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  #1  
Old September 22nd, 2012, 01:54 PM
shashikantprasad.
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Default ISRO Entrance Exam Syllabus

I am B Tech final year student and want to get admission in PG and Ph D course of ISRO of my interest. Give list of course offered by this organization. Share me address of a reliable web source to get question paper and syllabus of any entrance exam of ISRO?
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  #2  
Old September 23rd, 2012, 12:42 PM
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Default Re: ISRO Entrance Exam Syllabus

Indian Space Research Organisation) is a very prestigious organisation.

Eligibility Criteria:
Minimum qualification is B.E/B.Tech with aggregate of 65% marks in Mechanical Engineering, Computer Science and Electronics Engineering.
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File Type: doc ISRO Entrance Exam electronic Syllabus.doc (28.5 KB, 97 views)
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  #3  
Old May 29th, 2014, 04:51 PM
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Default ISRO Entrance Exam Syllabus

Will you please provide me syllabus for Electrical Branch entrance examination of Indian Space Research Organization
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  #4  
Old May 29th, 2014, 06:17 PM
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Default Re: ISRO Entrance Exam Syllabus

ISRO Indian Space Research Organization is a well known organization responsible for research work. It conducts examination to recruit the engineer of different Branches… here I am giving you syllabus for ISRO - Electrical Branch below:

Syllabus of ISRO - Electrical Branch
Basic Electrical Technology
Circuit Theory
Electromagnetic Fields
Electrical Machines I
Power Systems Analysis
Control Engineering
Electrical Machines II
Power Systems Operation and Control
Power Electronics
Power System Protection
High Voltage Engineering
Industrial Drives
Industrial Drives - Power Electronics
Embedded Systems
Intelligent Systems and Control
Industrial Automation and Control
Illumination Engineering
Industrial Instrumentation
Chaos, Fractals & Dynamic Systems
Energy Resources & Technology
Non-Conventional Energy Systems
Numerical Analysis
Power System Generation, Transmission and Distribution (Encapsulated from earlier Video)
Networks Signals and Systems
Networks and Systems
Digital Integrated Circuits
Analog ICs
Dynamics of Physical Systems
Estimation of Signals and Systems
Digital Signal Processing

ISRO SCIENTISTS/ENGINEERS (SC) ELECTRONICS ECE SYLLABUS

(1) Physical Electronics, Electron Devices and ICs:

Electrons and holes in semi-conductors, Carner Statistics, Mechanism of current flow in a semi-conductor, Hall effect; Junction theory; Different types of diodes and their characteristics; Bipolar Junction transistor; Field effect transistors; Power switching devices like SCRs, GTOs, power MOSFETs; Basics of ICs-bipolar, MOS and CMOS types; basic and Opto Electronics.

(2) Signals and Systems:
Classification of signals and systems; System modeling in terms of differential and difference equations; State variable representation; Fourier series; Fourier transforms and their application to system analysis; Laplace transforms and their application to system analysis; Convolution and superposition integrals and their applications; Z-transforms and their applications to the analysis and characterization of discrete time systems; Random signals and probability; Correlation functions; Spectral density; Response of linear system to random inputs.

(3) Network Theory:
Network analysis techniques; Network theorems, transient response, steady state sinusoidal response; Network graphs and their applications in network analysis; Tellegen’s theorem. Two port networks; Z, Y, h and transmission parameters. Combination of two ports, analysis of common two ports

Network functions: parts of network functions, obtaining a network function from a given part. Transmission criteria: delay and rise time, Elmore’s and other definitions effect of cascading. Elements of network synthesis.

(4) Electromagnetic Theory:
Analysis of electrostatic and magneto-static fields; Laplace’s and Poisson’s equations; Boundary value problems and their solutions; Maxwell’s equations; application to wave propagation in bounded and unbounded media; Transmission lines: basic theory, standing waves, matching applications, microstrip lines; Basics of wave guides and resonators; Elements of antenna theory.

(5) Analog Electronic Circuits:
Transistor biasing and stabilization. Small signal analysis. Power amplifiers. Frequency. response. Wide banding techniques. Feedback amplifiers. Tuned amplifiers. Oscillators, Rectifiers and power supplies. Op Amp, PLL, other linear integrated circuits and applications. Pulse shaping circuits and waveform generators.

(6) Digital Electronic Circuits:
Transistor as a switching element; Boolean algebra, simplification of Boolean function Karnaugh map and applications; IC Logic gates and their characteristics; IC logic families: DTL, TTL, ECL, NMOS, PMOS and CMOS gates and their comparison; Combinational logic circuits; Half adder, Full adder; Digital comparator; Multiplexer De-multiplexer; ROM and their applications. Flip-flops. R-S, J-K, D and T flip-tops; Different types of counters and registers. Waveform generators. A/D and D/A converters. Semi-conductor memories.

(7) Control Systems:
Transient and steady state response of control systems; Effect of feedback on stability and sensitivity; Root locus techniques; Frequency response analysis. Concepts of gain and phase margins; Constant-M and Constant-N Nichol’s Chart; Approximation of transient response from Constant-N Nichol’s Chart; Approximation of transient response from closed loop frequency response; Design of Control Systems; Compensators; Industrial controllers.

(8) Communication Systems:
Basic information theory; Modulation and detection in analogue and digital systems; Sampling and data reconstructions; Quantization and coding; Time division and frequency division multiplexing; Equalization; Optical Communication: in free space and fiber optic; Propagation of signals at HF, VHF, UHF and microwave frequency; Satellite Communication.

(9) Microwave Engineering:
Microwave Tubes and solid state devices, Microwave generation and amplifiers, Wave guides and other Microwave Components and Circuits, Microstrip circuits, Microwave Antennas, Microwave Measurements, Masers, Lasers; Micro-wave propagation. Microwave Communication Systems-terrestrial and satellite based.

(10) Computer Engineering:
Number Systems. Data representation; Programming; Elements of a high level programming language PASCAL/C; Use of basic data structures; Fundamentals of computer architecture; Processor design; Control unit design; Memory organization, I/o System Organization. Microprocessors: Architecture and instruction set of Microprocessor’s 8085 and 8086, Assembly language Programming. Microprocessor Based system design: typical examples. Personal computers and their typical uses.
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  #5  
Old May 31st, 2014, 07:54 PM
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Default ISRO entrance exam syllabus

I want to give the entrance exam of Indian Space Research Organisation and for that I need to get the entrance exam syllabus so can you provide me that?
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  #6  
Old June 3rd, 2014, 12:42 PM
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Default Re: ISRO entrance exam syllabus

As you want to get the entrance exam syllabus of Indian Space Research Organisation so here is the information of the same for you:

Syllabus for Electrical:
Basic Electrical Technology
Circuit Theory
Electromagnetic Fields
Electrical Machines I
Power Systems Analysis
Control Engineering
Electrical Machines II
Power Systems Operation and Control
Power Electronics
Power System Protection
High Voltage Engineering
Industrial Drives
Industrial Drives - Power Electronics
Embedded Systems
Intelligent Systems and Control
Industrial Automation and Control
Illumination Engineering
Industrial Instrumentation
Chaos, Fractals & Dynamic Systems
Energy Resources & Technology
Non-Conventional Energy Systems
Numerical Analysis
Power System Generation, Transmission and Distribution (Encapsulated from earlier Video)
Networks Signals and Systems
Networks and Systems
Digital Integrated Circuits
Analog ICs
Dynamics of Physical Systems
Estimation of Signals and Systems
Digital Signal Processing

Syllabus for Civil:
Engineering mathematics
Structural engineering
Geotechnical engineering
Water resources engineering
Environmental engineering
Transportation engineering
Surveying

Syllabus for Refrigeration and Air Conditioning:
Applied Mathematics for Thermal Engineers
Advanced Thermodynamics
Advanced Heat Transfer
Refrigeration Systems Design
Air conditioning Systems Design
Computer Simulation of Refrigeration
And Air conditioning Systems
Instrumentation for Thermal Systems
Design of Condensers Evaporators and Cooling Towers

Contact Details:
Indian Space Research Organisation
ISRO Road,
Amarjyothi Layout,
Raj Mahal Vilas, 2nd Stage,
Sanjay Nagar,
Bangalore,
Karnataka 560094 ‎
080 2341 5275
India

Map Location:
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  #7  
Old September 15th, 2014, 03:30 PM
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I want syllabus for mechanical branch
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  #8  
Old November 1st, 2014, 01:43 PM
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Default ISRO entrance exam syllabus

I want ISRO entrance exam syllabus of electrical and electronics branches so will you please provide me?
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  #9  
Old November 1st, 2014, 04:22 PM
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Default Re: ISRO entrance exam syllabus

Here you are looking for ISRO entrance exam syllabus of electrical and electronics branches as you want here I am providing you.

ISRO:
Indian Space Research Organization

Indian Space Research Organization was founded in 1962. It is the primary space agency of India. ISRO is among the biggest government space agencies in the globe. Its chief objective is to advance space technology and use its applications for state benefit.


Syllabus for Electrical:
• Basic Electrical Technology
• Circuit Theory
• Electromagnetic Fields
• Electrical Machines I
• Power Systems Analysis
• Control Engineering
• Electrical Machines II
• Power Systems Operation and Control
• Power Electronics
• Power System Protection
• High Voltage Engineering
• Industrial Drives
• Industrial Drives - Power Electronics
• Embedded Systems
• Intelligent Systems and Control
• Industrial Automation and Control
• Illumination Engineering
• Industrial Instrumentation
• Chaos, Fractals & Dynamic Systems
• Energy Resources & Technology
• Non-Conventional Energy Systems
• Numerical Analysis
• Power System Generation, Transmission and Distribution (Encapsulated from earlier Video)
• Networks Signals and Systems
• Networks and Systems
• Digital Integrated Circuits
• Analog ICs
• Dynamics of Physical Systems
• Estimation of Signals and Systems
• Digital Signal Processing
Syllabus for Civil:
• Engineering mathematics
• Structural engineering
• Geotechnical engineering
• Water resources engineering
• Environmental engineering
• Transportation engineering
• Surveying
Syllabus for Refrigeration and Air Conditioning:
• Applied Mathematics for Thermal Engineers
• Advanced Thermodynamics
• Advanced Heat Transfer
• Refrigeration Systems Design
• Air conditioning Systems Design
• Computer Simulation of Refrigeration
• And Air conditioning Systems
• Instrumentation for Thermal Systems
• Design of Condensers Evaporators and Cooling Towers

Electrical Branch

Basic Electrical Technology
Circuit Theory
Electromagnetic Fields
Electrical Machines I
Power Systems Analysis
Control Engineering
Electrical Machines II
Power Systems Operation and Control
Power Electronics
Power System Protection
High Voltage Engineering
Industrial Drives
Industrial Drives - Power Electronics
Embedded Systems
Intelligent Systems and Control
Industrial Automation and Control
Illumination Engineering
Industrial Instrumentation
Chaos, Fractals & Dynamic Systems
Energy Resources & Technology
Non-Conventional Energy Systems
Numerical Analysis
Power System Generation, Transmission and Distribution (Encapsulated from earlier Video)
Networks Signals and Systems
Networks and Systems
Digital Integrated Circuits
Analog ICs
Dynamics of Physical Systems
Estimation of Signals and Systems
Digital Signal Processing

For more details please let me know we will provide you.
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  #10  
Old February 2nd, 2015, 03:41 PM
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Default Re: ISRO entrance exam syllabus

Will you please provide the Mechanical Syllabus for ISRO Scientist entrance Exam ?
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  #11  
Old February 2nd, 2015, 03:42 PM
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Default Re: ISRO entrance exam syllabus

Here I am providing the Mechanical Syllabus for ISRO Scientist entrance Exam which you are looking for .

1. Engineering Mathematics

Linear Algebra: Algebra of matrices, system of linear equations, eigenvalues and eigenvectors.

Calculus: Taylor Series, Fourier Series, partial derivatives, total derivatives, definite and improper integrals, multiple integrals.

Vector Calculus: Gradient, divergence and curl, line and surface integrals, Green, Gauss and Stokes’ theorems.

Differential Equations: Linear ODE’s, first order non-linear ODE’s, initial and boundary value problems, Laplace transform, PDE’s-Laplace, wave and diffusion equations.

Numerical Methods: Solution of system of linear equations, interpolation, numerical integration, Newton-Raphson method, Runge-Kutta method.

Probability & Statistics: Gaussian, Weibul distribution and their properties, method of least squares, regression analysis, analysis of variance.

2. applied mechanics and design

Engineering Mechanics: Equivalent force systems, free-body concepts, equations of equilibrium, trusses and frames, virtual work and minimum potential energy. Kinematics and dynamics of particles and rigid bodies, impulse and momentum (linear and angular), energy methods, central force motion.

Strength of Materials: Stress and strain, stress-strain relationship and elastic constants, Mohr’s circle for plane stress and plane strain, shear force and bending moment diagrams, bending and shear stresses, deflection of beams torsion of circular shafts, thin and thick cylinders, 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, planar cams and followers, gear tooth profiles, kinematics and design of gears, governors and flywheels, balancing of reciprocating and rotating masses.Vibrations: Free and forced vibration of single degree freedom systems, effect of damping, vibration isolation, resonance, critical speed of rotors.

Design of Machine Elements: Design for static and dynamic loading, failure theories, fatigue strength; design of bolted, riveted and welded joints; design of shafts and keys; design of spur gears, rolling and sliding contact bearings; brakes and clutches; belt, ropes and chain drives.

3. Fluid Mechanics And Thermal Sciences

Fluid Mechanics: Fluid properties, fluid statics, manometry, buoyancy; Control-volume analysis of mass, momentum and energy, fluid acceleration; Differential equation 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; 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; Carnot, Rankine, Otto, Diesel, Brayton and Vapour compression cycles.

Power Plant Engineering: Steam generators; Steam power cycles; Steam turbines; impulse and reaction principles, velocity diagrams, pressure and velocity compounding; Reheating and reheat factor; Condensers and feed heaters.I.C. Engines: Requirements and suitability of fuels in IC engines, fuel ratings, fuel-air mixture requirements; Normal combustion in SI and CI engines; Engine performance calculations.

Refrigeration and air-conditioning: Refrigerant compressors, expansion devices, condensers and evaporators; Properties of moist air, psychrometric chart, basic psychometric processes.

Turbomachinery: Components of gas turbines; Compression processes, Centrifugal and Axial flow compressors; Axial flow turbines, elementary theory; Hydraulic turbines; Euler-Turbine equation; Specific speed, Pelton-wheel, Francis and Kaplan turbines; Centrifugal pumps.

4. Manufacturing And Industrial Engineering

Engineering Materials: Structure and properties of engineering materials and their applications, heat treatment.

Metal Casting: Casting processes (expendable and non-expendable) -pattern, moulds and cores, Heating and pouring, Solidification and cooling, Gating Design, Design considerations, defects.

Forming Processes: Stress-strain diagrams for ductile and brittle material, Plastic deformation and yield criteria, Fundamentals of hot and cold working processes, Bulk metal forming processes (forging, rolling extrusion, drawing), Sheet metal working processes (punching, blanking, bending, deep drawing, coining, spinning, Load estimation using homogeneous deformation methods, Defects). Processing of Powder metals- Atomization, compaction, sintering, secondary and finishing operations. Forming and shaping of Plastics- Extrusion, Injection Molding.

Joining Processes: Physics of welding, Fusion and non-fusion welding processes, brazing and soldering, Adhesive bonding, Design considerations in welding, Weld quality defects.Machining and Machine Tool

Operations: Mechanics of machining, Single and multi-point cutting tools, Tool geometry and materials, Tool life and wear, cutting fluids, Machinability, Economics of machining, non-traditional machining processes.

Metrology and Inspection: Limits, fits and tolerances, linear and angular measurements, comparators, gauge design, interferometry, Form and finish measurement, measurement of screw threads, Alignment and testing methods.

Tool Engineering: Principles of work holding, Design of jigs and fixtures. Computer Integrated Manufacturing: Basic concepts of CAD, CAM and their integration tools.

Manufacturing Analysis: Part-print analysis, tolerance analysis in manufacturing and assembly, time and cost analysis.

Work-Study: Method study, work measurement time study, work sampling, job evaluation, merit rating.

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