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Pdf Free Gate Syllabus Ece 2013: What You Need to Know Before Appearing for GATE Exam

Download Pdf Free Gate Syllabus Ece 2013: Everything You Need to Know

If you are an electronics and communication engineering (ECE) student who is planning to appear for the Graduate Aptitude Test in Engineering (GATE) exam, you might be wondering how to prepare for it. One of the most important steps in your preparation is to know the syllabus of the exam. The syllabus tells you what topics you need to study and what weightage they have in the exam. It also helps you to plan your study schedule and focus on your strengths and weaknesses.

Download Pdf Free Gate Syllabus Ece 2013

In this article, we will tell you everything you need to know about how to download pdf free gate syllabus ece 2013. This is the latest syllabus that was released by the Indian Institute of Technology (IIT) Bombay, which conducted the GATE exam in 2013. We will also give you an overview of what GATE is and why it is important for ECE students. Finally, we will give you a summary of the main topics covered in the pdf free gate syllabus ece 2013.

What is GATE and why is it important for ECE students?

GATE: An overview

GATE stands for Graduate Aptitude Test in Engineering. It is a national-level entrance exam that tests the knowledge and skills of engineering graduates in various disciplines. It is conducted every year by one of the IITs or the Indian Institute of Science (IISc) on behalf of the National Coordination Board (NCB). The exam consists of a single paper of three hours duration, which contains 65 questions carrying a total of 100 marks. The questions are of two types: multiple-choice questions (MCQs) and numerical answer type (NAT) questions. The MCQs have four options, out of which only one is correct. The NAT questions require the candidates to enter a numerical answer using a virtual keyboard.

GATE is one of the most prestigious and competitive exams in India. It is used for admission to postgraduate programs such as M.E., M.Tech., and Ph.D. in various engineering colleges and institutes across India. It is also used for recruitment to various public sector undertakings (PSUs) such as BHEL, NTPC, ONGC, etc. Some private companies also consider GATE scores for hiring engineers.

Benefits of qualifying GATE for ECE students

There are many benefits of qualifying GATE for ECE students. Some of them are:

  • You can pursue higher studies in reputed engineering colleges and institutes such as IITs, IISc, NITs, etc. You can also apply for scholarships and fellowships offered by the government and other agencies.

  • You can get a job in PSUs that offer attractive salaries and perks. You can also get a preference in some private companies that value GATE scores.

  • You can enhance your knowledge and skills in the field of electronics and communication engineering. You can also learn from the best faculty and peers in the country.

  • You can boost your confidence and self-esteem by clearing one of the toughest exams in India. You can also improve your problem-solving and analytical abilities.

How to download pdf free gate syllabus ece 2013?

Steps to download pdf free gate syllabus ece 2013 from the official website

The easiest way to download pdf free gate syllabus ece 2013 is to visit the official website of GATE 2013, which is Here are the steps to follow:

  • On the homepage, click on the link "Syllabus" under the section "Information Brochure".

  • You will be redirected to a page where you can see the syllabus for all the papers of GATE 2013. Scroll down to find the paper code "EC" for Electronics and Communication Engineering.

  • Click on the link "Download" next to the paper code "EC". A pdf file will open in a new tab or window.

  • Save the pdf file on your device or print it out for your reference.

Alternative sources to download pdf free gate syllabus ece 2013

If you face any difficulty in accessing the official website of GATE 2013, you can also download pdf free gate syllabus ece 2013 from some alternative sources. Some of them are:

However, you should always cross-check the syllabus from these sources with the official website of GATE 2013 to ensure that there are no changes or errors.

What are the main topics covered in the pdf free gate syllabus ece 2013?

General Aptitude

The general aptitude section is common for all the papers of GATE 2013. It carries 15 marks out of 100 and tests the verbal and numerical ability of the candidates. The topics covered in this section are:

Verbal Ability

  • English grammar

  • Sentence completion

  • Verbal analogies

  • Word groups

  • Instructions

  • Critical reasoning

  • Verbal deduction

Numerical Ability

  • Numerical computation

  • Numerical estimation

  • Numerical reasoning

  • Data interpretation

Engineering Mathematics

The engineering mathematics section is also common for all the papers of GATE 2013. It carries 15 marks out of 100 and tests the mathematical knowledge and skills of the candidates. The topics covered in this section are:

Linear Algebra

  • Matrix algebra

  • Systems of linear equations

  • Eigenvalues and eigenvectors


  • Limits, continuity, and differentiability

  • Mean value theorem

  • Taylor series expansion

Differential Equations

  • First order linear and nonlinear differential equations

  • 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-Riemann equations

  • Cauchy's integral theorem and integral formula

  • Taylor and Laurent series

  • Residue theorem

  • Application of residue theorem for evaluation of real integrals

  • Contour integration

Probability and Statistics

  • Definitions of probability and sampling theorems

  • Conditional probability

  • Mean, median, mode and standard deviation

  • Random variables

  • Poisson, normal and binomial distributions

  • Correlation and regression analysis

Numerical Methods

  • Solution of nonlinear equations using bisection, Newton-Raphson and secant methods

  • Numerical integration using trapezoidal and Simpson's rules

  • Numerical solutions of linear systems of equations using Gauss elimination and Gauss-Seidel methods

  • Numerical solutions of ordinary differential equations using Euler's method, Runge-Kutta methods and predictor-corrector methods

Transform Theory

  • Fourier transform

  • Laplace transform

  • Z-transform

Electronics and Communication Engineering

The electronics and communication engineering section is specific for the paper code "EC" of GATE 2013. It carries 70 marks out of 100 and tests the core knowledge and skills of the candidates in this discipline. The topics covered in this section are:


  • 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, 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

bias stability, operating point, small-signal analysis, frequency response; BJT and MOSFET amplifiers: multi-stage, differential, feedback, power and operational; simple op-amp circuits; active filters; sinusoidal oscillators: criterion for oscillation; single-transistor and op-amp configurations; function generators and wave-shaping circuits; power supplies: ripple removal and regulation.

Digital Circuits

  • Boolean algebra; minimization of Boolean functions; logic gates; digital IC families (DTL, TTL, ECL, MOS, CMOS); combinational 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 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

elements of proportional-integral-derivative (PID) control; state variable representation and solution of state equation of LTI control systems.


  • 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; 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.


  • 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; antennas: dipole antennas; antenna arrays; radiation pattern; reciprocity theorem.


In this article, we have given you a comprehensive guide on how to download pdf free gate syllabus ece 2013. We have also explained what GATE is and why it is important for ECE students. Moreover, we have summarized the main topics covered in the pdf free gate syllabus ece 2013. We hope that this article has helped you to prepare well for the GATE exam and achieve your goals.


Here are some frequently asked questions about pdf free gate syllabus ece 2013:

  • Q: When was GATE 2013 conducted?A: GATE 2013 was conducted on 20th January 2013 (offline mode) and 10th February 2013 (online mode).

  • Q: How many candidates appeared for GATE 2013?A: According to the official statistics, a total of 12,00,728 candidates registered for GATE 2013 and 9,84,855 candidates appeared for the exam.

  • Q: What was the cut-off mark for ECE paper in GATE 2013?A: The cut-off mark for ECE paper in GATE 2013 was 25.00 out of 100 for general category candidates, 22.50 for OBC candidates and 16.67 for SC/ST/PwD candidates.

  • Q: How can I improve my preparation for GATE?A: You can improve your preparation for GATE by following some tips such as:

  • Plan your study schedule according to the syllabus and your strengths and weaknesses.

  • Revise the concepts and formulas regularly.

  • Solve as many mock tests and previous year papers as possible.

  • Analyze your performance and identify your mistakes and areas of improvement.

  • Clear your doubts from reliable sources or experts.

  • Stay motivated and confident.


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