GATE EE

India's Most Comprehensive and Rigorous GATE Online Prep Program

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Sample Content

Engineering Mathematics
Electrical and Electronic Measurements
Analog Electronics
Electromagnetic Fields
Control System
Digital Electronics
Power System
Signal System
Electrical Circuits

Enrollment Options


Self Learning Package 2019
₹ 19999 ₹ 5499
  • Valid till 1st March 2019
  • HD videos of 350+ hours covering entire syllabus
  • Frequent Practice & Mock Tests
  • 2 All India Full Length Tests
  • Available online
  • Multiple Professors
  • Language : English
  • No further Updates
Extensive Package 2019
₹ 24900
  • Valid till 1st March 2019
  • Mentorship till GATE 2019 exam
  • HD videos of 200+ hours covering entire syllabus
  • Available on Website & Pendrive
  • Study Plan & Study Circle
  • Live Video Classes for Doubt Solving
  • Frequent Practice & Mock Tests
  • 5 All India Full Length Tests
  • Solutions with Explanations for Revision & Practice
  • Support for interviews
  • Language : English
Self Learning Package 2020
₹ 24999 ₹ 19999
  • Valid till 1st March 2020
  • HD videos of 350+ hours covering entire syllabus
  • Frequent Practice & Mock Tests
  • 2 All India Full Length Tests
  • Available online
  • Doubt solving Available
  • Multiple Professors
  • Language : English
  • No further Updates
Extensive Package 2020
₹ 34900
  • Valid till 1st March 2020
  • Mentorship till GATE 2020 exam
  • HD videos of 200+ hours covering entire syllabus
  • Available on Website & Pendrive
  • Study Plan & Study Circle
  • Live Video Classes for Doubt Solving
  • Frequent Practice & Mock Tests
  • 5 All India Full Length Tests
  • Solutions with Explanations for Revision & Practice
  • Support for interviews
  • Language : English

Our Instructors


Prof Shruti Ojha
7+ years of Experience in teaching GATE subjects
Measurement
Kanakaiah Naidu has an M.Tech from reputed JNTU, Hyderabad and a high success record in teaching students for GATE exam.
Prof. Kanakaiah Naidu
5+ Years of Teaching Experience
Signal System
She has spent over seven years teaching students of various age groups, levels, streams and backgrounds. After a short stint of working with higher secondary students, she turned her attention to teaching the undergraduate and postgraduate students of Jaipur and Delhi. However, for the last four years, she is devoted to teaching the students of IAS, Bank PO and SSC. Her teaching strategy is planned in such a way that it not only makes the learning easy but also minimises the time and effort required to solve the question paper of competitive exams. She earned her M.A. from Delhi University (Miranda House) and M.Ed from Bansthali Vidyapeeth.
Prof. Rashmi Agrawal
7+ Years of Teaching Experience
Grammar
Vijay Kumar has specialized in applied mathematics and has worked as a faculty in the same domain. He believes that students must put in time to study basic concepts rather than focus on solving a large number of problems blindly. He has inculcated this philosophy in his teaching as well.
Dr. Vijay Kumar
14+ Years of Experience in Teaching Engineering Mathematics
Engineering Mathematics

Curriculum


Analog and Digital Electronics
Characteristics of diodes, BJT, MOSFET; Simple diode circuits: clipping, clamping, rectifiers; 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, Demultiplexer, Schmitt trigger, Sample and hold circuits, A/D and D/A converters, 8085Microprocessor: Architecture, Programming and Interfacing.
Electrical and Electronic Measurements
Bridges and Potentiometers, Measurement of voltage, current, power, energy and power factor; Instrument transformers, Digital voltmeters and multimeters, Phase, Time and Frequency measurement; Oscilloscopes, Error analysis.
Control Systems
Mathematical modeling and representation of systems, Feedback principle, transfer function, Block diagrams and Signal flow graphs, Transient and Steady‐state analysis of linear time invariant systems, Routh-Hurwitz and Nyquist criteria, Bode plots, Root loci, Stability analysis, Lag, Lead and Lead‐Lag compensators; P, PI and PID controllers; State space model, State transition matrix
Power Systems and Power Electronics
Power generation concepts, ac and dc transmission concepts, Models and performance of transmission lines and cables, Series and shunt compensation, Electric field distribution and insulators, Distribution systems, Per‐unit quantities, Bus admittance matrix, GaussSeidel and Newton-Raphson load flow methods, Voltage and Frequency control, Power factor correction, Symmetrical components, Symmetrical and unsymmetrical fault analysis, Principles of over‐current, differential and distance protection; Circuit breakers, System stability concepts, Equal area criterion.Characteristics of semiconductor power devices: Diode, Thyristor, Triac, GTO, MOSFET, IGBT; DC to DC conversion: Buck, Boost and Buck-Boost converters; Single and three phase configuration of uncontrolled rectifiers, Line commutated thyristor based converters, Bidirectional ac to dc voltage source converters, Issues of line current harmonics, Power factor, Distortion factor of ac to dc converters, Single phase and three phase inverters, Sinusoidal pulse width modulation.
Electrical Machines
Single phase transformer: equivalent circuit, phasor diagram, open circuit and short circuit tests, regulation and efficiency; Three phase transformers: connections, parallel operation; Auto‐transformer, Electromechanical energy conversion principles, DC machines: separately excited, series and shunt, motoring and generating mode of operation and their characteristics, starting and speed control of dc motors; Three phase induction motors: principle of operation, types, performance, torque-speed characteristics, no-load and blocked rotor tests, equivalent circuit, starting and speed control; Operating principle of single phase induction motors; Synchronous machines: cylindrical and salient pole machines, performance, regulation and parallel operation of generators, starting of synchronous motor, characteristics; Types of losses and efficiency calculations of electric machines.
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, Applications of Fourier Transform, Laplace Transform and z-Transform.
Electromagnetic Fields
Coulomb's Law, Electric Field Intensity, Electric Flux Density, Gauss's Law, Divergence, Electric field and potential due to point, line, plane and spherical charge distributions, Effect of dielectric medium, Capacitance of simple configurations, Biot‐Savart’s law, Ampere’s law, Curl, Faraday’s law, Lorentz force, Inductance, Magnetomotive force, Reluctance, Magnetic circuits,Self and Mutual inductance of simple configurations.
Electric Circuits
Network graph, KCL, KVL, Node and Mesh analysis, Transient response of dc and ac networks, Sinusoidal steady‐state analysis, Resonance, Passive filters, Ideal current and voltage sources, Thevenin’s theorem, Norton’s theorem, Superposition theorem, Maximum power transfer theorem, Two‐port networks, Three phase circuits, Power and power factor in ac circuits.
Engineering Mathematics

Linear Algebra: Matrix Algebra, Systems of linear equations, Eigenvalues, Eigenvectors.

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 integral, Surface integral, Volume integral, Stokes’s theorem, Gauss’s theorem, Green’s theorem.

Differential equations: First order equations (linear and nonlinear), Higher order linear differential equations with constant coefficients, Method of variation of parameters, Cauchy’s equation, Euler’s equation, Initial and boundary value problems, Partial Differential Equations, Method of separation of variables.

Complex variables: Analytic functions, Cauchy’s integral theorem, Cauchy’s integral formula, Taylor series, Laurent series, Residue theorem, Solution integrals.

Probability and Statistics: Sampling theorems, Conditional probability, Mean, Median, Mode, Standard Deviation, Random variables, Discrete and Continuous distributions, Poisson distribution, Normal distribution, Binomial distribution, Correlation analysis, Regression analysis. Numerical Methods: Solutions of nonlinear algebraic equations, Single and Multi‐step methods for differential equations.

Transform Theory: Fourier Transform, Laplace Transform, z‐Transform.

Success Stories


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FAQs


Is the programme fees mentioned in the enrollment option inclusive of GST?
No, 18% GST will be applicable in addition to the programme fees mentioned in the enrollment option.
Can the lectures be viewed on a mobile device?
Only the lectures which are available online can be viewed on a mobile device by using Chrome browser.
How many times can I watch a lecture?
A lecture at SuperProfs can be watched any number of times till the end of the subscription
How do my doubts got addressed?
At SuperProfs you get 24 x 7 access to "Doubt Forum". You can post your doubt and the same shall be handled by the professor.
How To Enroll for the Course?
You can enroll for this course by making an online payment. After payment, you shall get a call from our course management team for your orientation on how to get best results from this unique course.