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GATE Electrical Syllabus 2027 & Exam Pattern
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2. Question Bank - 1200 Questions with Answer.
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GATE Electrical Engineering
Combo - 2 (English)
1. Online Mock Test Series in English = 10 Tests.
2. Question Bank - 1200 Questions with Answer.
3. Printed Material 10 Mock Test Papers with OMR Sheet.
4. EBook of GATE Electrical Engineering (1000 MCQ) in PDF Format in English
2. Question Bank - 1200 Questions with Answer.
3. Printed Material 10 Mock Test Papers with OMR Sheet.
4. EBook of GATE Electrical Engineering (1000 MCQ) in PDF Format in English
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GATE Electrical Syllabus 2027 & Exam Pattern
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GATE Electrical Engineer Syllabus 2027, Exam Pattern, Exam Date 2027
Detail Information about GATE has published notification 2027 for the Notification of Electrical Engineering. Those Candidates who are Interested to the following vacancy and completed all Eligibility Criteria can read the Notification & Apply Online. In this page we provide the Complete Syllabus of this Notification with Latest Update Exam Pattern and the Exam Date also.
βGATE 2027 Exam Highlights
| Examination Name | Graduate Aptitude Test in Engineering (GATE) |
| Commonly Known As | GATE |
| GATE 2027 organising Institute | IIT Guwahati |
| Administered By | Jointly by IISc Bangalore and Seven IITs |
| Purpose of Examination | Qualifying Examination for M.E./ M.Tech/ Ph.D admissions and PSU Recruitment |
| Application Mode | Online |
| Mode of Examination | Computer-Based Mode |
| Examination Duration | 180 Minutes (3 Hours) |
| Exam Date 2027 | 06th, 7th, 13th, 14th, 20th, 21st February 2027 |
| Frequency of Examination | Annual |
| Number of GATE Papers | 29 |
| Validity of GATE Score/Grade | 3 Years |
| Official website | gate2027.iitg.ac.in |
GATE Electrical Engineering Syllabus 2027
General Aptitude :
Verbal Aptitude
1. Basic English grammar
2. Tenses
3. Articles
4. Adjectives
5. Prepositions
6. Conjunctions
7. Verb-noun agreement and other parts of speech
8. Basic vocabulary
9. Words
10. Idioms
11. Phrases in context
12. Reading and comprehension
13. Narrative sequencing
Quantitative Aptitude
1. Data interpretation
2. Data graphs (bar graphs, pie charts, and other graphs representing data)
3. 2- and 3-dimensional plots
4. Maps
5. Tables
6. Numerical computation and estimation
7. Ratios
8. Percentages
9. Powers
10. Exponents and logarithms
11. Permutations and combinations
12. Series
13. Mensuration and geometry
14. Elementary statistics
15. Probability
Analytical Aptitude
1. Logic: deduction and induction
2. Analogy
3. Numerical relations and reasoning
Spatial Aptitude
1. Transformation of shapes
3. Translation
4. Rotation
5. Scaling
6. Mirroring
7. Assembling
8. Grouping
9. Paper folding
10. Cutting
11. Patterns in 2 and 3 dimensions
1. Basic English grammar
2. Tenses
3. Articles
4. Adjectives
5. Prepositions
6. Conjunctions
7. Verb-noun agreement and other parts of speech
8. Basic vocabulary
9. Words
10. Idioms
11. Phrases in context
12. Reading and comprehension
13. Narrative sequencing
Quantitative Aptitude
1. Data interpretation
2. Data graphs (bar graphs, pie charts, and other graphs representing data)
3. 2- and 3-dimensional plots
4. Maps
5. Tables
6. Numerical computation and estimation
7. Ratios
8. Percentages
9. Powers
10. Exponents and logarithms
11. Permutations and combinations
12. Series
13. Mensuration and geometry
14. Elementary statistics
15. Probability
Analytical Aptitude
1. Logic: deduction and induction
2. Analogy
3. Numerical relations and reasoning
Spatial Aptitude
1. Transformation of shapes
3. Translation
4. Rotation
5. Scaling
6. Mirroring
7. Assembling
8. Grouping
9. Paper folding
10. Cutting
11. Patterns in 2 and 3 dimensions
A. Engineering Mathematics :
Linear Algebra: Systems of linear equations, Matrix Algebra, Eigenvectors, Eigenvalues.
Calculus: Theorems of integral calculus, Multiple integrals, Mean value theorems, Evaluation of definite and improper integrals, Partial Derivatives, Maxima and minima, Fourier series, Line integral, Surface integral, Directional derivatives, Gauss’s theorem, Vector identities, Volume integral, Stoke's theorem, Green’s theorem.
Differential Equations: Euler’s equation, First order equations (linear and nonlinear), Method of variation of parameters, Cauchy’s equation, Higher order linear differential equations with constant coefficients, Method of separation of variables, Initial, and boundary value problems, Euler’s equation, Initial and boundary value problem, partial differential equations.
Complex variables: Cauchy’s integral theorem, Cauchy’s integral formula, Residue theorem, Analytic functions, Taylor series, Laurent series, 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.
Calculus: Theorems of integral calculus, Multiple integrals, Mean value theorems, Evaluation of definite and improper integrals, Partial Derivatives, Maxima and minima, Fourier series, Line integral, Surface integral, Directional derivatives, Gauss’s theorem, Vector identities, Volume integral, Stoke's theorem, Green’s theorem.
Differential Equations: Euler’s equation, First order equations (linear and nonlinear), Method of variation of parameters, Cauchy’s equation, Higher order linear differential equations with constant coefficients, Method of separation of variables, Initial, and boundary value problems, Euler’s equation, Initial and boundary value problem, partial differential equations.
Complex variables: Cauchy’s integral theorem, Cauchy’s integral formula, Residue theorem, Analytic functions, Taylor series, Laurent series, 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.
Electrical Engineering :
B. Electric Circuits
1. Network elements: ideal voltage and current sources, dependent sources, R, L, C, M elements;
2. Network solution methods: KCL, KVL, Node and Mesh analysis;
3. Network Theorems: Thevenin’s, Norton’s, Superposition and Maximum Power Transfer theorem; Transient response of dc and ac networks, sinusoidal steady-state analysis, resonance, two-port networks, balanced three-phase circuits, star-delta transformation, complex power and power factor in ac circuits.
C. Electromagnetic Fields
1. 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 the dielectric medium,
2. Capacitance of simple configurations, Biot-Savart's law, Ampere's law, Curl, Faraday's law, Lorentz force, Inductance,
3. Magnetomotive force, Reluctance, Magnetic circuits, Self and Mutual inductance of simple configurations.
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D. Signals and Systems
1. Representation of continuous and discrete-time signals, shifting and scaling properties, linear time-invariant and causal systems,
2. Fourier series representation of continuous and discrete-time periodic signals, sampling theorem, Applications of Fourier Transform for continuous and discrete-time signals,
3. Laplace Transform and Z transform. R.M.S. value, the average value the calculation for any general periodic waveform.
E. Electrical Machines
1. Single-Phase Transformer: equivalent circuit, phasor diagram, open circuit and short circuit tests, regulation and efficiency; Three-phase transformers: connections, vector groups, parallel operation; Auto-transformer,
2. Electromechanical energy conversion principles; DC machines: separately excited, series and shunt, motoring and generating mode of operation and their characteristics, speed control of dc motors;
3. Three-phase induction machines: the 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 and characteristics, regulation and parallel operation of generators, starting of synchronous motors; Types of losses and efficiency calculations of electric machines
F. Power Systems
1. Basic concepts of electrical power generation, ac and dc transmission concepts, Models and performance of transmission lines and cables, Economic Load Dispatch (with and without considering transmission losses), Series and shunt compensation, Electric field distribution and insulators,
2. Distribution systems, Perβunit quantities, Bus admittance matrix, Gauss-Seidel and Newton-Raphson load flow methods,
3. Voltage and Frequency Control, Power factor correction, Symmetrical components, Symmetrical and unsymmetrical fault analysis, Principles of overcurrent, differential, directional and distance protection;
4. Circuit breakers, System stability concepts, Equal area criterion.
G. Control Systems
1. Mathematical modelling and representation of systems, Feedback principle, transfer function, Block diagrams and signal flow graphs, Transient and Steadyβstate analysis of linear time-invariant systems.
2. Stability analysis using Routh-Hurwitz and Nyquist criteria, Bode plots, root loci, Lag, Lead and LeadβLag compensators; P, PI and PID controllers; State-space model, Solution of state equations of LTI systems.
H. Electrical and Electronic Measurements
1. Bridges and Potentiometers, Measurement of voltage, current, power, energy and power factor; Instrument transformers,
2. Digital voltmeters and multimeters, Phase, Time and Frequency measurement; Oscilloscopes, Error analysis.
I. Analog and Digital Electronics
1. Simple diode circuits: clipping, clamping, rectifiers; Amplifiers: biasing, equivalent circuit and frequency response; oscillators and feedback amplifiers; operational amplifiers: characteristics and applications; single-stage active filters,
2. Active Filters: Sallen Key, Butterwoth, VCOs and timers, combinatorial and sequential logic circuits, multiplexers, demultiplexers, Schmitt triggers, sample and hold circuits, A/D and D/A converters.
J. Power Electronics
1. Static V-I characteristics and firing/gating circuits for Thyristor, MOSFET, IGBT; DC to DC conversion: Buck, Boost and Buck-Boost Converters; Single and three-phase configuration of uncontrolled rectifiers; Voltage and Current commutated Thyristor based converters;
2. Bidirectional ac to dc voltage source converters; Magnitude and Phase of line current harmonics for uncontrolled and thyristor-based converters; Power factor and Distortion Factor of ac to dc converters;
3. Single-phase and three-phase voltage and current source inverters, sinusoidal pulse width modulation.
1. Network elements: ideal voltage and current sources, dependent sources, R, L, C, M elements;
2. Network solution methods: KCL, KVL, Node and Mesh analysis;
3. Network Theorems: Thevenin’s, Norton’s, Superposition and Maximum Power Transfer theorem; Transient response of dc and ac networks, sinusoidal steady-state analysis, resonance, two-port networks, balanced three-phase circuits, star-delta transformation, complex power and power factor in ac circuits.
C. Electromagnetic Fields
1. 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 the dielectric medium,
2. Capacitance of simple configurations, Biot-Savart's law, Ampere's law, Curl, Faraday's law, Lorentz force, Inductance,
3. Magnetomotive force, Reluctance, Magnetic circuits, Self and Mutual inductance of simple configurations.
Know the previous year GATE EE Cut off here in detail!
D. Signals and Systems
1. Representation of continuous and discrete-time signals, shifting and scaling properties, linear time-invariant and causal systems,
2. Fourier series representation of continuous and discrete-time periodic signals, sampling theorem, Applications of Fourier Transform for continuous and discrete-time signals,
3. Laplace Transform and Z transform. R.M.S. value, the average value the calculation for any general periodic waveform.
E. Electrical Machines
1. Single-Phase Transformer: equivalent circuit, phasor diagram, open circuit and short circuit tests, regulation and efficiency; Three-phase transformers: connections, vector groups, parallel operation; Auto-transformer,
2. Electromechanical energy conversion principles; DC machines: separately excited, series and shunt, motoring and generating mode of operation and their characteristics, speed control of dc motors;
3. Three-phase induction machines: the 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 and characteristics, regulation and parallel operation of generators, starting of synchronous motors; Types of losses and efficiency calculations of electric machines
F. Power Systems
1. Basic concepts of electrical power generation, ac and dc transmission concepts, Models and performance of transmission lines and cables, Economic Load Dispatch (with and without considering transmission losses), Series and shunt compensation, Electric field distribution and insulators,
2. Distribution systems, Perβunit quantities, Bus admittance matrix, Gauss-Seidel and Newton-Raphson load flow methods,
3. Voltage and Frequency Control, Power factor correction, Symmetrical components, Symmetrical and unsymmetrical fault analysis, Principles of overcurrent, differential, directional and distance protection;
4. Circuit breakers, System stability concepts, Equal area criterion.
G. Control Systems
1. Mathematical modelling and representation of systems, Feedback principle, transfer function, Block diagrams and signal flow graphs, Transient and Steadyβstate analysis of linear time-invariant systems.
2. Stability analysis using Routh-Hurwitz and Nyquist criteria, Bode plots, root loci, Lag, Lead and LeadβLag compensators; P, PI and PID controllers; State-space model, Solution of state equations of LTI systems.
H. Electrical and Electronic Measurements
1. Bridges and Potentiometers, Measurement of voltage, current, power, energy and power factor; Instrument transformers,
2. Digital voltmeters and multimeters, Phase, Time and Frequency measurement; Oscilloscopes, Error analysis.
I. Analog and Digital Electronics
1. Simple diode circuits: clipping, clamping, rectifiers; Amplifiers: biasing, equivalent circuit and frequency response; oscillators and feedback amplifiers; operational amplifiers: characteristics and applications; single-stage active filters,
2. Active Filters: Sallen Key, Butterwoth, VCOs and timers, combinatorial and sequential logic circuits, multiplexers, demultiplexers, Schmitt triggers, sample and hold circuits, A/D and D/A converters.
J. Power Electronics
1. Static V-I characteristics and firing/gating circuits for Thyristor, MOSFET, IGBT; DC to DC conversion: Buck, Boost and Buck-Boost Converters; Single and three-phase configuration of uncontrolled rectifiers; Voltage and Current commutated Thyristor based converters;
2. Bidirectional ac to dc voltage source converters; Magnitude and Phase of line current harmonics for uncontrolled and thyristor-based converters; Power factor and Distortion Factor of ac to dc converters;
3. Single-phase and three-phase voltage and current source inverters, sinusoidal pulse width modulation.
GATE Electrical Engineering Exam Pattern 2027
GATE Exam Pattern 2027 : Highlights
| GATE Examination Mode | Computer-Based Test (CBT) |
| GATE Exam Language | English |
| GATE Duration | 3 Hours (180 Minutes) |
| GATE Sectional Time Limit | None |
| GATE Total Marks | 100 |
| GATE Total Number of questions | 65 |
| GATE Type of Questions | Multiple Choice Questions (MCQ)
Multiple Select Questions (MSQ);
Numerical Answer Type (NAT) Questions
|
| GATE Number of Sections | Two/ Three (depending on the paper) |
| GATE Section-wise Number of Questions |
General Aptitude- 10 questions,
Core Discipline- 55 questions
|
| GATE Section-wise Weightage |
General Aptitude- 15 marks,
Core Discipline- 85 marks
|
| GATE Marking Scheme | 1 or 2 marks for each correct answer |
| GATE Negative Marking |
For 1 mark MCQ, 1/3 mark will be deducted for a wrong answer;
For 2-mark MCQ, 2/3 mark will be deducted for a wrong answer;
No negative marking for MSQs and NATs
|
Duration : 180 Minutes
Negative Mark :
For 1 mark MCQ, 1/3 mark will be deducted for a wrong answer;
For 2-mark MCQ, 2/3 mark will be deducted for a wrong answer;
No negative marking for MSQs and NATs
| S.No | Subject | No.of Question | Marks |
| 1 | General Aptitude | 10 | 15 |
| 2 | Engineering Mathematics | 55 | 13 |
| Electrical Engineering | 72 | ||
| Total | 65 | 100 |
| Subject | No.of Question | Marks per Question | Marks |
Engineering Mathematics & Electrical Engineering |
25 | 1 | 25 |
| 30 | 2 | 60 | |
| Total | 55 | 85 |
GATE Exam Date 2026 : 06th, 7th, 13th, 14th, 20th, 21st February 2027
Starting Date of Application Form : 27th August 2026
Last Date of Application Form : 27th September 2026
FAQs
GATE Electrical Engineering 2027 Exam Syllabus Frequently Asked Questions (FAQ's)
Here at Toppersexam.com , you can practice a complete set of Imporatnt Questions (MCQ) along with a Free GATE Electrical Engineering MCQ designed by our expert faculty.
In this article Page, we have provided the required syllabus of the GATE Electrical Engineering exam.
Being familiar with GATE Electrical Engineering Exam Pattern will help you understand the types of questions asked, difficulty level of the exam and important topics that require your keen attention. It will also acquaint you with the marking scheme and time allotted to each Topics.
GATE Electrical Engineering syllabus pdf download option is available here which will help you to get the PDF saved in your device that you can access anytime. It consists of a complete syllabus of GATE Electrical Engineering which you can refer to while preparing for the exams.
GATE Electrical Engineering exam is not tough but it depends on your preparation. The candidates find the Subject not challenging. The dedicated preparation in the right direction will undoubtedly take you towards the goal.
The candidates must be well versed and acquainted with the syllabus and the exam pattern. Select the areas where improvement is required and schedule your preparation accordingly. To ace this exam, the applicants ought to maintain speed with high accuracy. Practicing previous years question papers will help you understand the exam pattern and the level of difficulty of the exam. You need to hone your strengths and improve upon your weaknesses. Toppersexam.com will aid you through the preparation and drive you to success. At Toppersexam.com, you can practice a complete set of test series along with a free GATE Electrical Engineering mock test designed by our expert faculty.
The syllabus of GATE Electrical Engineering Exam includes all topics that are important for the exam and are necessary for thorough preparation. Toppersexam provides a complete and updated syllabus with a detailed topic-wise breakdown.
You can download the complete GATE Electrical Engineering Exam syllabus PDF from toppersexam.com. The PDF is available free and includes a detailed list of topics, section-wise subjects, and weightage for better exam preparation.
Yes, GATE Electrical Engineering Exam has a topic-wise syllabus that includes all relevant subtopics. Toppersexam provides the detailed breakdown, helping candidates focus on high-weightage areas and avoid missing important sections.
Toppersexam ensures that the GATE Electrical Engineering syllabus is updated for 2026. The latest syllabus reflects current exam trends, question patterns, and updated topics as per official notifications.
The GATE Electrical Engineering Exam pattern includes details like the number of sections, total questions, marks distribution, and exam duration. Toppersexam provides a comprehensive guide on exam format, marking scheme, and question types.
Yes, the majority of questions in GATE Electrical Engineering Exam are MCQs. Toppersexam provides practice MCQs with answers to help candidates understand the question pattern and improve accuracy.
Yes, questions are divided section-wise. Toppersexam provides a clear guide on how many questions are asked per section and their difficulty level for effective preparation.
Yes, Toppersexam offers online mock tests that strictly follow the GATE Electrical Engineering Exam pattern. These mocks help candidates practice time management and get real-exam experience.
Yes, exam patterns can change over time. Toppersexam provides updated information on the latest exam pattern, question types, and section-wise changes.
Understanding the exam pattern is crucial for time management, question prioritization, and strategy planning. Toppersexam guides candidates on how to use the pattern effectively to maximize scores.
Start by dividing the syllabus into sections and prioritizing high-weightage topics. Toppersexam provides a preparation strategy, along with topic-wise tips and sample questions to make syllabus analysis easier.
Yes, focusing on high-weightage topics improves efficiency. Toppersexam highlights important topics, helping candidates prioritize sections for better performance.
Toppersexam provides a free downloadable PDF that includes both the syllabus and detailed exam pattern. This helps candidates study offline and revise efficiently.