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GATE 2025 EE Preparation Strategy, Effective Tips and Tricks

Discover the effective GATE 2025 EE Preparation Strategy in this page. Also Explore the Important Subjects and study plan for GATE EE exam.
authorImageRiya Sharma26 Nov, 2024
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GATE 2025 EE Preparation

GATE 2025 EE Preparation: Candidates aspiring to ace the forthcoming GATE 2025 Electrical Engineering examination must have a solid preparation plan that includes effective strategies and approaches. IIT Roorkee will conduct the GATE 2025 exam for the Electrical Engineering branch will be hosted on 1, 2, 15, and 16 February 2025.

In order to grasp the GATE EE Syllabus candidates must focus on important subjects such as Engineering Mathematics, Electric Circuits, Electromagnetic Fields, Signals and Systems, Power Systems, and other disciplines. Don't take any subject lightly and avoid leaving any topics to secure the highest score.

Aspiring candidates for the GATE Electrical Engineering Exam 2025 should start studying early to stay ahead in the crowd of lakhs of aspirants. With tough competition, less time, and a large syllabus to cover, candidates must follow the proper and strategic preparation method to pass the exam. To assist applicants in their preparation. Explore the well-structured study plan with the effective GATE 2025 EE Preparation tips in this article.

How to Prepare for the GATE 2025 EE?

The GATE 2025 Preparation consists of several stages that students must complete in order to be well-prepared for the upcoming examination. The GATE 2025 Electrical Engineering Preparation Tips are listed below in chronological sequence.

  • Learn how to use the marking system and the syllabus.
  • Find engineering mathematics textbooks and study materials.
  • Improve your time management abilities for more productive studying.
  • Prepare by taking online practice examinations and solving sample papers.
  • Take notes to help you remember and revise essential concepts.

GATE 2025 Preparation Strategy for Electrical Engineering

Indian Institute of Technology Roorkee will administer the GATE 2025 examination for 30 different branches including EE. The GATE 2025 exam is scheduled to take place on 1, 2, 15 & 16 February 2025. To prepare for the GATE 2025 exam, candidates can create a study plan and timetable. Aspirants can examine numerous books and study materials, such as reference books and previous year GATE question papers.

Participating in coaching classes or enrolling in online courses can also be beneficial. Candidates should confirm that they meet the GATE 2025 eligibility criteria, which include a minimum educational qualification and an age limit, before beginning preparation.

We have provided some preparation tips for the GATE 2025 EE Exam. Although preparation strategies differ from one candidate to the next, the following tips will assist candidates in developing a better study schedule.

Understand the examination pattern and Syllabus- Before beginning their study, candidates must thoroughly review the GATE Exam Pattern and Syllabus to become aware of the format of the question paper. Refer to the table below to understand the GATE EE Exam Pattern along with the number of questions and allocation of marks:

GATE EE Exam Pattern 2025
Discipline Subject Number of Questions Marks
Electrical Engineering (EE) Engineering Mathematics 10 13
General Aptitude 10 15
Electrical Engineering Subject 45 72
Total 65 100

Time Management- Once you've comprehended the syllabus, make a plan to finish it all before the deadline. A timetable must be followed meticulously because simply creating one will not assist.

Important subjects- Candidates are suggested to review the important subjects for the GATE 2025 EE paper. Candidates should prioritize these topics because they carry the most weightage in the exam. Candidates must, however, complete the whole syllabus.

Revision- Revision is important, thus candidates should give enough time in their study plans for it. Because the material is so extensive, applicants must constantly revise what they learn.

Question papers and mock tests- The authorities provide official GATE 2025 question papers on the official website; applicants should practice these question papers to have an understanding of the exam.

Similarly, applicants must practice GATE mock exams 2025 to get a feel for the exam and improve their speed. These mock examinations are based on the actual exam pattern, and students can assess their performance after taking these mock tests.

GATE 2025 EE Preparation Study Plan

The amount of time each applicant may devote to their GATE Preparation 2025 will vary as well because everybody has a unique study span and retention capacity. However, it is recommended that applicants devote at least the amount of hours listed below to each activity/topic preparation.

Day 1-2 hours 2 hours 1 hour
Monday Engineering Mathematics Core Discipline Subjects Numerical Ability
Tuesday Core Discipline Subjects Core Discipline Subjects Verbal Ability
Wednesday Engineering Mathematics Core Discipline Subjects Core Discipline Subjects (Pick a Relatively Easy Topic)
Thursday Engineering Mathematics Core Discipline Subjects Numerical Ability
Friday Core Discipline Subjects (Pick a Relatively Easy Topic) Verbal Ability Numerical Ability
Saturday Take a Full-length Mock (3 Hours)
Sunday Mock Analysis( 2-3 Hours) and retaking the same mock (3 Hours)

GATE 2025 EE Preparation Tips

Here are some preparation tips to excel in the GATE 2025 EE Exam with the highest score:

Stick to what you've read: I f you've completed a significant chunk of the course, attempt to ignore any new topics for the time being. Exceptions can be made if the themes are significant, but remembering a lot of last-minute material can hinder your revision.

Mock tests are required: Every day, complete a full mock test and analyze it. Determine your strengths and weaknesses and concentrate on improving them.

Time management is one of the most crucial factors in achieving success in such competitive exams; taking mock tests on a regular basis will result in improved speed and accuracy.

Notes and Formulas: Avoid relying on too many resources; reading from various sources can lead to confusion and stress. Stick to your highlights and notes. Examine the main formulas every day to keep them ready for use.

Numerical Value Based Questions: Candidates should attempt numerical value-based questions during the exam because there is no negative marking for them.

Maintain a healthy lifestyle: Most candidates disregard maintaining a good diet and getting enough sleep, although they are essential for maintaining a high level of focus throughout the exam and cannot be accomplished in a single day. Candidates should maintain a healthy lifestyle in order to efficiently implement all of their strategies.

Prepare your exam day strategies: Candidates should understand how many questions they need to attempt to achieve the required score. Because the paper includes a negative marking system, randomly attempting questions is not an option. Strategies such as which types of questions to attempt first, question-wise time limits, and so on are quite useful throughout the exam.

Candidates must be able to adapt their approach to the question paper, as the exam might be unpredictable. There is no sectional time limit, so candidates should know what order to take and how much time to commit to each section.

GATE 2025 EE Preparation Tricks

The following are some GATE 2025 preparation tricks recommended by experts. Follow these steps to get ready for the exam.

Keep Calm- The days preceding up to the GATE exam will be highly stressful, but try not to be too hard on yourself. The scenario will deteriorate, harming your performance and preventing you from giving your best effort.

Avoid beginning learning new subjects- Candidates should not begin learning new subjects within a few days of the exam. Making preparations for a new subject will only lead to confusion.

Practice the topics- Examine the full curriculum and subjects to ensure that you have covered everything. Try reviewing the topics that have a wider weightage in the exam to gain a good understanding of them.

Stick to the timetable- Create a revision timetable for yourself and stick to it religiously. You should be able to cover all of the topics if the time is allocated evenly among the portions.

Revision- Make a compact booklet for yourself with all of the last-minute preparation methods and tricks. Making sticky notes will also be useful. This will refresh your memory and keep you from being confused at the last minute.

Avoid topic-wise practice- Do not practice a textbook topic in these final days of preparation. Instead, use the handout material or a few carefully selected questions that you must have identified as essential or unique, i.e. questions requiring the application of several concepts.

Increase your speed and accuracy- Time management is essential. Accuracy is also critical. Because both of these variables contribute to your overall score, they should be at the top of your priority list at all times, including on the penultimate day of preparation.

Analyze Yourself- By the end of the syllabus, you should have a clear understanding of your strengths and weaknesses. Make peace with it now, while you're still preparing. To minimize more stress, if you consider a topic and feel fully perplexed by it, you should abandon it.

GATE 2025 Electrical Engineering Preparation - Important Topics

Before beginning their preparation, candidates should review the syllabus for the Electrical Engineering GATE paper. Knowledge of the syllabus will assist applicants in studying the important topics for the exam. Candidates can view the syllabus for the paper in the table below.

GATE Electrical Engineering Important Topics
Section Subjects Important Topics
1 Engineering Mathematics
  • Linear Algebra
  • Calculus
  • Differential Equations
  • Complex Variables
  • Probability and Statistics
  • Numerical Methods
  • Transform Theory
2 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.
3 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.
4 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.
5 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.
6 Power Systems
  • 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
  • Gauss-Seidel 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.
7 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
8 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
9 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
  • 8085 Microprocessor
  • Architecture
  • Programming and Interfacing.
10 Power Electronics
  • 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.

GATE 2025 Electrical Engineering Preparation Subject Wise Books

The standard books are one of the most important aspects of the GATE EE Preparation Tips. The books recommended for GATE 2025 EE preparation are listed below. To prepare for their examinations, candidates should examine these GATE EE Books.

Best Books for GATE EE Preparation 2025
Sl. No. Subjects Standard Books
1. Engineering Mathematics Advanced Engineering Mathematics by E.Kreyszig
2. Networks Engineering Circuit Analysis by Hayt and Kemmerly
3. Signal and systems Signals and Systems by Oppenheim and Wilsky Signals and Systems - Nagoor Kani
4. Electrical Machines Electrical Machinery by P.S.Bimbhra
5. Power system Power Systems Engineering by Nagrath and Kothari Power Systems by JB Guptha & CL Wadhwa
6. Power Electronics Power Electronics by MH Rashid Power Electronics by P.S.Bimbhra
7. Control system Control Systems Engineering by Nagrath and Gopal
8. Measurement Electrical and Electronic Measurement and Instrumentation by AK Sawhney
9. Analog Electronic Devices and Circuit Theory by Boylestad
10. Digital Circuits For Digital Electronics, refer to Digital Design by M.Morris Mano
11. Electro Magnetics Mathew N. O. SADIKU - Elements of Electromagnetics William .H.Hayt - Engineering Electromagnetics
12. For Problem Solving GATE Electrical by RK Kanodia
13. Circuit analysis Transient Analysis Of Electric Power Circuits by Arieh L Shenkmann and also Chakrabarti

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GATE 2025 EE Preparation FAQs

Q. How many hours should I devote to GATE 2025 EE preparation?

Ans. It is determined by the level of preparation an individual has undergone. A candidate with appropriate knowledge may devote 3-4 hours each day, however a beginner may need to devote more time per day.

Q. Is it possible to pass GATE EE 2025 within six months of preparation?

Ans. Yes, it is feasible to pass GATE 2025 with 6 months of preparation, but it also demands hard effort, consistency, regularity, and patience. Candidates will be able to ace their exam with six months of preparation if they have access to the right resources and assistance.

Q. How can a student prepare for GATE EE 2025?

Ans. There are a few aspects of preparation that are the same for all candidates, even if each candidate's GATE preparation plan will be unique. Complete the syllabus, including the main subjects, revise it, take at least one mock test per week, and refer to all previous years' GATE questions.

Q. Is the online material reliable and suitable for GATE 2025 EE Preparation?

Ans. In order to analyze and help applicants for GATE Preparation, several channels, applications, and educational platforms give study material, lectures, reference books, and doubt clearing sessions, among other things. The dependability varies depending on the channel and the app. However, several of them have been confirmed by specialists and previous year's toppers.

Q. Is it possible for me to pass GATE EE 2025 as an average student?

Ans. Many GATE toppers have risen from average learning backgrounds over the years. It is incorrect to pre-judge one's ability and should instead focus on preparation.

Q. How long will it take me to finish my GATE 2025 EE syllabus?

Ans. It is determined by the candidate's ability, retention power, preparation time, and so on. However, if the candidate has already taken the exam, it may take 3-4 months, whereas it may take 3-4 months for a beginner.
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