Wednesday, 28 August 2013

GATE Syllabus for Aerospace Engineering (AE) 2013-2014

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 Equations: 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 and Thermodynamics of I-D flow, isentropic flow, normal shock, oblique shock, Prandtl-Meyer flow, flow in nozzles and diffusers, inviscid flow in a c-d nozzle, flow in diffusers. subsonic and 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.

PROPULSION

Thermodynamics of Aircraft Gas Turbine engines, thrust and thrust augmentation.

Turbomachinery: Axial compressors and turbines, centrifugal pumps and compressors.

Aerothermodynamics of non rotating propulsion components: Intakes, combustor and nozzle. Thermodynamics of ramjets and scramjets. Elements of rocket propulsion.

Sunday, 25 August 2013

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IES Qualification and syllabus

Candidates can apply for UPSC IES ESE 2013 examinations by visiting www.upscoline.nic.in

Eligibility Criteria


Age Limit:
                             Individuals applying for UPSC ESE exam 2013 should be between the age group of 21 -30 years as on 1st January, 2013.

Educational Qualification:

  • Candidates interested in applying for above mentioned vacancies must have obtained a degree in engineering from government recognized universities or deemed universities.
  • Applicants must have passed both A and B sections of institution examinations conducted by Institution of Engineers (India).


Dates to Remember

  • Online application form submission start date : coming soon
  • End date for online applications: coming soon
  • Examination date: coming soon 

Syllabus for UPSC ESE 2013 examination


Written papers for the above mentioned examination are divided in objective and conventional categories.  Syllabus for engineering services examinations is as follows

General Ability test:  This paper will test applicant’s understanding of English language and business jargons associated with engineering. It will also test his observations and knowledge about current events, Indian History and Geography in general.

Civil Engineering: This paper will test candidate’s knowledge on areas pertaining to structural analysis, solid mechanics and building materials. It will also have questions related to areas of construction practice, construction planning and construction management. Competitors will need to have thorough knowledge on design of steel structures, concrete structures and masonry structures.

Mechanical Engineering: This paper will test the competitor’s knowledge on areas covering fluid mechanics and Thermodynamics. Candidates must be well versed with Cycles and IC engines, Heat transfer, refrigeration and air conditioning. The applicant must also have knowledge of fluid machinery and steam generators.

Electrical Engineering: Paper one of Electrical engineering would test the applicant’s knowledge on topics related to electrical circuits and electrical materials. Individual writing the test should be well versed with measurements and instrumentation, control systems, EM theory of electric and Magnetic fields. Paper two will have topics related to communication systems, power systems, micro-processors and power electronics. Competitor must be knowledgeable about digital and analog electrical circuits, power transformers and electrical machinery.

Electronics and Telecommunications Engineering: Part one of this paper would cover topics related to network theory, electromagnetic theory, signals and networks. Applicant must be well versed with electronic measurements, instrumentation, components and materials, Electron devices and physical electronics. Paper two in this domain covers topics pertaining to communication and control systems, digital and analog electronic circuits, computer engineering and microwave engineering.

Difference Between Biodata, Rsume and Curriculum vitae(CV)

It is important for job seekers to find the correct format for their profile.

Difference Between Bio Data/ Resume and CV
MUST SHARE IT
Courtesy : www.freshersvacancy.net

GATE syllabus


1. 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.

 

Thursday, 1 August 2013

government jobs, government post for engineers, Indian government jobs


government jobs, government post for engineers, Indian government jobs
there are so many jobs awaiting for the engineers in Indian government.
Staff Selection Commission provides lots of jobs
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banking exams are conducted in India
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The Indian Navy
As compared to other profession in the civilian world, the Indian Navy has a great deal to offer to young men and women. It gives an individual the

opportunity to display leadership skills and bestows one with a tremendous amount of responsibility at a very young age. The Navy
provides countless opportunities ranging from being in charge of part of a ship to flying an aircraft or looking after one department on the ship/establishment independently. In addition, throughout his/her career one can actively participate in the sports and adventure activities of their choice, an option not commonly offered in other office jobs.
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THE CAVALIER is India’s No.1 Defence Career Training Academy. THE CAVALIER is recognized as the best Defence Coaching Institute because of the consistent success achieved by the candidates who have taken SSB Interview coaching/NDA coaching/CDS coaching from THE CAVALIER. All Defence Career related UPSC exams like NDA, CDS, CPO is provided by THE CAVALIER.
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union public service commission gives jobs according to their level of eligibility
http://www.upsc.gov.in/
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Anna University Results Nov Dec 2013 UG Results 2014 for 1st,3rd,5th,7th Semester

Anna University Results Nov Dec 2013 UG Results 2014 for 1st,3rd,5th,7th Semester   Nov Dec 2013 UG Anna University  Exams  Results 201...