A.C & D.C current probes. Extension of instrument ranges. Q-meter and waveform analyzer. Digital voltmeter and multi-meter. Time, phase and frequency measurements. Cathode ray oscilloscope. Serial and parallel communication. Shielding and grounding.

Control Systems and Process Control: Feedback principles. Signal flow graphs. Transient Response, steady-state-errors. Routh and Nyquist criteria. Bode plot, root loci. Time delay systems. Phase and gain margin. State space representation of systems. Mechanical, hydraulic and pneumatic system components. Synchro pair, servo and step motors. On-off, cascade, P, P-I, P-I-D, feed forward and derivative controller, Fuzzy controllers.

Analytical, Optical and Biomedical Instrumentation: Mass spectrometry. UV, visible and IR spectrometry. X-ray and nuclear radiation measurements. Optical sources and detectors, LED, laser, Photo-diode, photo-resistor and their characteristics. Interferometers, applications in metrology. Basics of fiber optics. Biomedical instruments, EEG, ECG and EMG. Clinical measurements. Ultrasonic transducers and Ultrasonography. Principles of Computer Assisted Tomography.

GATE 2013 Syllabus for MECHANICAL ENGINEERING–ME

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.
 
GENERAL APTITUDE(GA):
Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction.
 
Applied Mechanics and Design
Engineering Mechanics: Free body diagrams and equilibrium; trusses and frames; virtual work; kinematics and dynamics of particles and of rigid bodies in plane motion, including impulse and momentum (linear and angular) and energy formulations; impact.

Strength of Materials: Stress and strain, stress-strain relationship and elastic constants, Mohr's circle for plane stress and plane strain, thin cylinders; shear force and bending moment diagrams; bending and shear stresses; deflection of beams; torsion of circular shafts; Euler's theory of columns; strain energy methods; thermal stresses.

Theory of Machines: Displacement, velocity and acceleration analysis of plane mechanisms; dynamic analysis of slider-crank mechanism; gear trains; flywheels.

Vibrations: Free and forced vibration of single degree of freedom systems; effect of damping; vibration isolation; resonance, critical speeds of shafts.

Design: Design for static and dynamic loading; failure theories; fatigue strength and the S-N diagram; principles of the design of machine elements such as bolted, riveted and welded joints, shafts, spur gears, rolling and sliding contact bearings, brakes and clutches.

Fluid Mechanics and Thermal Sciences
Fluid Mechanics: Fluid properties; fluid statics, manometry, buoyancy; control-volume analysis of mass, momentum and energy; fluid acceleration; differential equations of continuity and momentum; Bernoulli's equation; viscous flow of incompressible fluids; boundary layer; elementary turbulent flow; flow through pipes, head losses in pipes, bends etc.

Heat-Transfer: Modes of heat transfer; one dimensional heat conduction, resistance concept, electrical analogy, unsteady heat conduction, fins; dimensionless parameters in free and forced convective heat transfer, various correlations for heat transfer in flow over flat plates and through pipes; thermal boundary layer; effect of turbulence; radiative heat transfer, black and grey surfaces, shape factors, network analysis; heat exchanger performance, LMTD and NTU methods.

Thermodynamics: Zeroth, First and Second laws of thermodynamics; thermodynamic system and processes; Carnot cycle. irreversibility and availability; behaviour of ideal and real gases, properties of pure substances, calculation of work and heat in ideal processes; analysis of thermodynamic cycles related to energy conversion.

Applications: Power Engineering: Steam Tables, Rankine, Brayton cycles with regeneration and reheat. I.C. Engines: air-standard Otto, Diesel cycles. Refrigeration and air-conditioning: Vapour refrigeration cycle, heat pumps, gas refrigeration, Reverse Brayton cycle; moist air: psychrometric chart, basic psychrometric processes. Turbomachinery: Pelton-wheel, Francis and Kaplan turbines - impulse and reaction principles, velocity diagrams.

Manufacturing and Industrial Engineering
Engineering Materials: Structure and properties of engineering materials, heat treatment, stress-strain diagrams for engineering materials.

Metal Casting: Design of patterns, moulds and cores; solidification and cooling; riser and gating design, design considerations. Forming: Plastic deformation and yield criteria; fundamentals of hot and cold working processes; load estimation for bulk (forging, rolling, extrusion, drawing) and sheet (shearing, deep drawing, bending) metal forming processes; principles of powder metallurgy.

Joining: Physics of welding, brazing and soldering; adhesive bonding; design considerations in welding. Machining and Machine Tool Operations: Mechanics of machining, single and multi-point cutting tools, tool geometry and materials, tool life and wear; economics of machining; principles of non-traditional machining processes; principles of work holding, principles of design of jigs and fixtures Metrology and Inspection: Limits, fits and tolerances; linear and angular measurements; comparators; gauge design; interferometry; form and finish measurement; alignment and testing methods; tolerance analysis in manufacturing and assembly. Computer Integrated Manufacturing: Basic concepts of CAD/CAM and their integration tools.

Production Planning and Control: Forecasting models, aggregate production planning, scheduling, materials requirement planning.

Inventory Control: Deterministic and probabilistic models; safety stock inventory control systems. Operations Research: Linear programming, simplex and duplex method, transportation, assignment, network flow models, simple queuing models, PERT and CPM.

GATE 2013 Syllabus for CHEMICAL Engineering-CH

Engineering Mathematics


Linear Algebra: Matrix algebra, Systems of linear equations, Eigen values and eigenvectors.

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 dentities,
Directional derivatives, Line, Surface and Volume integrals, Stokes, Gauss and Green's theorems.

Differential equations: First order equations (linear and nonlinear), Higher order linear differential equations with constant
coefficients, Cauchy's and Euler's equations, Initial and boundary value problems, Laplace transforms, Solutions of one dimensional
heat and wave equations and Laplace equation.
Complex variables: Analytic functions, Cauchy's integral theorem, Taylor and Laurent series, Residue theorem.

Probability and Statistics: Definitions of probability and sampling theorems, Conditional probability, Mean, median, mode and
standard deviation, Random variables, Poisson, Normal and Binomial distributions.

Numerical Methods: Numerical solutions of linear and non-linear algebraic equations Integration by trapezoidal and Simpson's rule,
single and multi-step methods for differential equations.

Chemical Engineering


Process Calculations and Thermodynamics: Laws of conservation of mass and energy; use of tie components; recycle, bypass
and purge calculations; degree of freedom analysis. First and Second laws of thermodynamics. First law application to close and
open systems. Second law and Entropy Thermodynamic properties of pure substances: equation of state and departure function,
properties of mixtures: partial molar properties, fugacity, excess properties and activity coefficients; phase equilibria: predicting VLE
of systems; chemical reaction equilibria.

Fluid Mechanics and Mechanical Operations: Fluid statics, Newtonian and non-Newtonian fluids, Bernoulli equation, Macroscopic
friction factors, energy balance, dimensional analysis, shell balances, flow through pipeline systems, flow meters, pumps and
compressors, packed and fluidized beds, elementary boundary layer theory, size reduction and size separation; free and hindered
settling; centrifuge and cyclones; thickening and classification, filtration, mixing and agitation; conveying of solids.

Heat Transfer: Conduction, convection and radiation, heat transfer coefficients, steady and unsteady heat conduction, boiling,
condensation and evaporation; types of heat exchangers and evaporators and their design.

Mass Transfer: Fick's laws, molecular diffusion in fluids, mass transfer coefficients, film, penetration and surface renewal
theories; momentum, heat and mass transfer analogies; stagewise and continuous contacting and stage efficiencies; HTU & NTU
concepts design and operation of equipment for distillation, absorption, leaching, liquid-liquid extraction, drying, humidification,
dehumidification and adsorption.

Chemical Reaction Engineering: Theories of reaction rates; kinetics of homogeneous reactions, interpretation of kinetic data,
single and multiple reactions in ideal reactors, non-ideal reactors; residence time distribution, single parameter model; non-
isothermal reactors; kinetics of heterogeneous catalytic reactions; diffusion effects in catalysis.

Instrumentation and Process Control: Measurement of process variables; sensors, transducers and their dynamics, transfer
functions and dynamic responses of simple systems, process reaction curve, controller modes (P, PI, and PID); control valves;
analysis of closed loop systems including stability, frequency response and controller tuning, cascade, feed forward control.

Plant Design and Economics: Process design and sizing of chemical engineering equipment such as compressors, heat
exchangers, multistage contactors; principles of process economics and cost estimation including total annualized cost, cost
indexes, rate of return, payback period, discounted cash flow, optimization in design.

Chemical Technology: Inorganic chemical industries; sulfuric acid, NaOH, fertilizers (Ammonia, Urea, SSP and TSP); natural
products industries (Pulp and Paper, Sugar, Oil, and Fats); petroleum refining and petrochemicals; polymerization industries;
polyethylene, polypropylene, PVC and polyester synthetic fibers.

 
Gate 2013-14 chemical syllabus, GATE syllabus for chemical, GATE CH syllabus, gate chemical sample papers, gate chemical practice set

GATE 2013 Syllabus for CIVIL Engineering-CE

Engineering Mathematics
 
Linear Algebra: Matrix algebra, Systems of linear equations, Eigen values and eigenvectors.

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, Stokes, Gauss and Green's theorems.

Differential equations:
First order equations (linear and nonlinear), Higher order linear differential equations with constant coefficients, Cauchy's and Euler's equations, Initial and boundary value problems, Laplace transforms, Solutions of one dimensional heat and wave equations and Laplace equation.

Complex variables:
Analytic functions, Cauchy's integral theorem, Taylor and Laurent series.

Probability and Statistics:
Definitions of probability and sampling theorems, Conditional probability, Mean, median, mode and standard deviation, Random variables, Poisson, Normal and Binomial distributions.

Numerical Methods
: Numerical solutions of linear and non-linear algebraic equations Integration by trapezoidal and Simpson's rule, single and multi-step methods for differential equations.
 
GENERAL APTITUDE(GA):
Verbal Ability: English grammar, sentence completion, verbal analogies, word groups, instructions, critical reasoning and verbal deduction.
 
Structural Engineering
Mechanics: Bending moment and shear force in statically determinate beams. Simple stress and strain relationship: Stress and strain in two dimensions, principal stresses, stress transformation, Mohr's circle. Simple bending theory, flexural and shear stresses, unsymmetrical bending, shear centre. Thin walled pressure vessels, uniform torsion, buckling of column, combined and direct bending stresses.

Structural Analysis: Analysis of statically determinate trusses, arches, beams, cables and frames, displacements in statically determinate structures and analysis of statically indeterminate structures by force/ energy methods, analysis by displacement methods (slope deflection and moment distribution methods), influence lines for determinate and indeterminate structures. Basic concepts of matrix methods of structural analysis.

Concrete Structures: Concrete Technology- properties of concrete, basics of mix design. Concrete design- basic working stress and limit state design concepts, analysis of ultimate load capacity and design of members subjected to flexure, shear, compression and torsion by limit state methods. Basic elements of prestressed concrete, analysis of beam sections at transfer and service loads.

Steel Structures: Analysis and design of tension and compression members, beams and beam- columns, column bases. Connections- simple and eccentric, beam'column connections, plate girders and trusses. Plastic analysis of beams and frames.
 
Geotechnical Engineering
Soil Mechanics: Origin of soils, soil classification, three-phase system, fundamental definitions, relationship and interrelationships, permeability & seepage, effective stress principle, consolidation, compaction, shear strength.

Foundation Engineering: Sub-surface investigations- scope, drilling bore holes, sampling, penetration tests, plate load test. Earth pressure theories, effect of water table, layered soils. Stability of slopes-infinite slopes, finite slopes. Foundation types-foundation design requirements. Shallow foundations-bearing capacity, effect of shape, water table and other factors, stress distribution, settlement analysis in sands & clays. Deep foundations pile types, dynamic & static formulae, load capacity of piles in sands & clays, negative skin friction.
 
Water Resources Engineering
Fluid Mechanics and Hydraulics: Properties of fluids, principle of conservation of mass, momentum, energy and corresponding equations, potential flow, applications of momentum and Bernoulli's equation, laminar and turbulent flow, flow in pipes, pipe networks. Concept of boundary layer and its growth. Uniform flow, critical flow and gradually varied flow in channels, specific energy concept, hydraulic jump. Forces on immersed bodies, flow measurements in channels, tanks and pipes. Dimensional analysis and hydraulic modeling. Kinematics of flow, velocity triangles and specific speed of pumps and turbines.

Hydrology: Hydrologic cycle, rainfall, evaporation, infiltration, stage discharge relationships, unit hydrographs, flood estimation, reservoir capacity, reservoir and channel routing. Well hydraulics.

Irrigation: Duty, delta, estimation of evapo-transpiration. Crop water requirements. Design of: lined and unlined canals, waterways, head works, gravity dams and spillways. Design of weirs on permeable foundation. Types of irrigation system, irrigation methods. Water logging and drainage, sodic soils.
 
Environmental Engineering
Water requirements: Quality standards, basic unit processes and operations for water treatment. Drinking water standards, water requirements, basic unit operations and unit processes for surface water treatment, distribution of water. Sewage and sewerage treatment, quantity and characteristics of wastewater. Primary, secondary and tertiary treatment of wastewater, sludge disposal, effluent discharge standards. Domestic wastewater treatment, quantity of characteristics of domestic wastewater, primary and secondary treatment Unit operations and unit processes of domestic wastewater, sludge disposal.

Air Pollution: Types of pollutants, their sources and impacts, air pollution meteorology, air pollution control, air quality standards and limits.

Municipal Solid Wastes: Characteristics, generation, collection and transportation of solid wastes, engineered systems for solid waste management (reuse/ recycle, energy recovery, treatment and disposal).

Noise Pollution: Impacts of noise, permissible limits of noise pollution, measurement of noise and control of noise pollution.
 
Transportation Engineering
Highway Planning: Geometric design of highways, testing and specifications of paving materials, design of flexible and rigid pavements

Traffic Engineering: Traffic characteristics, theory of traffic flow, intersection design, traffic signs and signal design, highway capacity.
 
Surveying
Importance of surveying, principles and classifications, mapping concepts, coordinate system, map projections, measurements of distance and directions, leveling, theodolite traversing, plane table surveying, errors and adjustments, curves.

How to Apply for GATE 2013

Before Applying, candidates are advised to go through the preliminary requirements given in this website and FAQ or download the GATE 2013 Brochure and read it carefully.
All candidates have to apply ONLINE. Details of the application fee and the steps in the application process are given below. The application fee is non-refundable.
  
CategoryApplication Fee
General/OBC-NC (Male Applicants) ₹ 1200/-
SC / ST / PD* (Male Applicants)₹ 600/-
Female Applicants₹ 0 (Exempted)
* PD: Person with a Physical Disability

 Filling in Application Online

  1. GATE Online Applicant Interface (website) can be accessed using this link.
  2. You must first register yourself, by providing a valid email address.  Choose this carefully to be the one you check frequently, as all communications to you from the GATE offices will be sent to this address (Do not use anybody else’s email address; Only one person can register with one email address).
  3. Upon registration, an email will be sent with a link. You will be required to choose a password when you click on the link.  Choose a password that is not easily guessable (should not be, for example: your name, DOB, 12345, asdf, etc.), so as to ensure that the data you provide is not accessible to any person other than yourself.
  4. Next you will see an application form to be filled in.  Keep the following information ready:
    1. Personal information
    2. Communication Address (Important: PIN Code)
    3. Eligibility Degree Details (College address, PIN Code of College)
    4. GATE paper, Choice of GATE examination cities
    5. High quality image of  your photograph conforming to these requirements
    6. Good quality image of your signature (in .jpeg format) conforming to requirements similar to photograph
    7. Optional: PDF/JPEG files of supporting documents (Eligibility & Category Certificates) (max file size: per file 0.5 MB; see more details below in section ‘supporting documents’)
    8. Optional: Your Netbanking login and password to make the application fee payment (only for Male applicants).
  5. Fill in the necessary data in the online application form following instructions given there. Upload the required soft copies of photo and signature.
  6. Optional: You may upload PDF files of supporting documents conforming to the eligibility (except principal’s certificate) and category requirements given below in section Supporting Documents
  7. You will have to select one of the two payment option (details given below) while filling the online form.
  8. The GATE Online Applicant Interface allows you to enter data, “Save” partially filled form, “Logout”, and resume filling in by logging in again.
  9. Once you finally submit the application, no further changes to the application can be made by the applicant.
  10. Applicants who have selected online payment option will follow the instructions given below for online netbanking in payment section and complete payment process. Those who have selected challan payment option will directly proceed to the next step.
  11. You will then see a link to “Print Application Form”.  You have to download a PDF file from this link and print it. It will contain four pages as mentioned below
    1. Page 1: Instructions and Address slip where you need to send hard copy
    2. Page 2-3: Two copies of application form with bottom part showing certificate to be signed by principal (if need be)
    3. Page 4: Optional page for applicants who select “bank challan” mode of payment. This page will contain 3 copies of challan to be processed with bank

Supporting Documents

Applicants have an option to upload supporting documents online.  Please make sure that the max file size permitted to upload per file is 0.5 MB. For scanning the documents please use the following setting
  1. Resolution: 200 dpi
  2. Color mode: 256 colors
  3. File format: PDF or JPEG

Eligibility Documents

Eligibility criteria and necessary supporting documents can be found here

SC/ST/PD Certificate

  1. Only male applicants who claim to be in any of the category SC/ST/PD have to produce valid documentary evidence, to qualify for the reduced fee.
  2. Female applicants need not provide any SC/ST certificate, as the fee is exempted.
  3. However, if any female applicant requests a scribe to assist writing the exam, a PD certificate has to be provided.

Application Fee Payment Options

Non-refundable application fee is charged only for male applicants. Female applicants are exempted from the payment of application fee.  All charges given below are in Indian Rupees.
CategoryModeApplication FeeBank ChargesTotal to be Paid
Male General/OBC-NCOnline Netbanking1200101210
Canara Bank Challan1200201220
SBI Challan1200251225
Male SC/ST/PDOnline Netbanking60010610
Canara Bank Challan60020620
SBI Challan60025625
FemaleNo  Application Fee

Online Netbanking Payment Details

  1. From the GATE Online Application Interface, you will be redirected to a bank you choose.
  2. You will have to login with your bank’s Netbanking (or Internet Banking) user ID and password.
  3. The fee amount and bank charges will be shown to you, and you have to confirm that the payment is for GATE 2013.
  4. Once you confirm, you will be redirected back to the GATE Online Application Interface.
  5. If you have some difficulty (due to internet connection or power failure), and you are not sure if you have made the payment,  please login back to GATE Online Application Interface and check the status of the payment.  You can also check the status in your bank.
  6. In case the fee amount has been debited from your bank account but not reached GATE, then the money will be credited back to your account within three working days.
  7. In such a case, you may initiate a fresh payment from the GATE Online Interface, even without waiting for the money to be credited back to your account, so that your application is submitted to GATE office on time.  You may also switch to offline Challan payments if need be.

Offline Challan Payment Details

  1. If you had chosen offline payment option while filling in the form, you will be provided with a copy of the challan in triplicate (PDF file) with your details filled in. You have to print it out on an A4 paper, and have to fill in a few more details such as date and signature.
  2. You have to wait for at least 48 hours after generation of application PDF online and then take filled challan to the bank for payment of fees. 
  3. You may take the challan to any branch of the bank you opted: Canara Bank or SBI  and make application fees payment. You do not need to have an account in that branch.
  4. The bank teller will verify the details printed on the challan with the data available at the bank and then accept the payment. Note that your payment will NOT be accepted if you go to bank earlier than 48 hrs as mentioned above. This is because it will take some time after application PDF has been generation online to reflect the data in respective bank’s system.
  5. The bank will retain one copy and give you back the remaining copies: one of which you have to send along with the printed application form and the other is for your reference.

Mailing Documents to GATE Office

The printed application form along with the documents must be mailed by speed post to the Zonal office, as mentioned in the printed address slip that comes along with the PDF file of the application form. Before mailing, the following procedures need to be completed

Before Mailing

  1. Out of the printed pages, keep one copy of application form (page 2) for your reference and process the other copy as follows
    1. Paste a color photograph of yourself, and read the declaration and put your full signature in black ink, in appropriate boxes provided. This photograph and signature should EXACTLY match the one in the photograph file uploaded electronically to the GATE Online Interface; your application is liable to be rejected otherwise.
    2. Do not pin, sign, or attest the photograph.
    3. You must sign in the box provided.
    4. In case principal’s certificate happens to be proof of your eligibility, Submit the whole page (without cutting it) to your College principal’s office. Bottom portion of the form contains the part that your college principal has to certify. Once you obtain principal’s signature and stamp this is ready to go in application packet to be sent.
  2. If you had paid the application fee by challan, bank would have returned you stamped GATE copy of challan. Keep it ready to go in application packet to be sent.
  3. You will also find half page of instruction and half page address slip.  Cut this address slip, which contains the address of the Zonal office (along with application bar code), where the application form needs to be posted to.
  4. Make sure you are ready with the following CHECK LIST:
    1. The signed application form (with photograph affixed) with, the Principal’s certificate if that is proof of your eligibility to appear in GATE 2013.
    2. Other eligibility documents to appear for GATE 2013 (degree certificate) only in case PDF files of these are NOT uploaded to online interface.
    3. Category certificate for claiming discounted application fee in case PDF files of these are NOT uploaded to online interface.
    4. PD certificate if you request for a scribe assistance.
    5. GATE copy of Challan duly stamped by the bank after payment of fees (you need not submit challan in case of payment by net banking, as these details will be filled in).

Mailing

  1. Use A4 sized envelope and put application form along with other documents mentioned in the CHECK LIST above.
  2. Do NOT FOLD the application form and Do NOT STAPLE or pin the documents.
  3. Do not fill address by hand, as the address slip provided contains a special codes necessary for processing your application. Note that the codes on these address slips are different for each applicant. DO NOT use someone else’s address slip for your application.
  4. Secure the address slip firmly to the envelope using good glue or with additional transparent sticky tape (cello-tape).
  5. Send the packet by Speed Post (preferably) or by Registered Post to the address mentioned. The application packet should REACH the respective GATE offices on or before Monday, 8 October 2012. Alternatively it can also be handed over personally to the respective Zonal GATE Office on or before Monday, 8th October, 2012. (Note: Applications reaching respective offices later than 8th October 2012 may not be considered even if they are post marked 8th  October, 2012 or earlier)
  6. If you had uploaded the supporting documents online, you should post only the application form page (with principal’s certification if applicable).  There is no need to post the paper copies of other documents.
Current status of your application will be updated after receipt and scrutinizing of your application by respective GATE offices. This status can be checked anytime by logging onto your GATE Online Applicant Interface.

Importent Date for GATE 2013

GATE Online Applicant Interface (website) OpensSaturday1 September 2012
(00:00 Hrs)
Last date for Submission of Online Application (website closure)Sunday30 September 2012
(23:00 Hrs)
Last date for the receipt of printed version of ONLINE Application at the respective zonal GATE OfficeMonday8 October 2012
Last date for request of change of cityTuesday20 November 2012
Availability of admit card on Online Application InterfaceWednesday5 December, 2012
GATE 2013 Online Examination for Papers:
AR, CE, GG, MA, MT, PH and TF
Sunday20 January 2013
(09:00 Hrs to 12:00 Hrs)
GATE 2013 Online Examination for Papers:
AE, AG, BT, CH, CY, MN, XE and XL
Sunday20 January 2013
(14:00 Hrs to 17:00 Hrs)
GATE 2013 Offline Examination for Papers:
CS, ME and PI
Sunday10 February 2013
(09:00 Hrs to 12:00 Hrs)
GATE 2013 Offline Examination for Papers:
EC, EE and IN
Sunday10 February 2013
(14:00 Hrs to 17:00 Hrs)
Announcement of results on Online Applicant InterfaceFriday15 March 2013
(10:00 Hrs)

New in GATE 2013

GATE 2013 Application Process:
  •   Only ONLINE application will be accepted through Seven IITs & IISC official website.
  •   Print out of the filled ONLINE application with the candidate’s signature and  photo must be submitted to respective GATE office along with necessary documents, if any, on or before 8th October 2012.
How to downloadable Admit Card:
  •   Admit card can only be downloaded from the zonal GATE websites from 5th December 2012 onwards.
Mode of Examination :
  •   The ONLINE examination will be conducted for these papers (AE, AG, AR, GG, MN and TF).
  •  The OFFLINE examination will be conducted for engineering streams.
Eligibility:
  •    Pre-final year students are not eligible to write GATE 2013.
  •    Candidate with B.E / B.Tech Degree ( 4 year degree ) are eligible.
  •   Master's degree holders in any branch of Science/Mathematics/ Statistics/Computer Applications or equivalent  are eligible.
  •   Candidate with AMIE or AMICE degree are eligible.
Black ink ball point pen:
·        Candidates should use only black ink ball point pen for darkening of the bubbles in the answer sheet. 
Note:
  • GATE 2013 Application Forms aren't available for sale anywhere.
  • Bring at least one original (not photocopies / scanned copy ) and valid (not expired) photo identification with Admit Card to the test centre.

About GATE 2013

Graduate Aptitude Test in Engineering (GATE) is an all India examination that primarily tests the comprehensive understanding of various undergraduate subjects in Engineering and Technology. The GATE score of a candidate reflects a relative performance of a candidate. The score is used for admissions to post-graduate engineering programmes (eg. M.E., M.Tech, direct Ph.D.) in Indian higher education institutes with financial assistance provided by MHRD and other Government agencies.  The score may also used by Public sector units for employment screening purposes.

Financial Assistance

A valid GATE score is essential for obtaining a financial assistance during Masters programmes and in some cases during direct Doctoral programmes in Engineering/Technology/Architechture, and Doctoral programs in relevant branches of Science in an Institution supported by the MHRD or other Government organizations.  To avail the financial assistance (scholarship), the candidate must first secure admission to a programme in these Institutes, by a procedure that could be different for each institute.  Qualification in GATE is also a minimum requirement to apply for various fellowships awarded by many Government organizations.
However, candidates with a Master’s degree in Engineering/Technology/Architecture may seek admission to relevant Doctoral programmes with scholarship/assistantship without appearing in the GATE examination.

Administration

GATE is administered and conducted jointly by the Indian Institute of Science and seven Indian Institutes of Technology on behalf of the National Coordination Board (NCB) – GATE, Department of Higher Education, Ministry of Human Resource Development (MHRD), Government of India. The GATE Committee, which comprises of representatives from the administering institutes, is the sole authority for conducting the examination and declaring the results.
GATE is conducted through the constitution of eight zones. The zones and the corresponding administrative institutes are:
The overall coordination and responsibility of conducting GATE 2013 lies with Indian Institute of Technology Bombay, and is designated as the Organizing Institute for GATE 2013.

Top Nursing colleges in Tamil Nadu

Nursing is seen as one of the noblest occupation known to man as its where a trained professional protects and takes care of the health and wellbeing of other people. Normally we give all the credit to the doctors but we should also remember that it’s the nurse who takes over and execute the recommended procedures.
Job opportunities are much higher in nursing than any other profession as hospitals always keep hiring new nurses offering them a better salary package. There are many Nursing Colleges in Tamil Nadu which offers various types of nursing courses like general nursing (GN), general nursing midwife (GNM) and male nursing (MN), etc.
In these colleges you can also opt for any of the degree, diploma, or certificate course in nursing that includes bachelors as well master’s degree. The minimum qualification required to get admission in the Nursing Colleges in Tamil Nadu is either a 10th class passed or a 12th class depending upon the level of course you are opting for.
The course is designed in such a way that it’s a combination of theory and practical aspects. Also the aspirants have to go through training in hospitals as nursing is not an easy profession and it’s physically demanding too. The Nursing Colleges in Tamil Nadu also offers specialization in nursing like renal therapy, emergency room nursing, or surgical nursing etc.
Name Address Seat Phone, Email, Website
A.J. College of Nursing 180 Thambu Chetty Street, Chennai 600001 (T.N.)
Adhiparasakthi College of nursing Melmaruvathur 603319 (T.N.) 50
Annai J.K.K. Sampoorani Ammal College of NursingKumarapalayam, Salem 638183 (T.N.)
Annai Meenakashi College of NursingMadukkarai Market Road, Industrial State, P.O., P.B. No. 4429, Coimbatore 641021 (T.N.)30
Apollo College of Nursing Vanagaram to Ambattur Main Road, Kil Avanambakkam, Chennai 600095 (T.N.) Ph: 044-26534387
Bishop's College of Nursing CSI Mission Compound, Dharapuram 638656 (T.N.)50
C.S.I Jeyaraj Annapachian College of NursingEast Gate, Madurai 625001 (T.N.)50
Cheran College of Nursing 278-A, Siruvani Main Road, Coimbatore 641001 (T.N.)50
Christian Bsc Nursing CollegeoTalangra, Kasargod 671122 (Tamil Nadu)Shanthipuram, Ambilikkai 624612 (T.N.) 50
Christian Medical College Thorapadi Post Office, Vellore 632002 (T.N.) 50 Ph: 0416-2284255, 5214255
Email: registrar@cmcvellore.ac.in
Website: www.home.cmcvelloe.ac.in
College of Nursing, Krishna Institute 395, S.N. Road, Coimbatore 641004 (T.N.) 50
College of Nursing No 1, Poonamallee By-Pass Road Chennai 600077 (T.N.)
College of Nursing (Sri Ramakrishna Institute of Para Medical Sciences)395, Sarojini Naidu Road Coimbatore 641044 (T.N.) Ph: 0422-2217756
College of NursingChennai Medical College, Chennai 600003 (T.N.)30
College of NursingK.G. Hospital, Arts College Road, Coimbatore 641018 (T.N.)
College of Nursing (Sri Ramachandra Medical College of Research Institute) (Deemed University) Porur, Chennai 600116 (T.N.) 50 Ph: 24769816
Dr. G. Sakunthala College of Nursing 61, Sannuthi Street (T.N.)
Govt. College Sakkunthara College of Nursing, trichy 635020 (T.N.)
J.K. College of Nursing Paramedicals Kamaraj Road (Next fo ESI Hospital) Varadarajapuram, Singanallur, Coimbatore 641015 (T.N.) 50 Ph: 0422-2577136
KG College of NursingK.G. Hospital, Arts College Road, Coimbatore 641018 (T.N.) 50
K.M.C.H. College of Nursing (Kovai Medical Centre Research and Educational trust) P.B. No. 3209, Avanashi Road, Coimbatore 641014 (T.N.) Email: info@kmcret.com
Website: www.kmcret.com
M.A. Chidambaram College of NursingV.H.S., Adyar TITI Post, Chennai 600113 (T.N.)50
Madha College of NursingMadha Nagar, Somangalam Road, Kunrathur, Chennai 600069 (T.N.)
Madras Medical CollegePark Town, Chennai 600003 (T.N.)30
Maharaji Educational trustNo 1, 7th Avenue, Besant Nagar, Chennai 600090 (T.N.)
Ph. 24918844, 24917646
Sara Nursing College101, Park Road, Dharapuram 638656 (T.N.)50
Saveetha Dental College & HospitalsNo. 1, Poonamallee Bypass Road, Chennai 600077 50 Ph: 26801580-87
Website: www.saveetha.org
Sharmila College of Nursing Chengalpattu, Pallikaranai, Chennai 601302 (T.N.)
Sri Chandrasekharendra Saraswathi Viswa Mahavidyala Enathur, Kanchpuram 631561 (T.N.)
Sri Ramakrishna Institute of Paramedical Scieences395, Sarojini Naidu Road, New Sidhapudur,
Coimbatore 641044 (T.N.)
Vinayaka Mission's Annapoorna College of Nursing44-A Second Agraharam, Salem 636001 (T.N.) 50 Email: vinayaka@tr.dot.net.in
Ph: 0427-2477316/7/594
Website: www.vinayakamission.com
Vivekanandha College of NursingElayampalayam, Kumaramangalam,
Tiruchengodu 637205 (T.N.)
50
Matha College of NursingVaanpuram, Manamadurai, Pasumpon, Mathuramaling Thevar 630606 (T.N.) Ph: 04574-268830, 260080
Meenakshi College of Nursing61, Sannuthi Street (T.N.)Meenakshi Academy of Higher Education and Research (MAHER), Alapakkam Main Road, Maduravoyal, Chennai 600095 Tamil Nadu Ph: 044-55188121, 55188117
Omayal Achi College of Nursing King Cross Road, Sahyamurthy Nagar, Avadi, Cehnnai 600062 (T.N.)50
P.S.G. College of Nursing Avanashi Road, Peelamedu, Coimbatore 641004 (T.N.)50
Padmavathy College of NursingChinna Vathiar Street, Periyanahalli,
Dharamapuri 636701 (T.N.)
50
R.V.S. College of Nursingtrichy Road, Sulur, Coimbatore 641402 (T.N.) 50
Rajah Muthiah Institute of Health Science (Annamalai University)Annamalainagar 608002 (T.N.)
Rani Mayyammai College of NursingAnnamalai University,
South Arcote District Annamalainagar 608002 (T.N.)
20
S.R.M. College of Nursing68, Thambiah Road, West Mambalam,
Chennai 600033 (T.N.)
50
Sacred Heart Nursing College4/235, College Road, Thasildhar Nagar, Madurai 625020 (T.N.) 50 Ph: 0452-2534593


Midori :The Lightweight Browser for Windows and Linux


Midori is based on WebKit, the same layout rendering engine used by Safari, Mac's default web browser. It offers standard features such as a tabbed interface, support for bookmarks, browsing history and a customizable built-in search engine. It's also surprisingly fast, and doesn't require installation – you can even run it from a USB key.

We’ve had browser wars back when Netscape was still the king. Today, it’s Internet Explorer, Firefox,Chrome, Safari, and Opera all battling it out to see who’s top dog. There are plenty of different categories where they are being compared, such as speed, memory efficiency, functionality/features, and more.
However, sometimes we forget that there are still some other browsers than the Big 5. Today, we’ll be looking at one of the fastest and most lightweight browsers outside of the Big 5.
Midori is a relatively simple browser that currently tries to offer you the most of the web while keeping it simple and clean. In other words, it strives to support all of the Web’s standards such as HTML5 while keeping the browser user interface relatively simple. This results in an easy browsing experience as well as a speedy one. The browser should be available under all Linux distributions, while you can also download a Windows version from Midori’s website (more about that later). 
Features:
  • Full integration with GTK+ 2 and GTK+ 3 support
  • Fast rendering with WebKit
  • Tabs, windows and session management
  • Flexibly configurable web search
  • User scripts and user styles support
  • Straightforward bookmark management
  • Customizable and extensible interface
  • Extension modules can be written in C and Vala
  • Supports HTML5
  • Form history, mouse gestures and cookie management.

Midori 0.1.6 passing the Acid3 Test
Midori passes the Acid3 test.
Among the latter features are:
  • Internationalized domain names support
  • Extensions
    • Adblock
    • Form history
    • Mouse gestures
    • Cookie management
  • Maemo integration for mobile devices
  • Speed Dial
  • Feed Panel


Download Midori Browser  : Click Here