Free GATE Electrical Engineering (EE) Online Test Series 2027

Preparing for the Electrical Engineering (EE) paper requires strong conceptual knowledge, regular numerical practice, and effective time management. The Free GATE Electrical Engineering (EE) Online Test Series 2027 is designed to help aspirants prepare systematically through chapter-wise practice tests, topic-wise quizzes, subject-wise assessments, and full-length mock examinations based on the latest GATE examination pattern. These online tests enable candidates to evaluate their preparation, improve accuracy, and build confidence before the examination.

GATE 2026 EE Section 1: Engineering Mathematics Test Series Online

GATE 2026 EE Test Series for Engineering Mathematics covers Linear Algebra, Calculus, Differential Equations, Complex Variables, and Probability and Statistics.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Matrix AlgebraStart TestSystems of linear equationsStart Test
Eigen valuesStart TestEigen vectorsStart Test
Mean value theoremsStart TestTheorems of integral calculusStart Test
Definite integralsStart TestImproper integralsStart Test
Partial DerivativesStart TestMaxima and minimaStart Test
Multiple integralsStart TestFourier seriesStart Test
Vector identitiesStart TestDirectional derivativesStart Test
Line integralStart TestSurface integralStart Test
Volume integralStart TestStokes’s theoremStart Test
Gauss’s theoremStart TestDivergence theoremStart Test
Green’s theoremStart TestFirst order linear differential equationsStart Test
First order nonlinear differential equationsStart TestHigher order linear differential equations with constant coefficientsStart Test
Method of variation of parametersStart TestCauchy’s equationStart Test
Euler’s equationStart TestInitial value problemsStart Test
Boundary value problemsStart TestPartial Differential EquationsStart Test
Method of separation of variablesStart TestAnalytic functionsStart Test
Cauchy’s integral theoremStart TestCauchy’s integral formulaStart Test
Taylor seriesStart TestLaurent seriesStart Test
Residue theoremStart TestSolution integralsStart Test
Sampling theoremsStart TestConditional probabilityStart Test
MeanStart TestMedianStart Test
ModeStart TestStandard DeviationStart Test
Random variablesStart TestDiscrete distributionsStart Test
Continuous distributionsStart TestPoisson distributionStart Test
Normal distributionStart TestBinomial distributionStart Test
Correlation analysisStart TestRegression analysisStart Test

GATE 2026 EE Section 2: Electric Circuits Test Series Online

GATE 2026 EE Test Series for Electric Circuits covers Network Elements, Network solution methods (KCL, KVL, Node and Mesh analysis), Network Theorems (Thevenin’s, Norton’s, Superposition, Maximum Power Transfer), Transient response, sinusoidal steady-state analysis, resonance, two port networks, balanced three phase circuits, star-delta transformation, complex power and power factor.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Ideal voltage and current sourcesStart TestDependent sourcesStart Test
R, L, C, M elementsStart TestKCLStart Test
KVLStart TestNode analysisStart Test
Mesh analysisStart TestThevenin’s theoremStart Test
Norton’s theoremStart TestSuperposition theoremStart Test
Maximum Power Transfer theoremStart TestTransient response of DC networksStart Test
Transient response of AC networksStart TestSinusoidal steady-state analysisStart Test
ResonanceStart TestTwo port networksStart Test
Balanced three phase circuitsStart TestStar-delta transformationStart Test
Complex powerStart TestPower factor in AC circuitsStart Test

GATE 2026 EE Section 3: Electromagnetic Fields Test Series Online

GATE 2026 EE Test Series for Electromagnetic Fields covers Coulomb’s Law, Electric Field Intensity, Electric Flux Density, Gauss’s Law, Divergence, Electric field and potential due to point/line/plane/spherical charge distributions, Dielectric medium, Capacitance, Biot‐Savart’s law, Ampere’s law, Curl, Faraday’s law, Lorentz force, Inductance, Magnetomotive force, Reluctance, Magnetic circuits, Self and Mutual inductance.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Coulomb’s LawStart TestElectric Field IntensityStart Test
Electric Flux DensityStart TestGauss’s LawStart Test
DivergenceStart TestElectric field due to point chargeStart Test
Electric field due to line chargeStart TestElectric field due to plane chargeStart Test
Electric field due to spherical chargeStart TestPotential due to point chargeStart Test
Potential due to line chargeStart TestPotential due to plane chargeStart Test
Potential due to spherical chargeStart TestEffect of dielectric mediumStart Test
Capacitance of simple configurationsStart TestBiot‐Savart’s lawStart Test
Ampere’s lawStart TestCurlStart Test
Faraday’s lawStart TestLorentz forceStart Test
InductanceStart TestMagnetomotive forceStart Test
ReluctanceStart TestMagnetic circuitsStart Test
Self inductanceStart TestMutual inductanceStart Test

GATE 2026 EE Section 4: Signals and Systems Test Series Online

GATE 2026 EE Test Series for Signals and Systems covers Representation of continuous and discrete time signals, shifting and scaling properties, LTI and causal systems, Fourier series (continuous and discrete time), sampling theorem, Fourier Transform (continuous and discrete time), Laplace Transform, Z transform, RMS value and average value calculation.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Continuous time signalsStart TestDiscrete time signalsStart Test
Shifting propertiesStart TestScaling propertiesStart Test
Linear time invariant systemsStart TestCausal systemsStart Test
Fourier series (continuous time)Start TestFourier series (discrete time)Start Test
Sampling theoremStart TestFourier Transform (continuous time)Start Test
Fourier Transform (discrete time)Start TestLaplace TransformStart Test
Z transformStart TestRMS value calculationStart Test
Average value calculationStart Test

GATE 2026 EE Section 5: Electrical Machines Test Series Online

GATE 2026 EE Test Series for Electrical Machines covers Single phase transformer (equivalent circuit, phasor diagram, OC/SC tests, regulation, efficiency), Three-phase transformers (connections, vector groups, parallel operation), Auto-transformer, Electromechanical energy conversion, DC machines (separately excited, series, shunt, motoring/generating, characteristics, speed control), Three-phase induction machines (principle, types, performance, torque-speed characteristics, no-load/blocked-rotor tests, equivalent circuit, starting, speed control), Single-phase induction motors, Synchronous machines (cylindrical/salient pole, performance, regulation, parallel operation, starting), Losses and efficiency.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Single phase transformer – equivalent circuitStart TestSingle phase transformer – phasor diagramStart Test
Open circuit testStart TestShort circuit testStart Test
Transformer regulationStart TestTransformer efficiencyStart Test
Three-phase transformers – connectionsStart TestThree-phase transformers – vector groupsStart Test
Parallel operation of transformersStart TestAuto-transformerStart Test
Electromechanical energy conversionStart TestDC machines – separately excitedStart Test
DC machines – seriesStart TestDC machines – shuntStart Test
DC motoring modeStart TestDC generating modeStart Test
DC machine characteristicsStart TestSpeed control of DC motorsStart Test
Three-phase induction machines – principleStart TestThree-phase induction machines – typesStart Test
Induction motor performanceStart TestTorque-speed characteristicsStart Test
No-load testStart TestBlocked-rotor testStart Test
Induction motor equivalent circuitStart TestStarting of induction motorsStart Test
Speed control of induction motorsStart TestSingle-phase induction motorsStart Test
Synchronous machines – cylindrical rotorStart TestSynchronous machines – salient poleStart Test
Synchronous machine performanceStart TestSynchronous machine regulationStart Test
Parallel operation of generatorsStart TestStarting of synchronous motorsStart Test
Types of lossesStart TestEfficiency calculationsStart Test

GATE 2026 EE Section 6: Power Systems Test Series Online

GATE 2026 EE Test Series for Power Systems covers Electrical power generation, AC/DC transmission, Transmission line models and performance, Economic Load Dispatch, Series and shunt compensation, Electric field distribution and insulators, Distribution systems, Per-unit quantities, Bus admittance matrix, Gauss-Seidel and Newton-Raphson load flow, Voltage and Frequency control, Power factor correction, Symmetrical components, Fault analysis, Protection principles, Circuit breakers, System stability, Equal area criterion.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Electrical power generationStart TestAC transmission conceptsStart Test
DC transmission conceptsStart TestTransmission line modelsStart Test
Transmission line performanceStart TestCable performanceStart Test
Economic Load Dispatch (without losses)Start TestEconomic Load Dispatch (with losses)Start Test
Series compensationStart TestShunt compensationStart Test
Electric field distributionStart TestInsulatorsStart Test
Distribution systemsStart TestPer-unit quantitiesStart Test
Bus admittance matrixStart TestGauss-Seidel load flowStart Test
Newton-Raphson load flowStart TestVoltage controlStart Test
Frequency controlStart TestPower factor correctionStart Test
Symmetrical componentsStart TestSymmetrical fault analysisStart Test
Unsymmetrical fault analysisStart TestOver-current protectionStart Test
Differential protectionStart TestDirectional protectionStart Test
Distance protectionStart TestCircuit breakersStart Test
System stability conceptsStart TestEqual area criterionStart Test

GATE 2026 EE Section 7: Control Systems Test Series Online

GATE 2026 EE Test Series for Control Systems covers Mathematical modelling, Feedback principle, Transfer function, Block diagrams, Signal flow graphs, Transient and Steady‐state analysis of LTI systems, Routh-Hurwitz and Nyquist stability criteria, Bode plots, Root loci, Lag/Lead/Lead‐Lag compensators, P/PI/PID controllers, State space model, Solution of state equations.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Mathematical modellingStart TestFeedback principleStart Test
Transfer functionStart TestBlock diagramsStart Test
Signal flow graphsStart TestTransient analysis of LTI systemsStart Test
Steady‐state analysis of LTI systemsStart TestRouth-Hurwitz stability criterionStart Test
Nyquist stability criterionStart TestBode plotsStart Test
Root lociStart TestLag compensatorsStart Test
Lead compensatorsStart TestLead‐Lag compensatorsStart Test
P controllerStart TestPI controllerStart Test
PID controllerStart TestState space modelStart Test
Solution of state equationsStart Test

GATE 2026 EE Section 8: Electrical and Electronic Measurements Test Series Online

GATE 2026 EE Test Series for Electrical and Electronic Measurements covers Bridges and Potentiometers, Measurement of voltage, current, power, energy and power factor, Instrument transformers, Digital voltmeters and multi-meters, Phase, Time and Frequency measurement, Oscilloscopes, Error analysis.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
BridgesStart TestPotentiometersStart Test
Voltage measurementStart TestCurrent measurementStart Test
Power measurementStart TestEnergy measurementStart Test
Power factor measurementStart TestInstrument transformersStart Test
Digital voltmetersStart TestMulti-metersStart Test
Phase measurementStart TestTime measurementStart Test
Frequency measurementStart TestOscilloscopesStart Test
Error analysisStart Test

GATE 2026 EE Section 9: Analog and Digital Electronics Test Series Online

GATE 2026 EE Test Series for Analog and Digital Electronics covers Diode circuits (clipping, clamping, rectifiers), Amplifiers (biasing, equivalent circuit, frequency response), Oscillators and feedback amplifiers, Operational amplifiers (characteristics, applications), Single stage active filters, Active Filters (Sallen Key, Butterworth), VCOs and timers, Combinatorial and sequential logic circuits, Multiplexers, Demultiplexers, Schmitt triggers, Sample and hold circuits, A/D and D/A converters.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Diode clipping circuitsStart TestDiode clamping circuitsStart Test
Diode rectifiersStart TestAmplifiers – biasingStart Test
Amplifiers – equivalent circuitStart TestAmplifiers – frequency responseStart Test
OscillatorsStart TestFeedback amplifiersStart Test
Operational amplifiers – characteristicsStart TestOperational amplifiers – applicationsStart Test
Single stage active filtersStart TestSallen Key filterStart Test
Butterworth filterStart TestVCOsStart Test
TimersStart TestCombinatorial logic circuitsStart Test
Sequential logic circuitsStart TestMultiplexersStart Test
DemultiplexersStart TestSchmitt triggersStart Test
Sample and hold circuitsStart TestA/D convertersStart Test
D/A convertersStart Test

GATE 2026 EE Section 10: Power Electronics Test Series Online

GATE 2026 EE Test Series for Power Electronics covers Static V-I characteristics and firing/gating circuits for Thyristor, MOSFET, IGBT; DC to DC conversion (Buck, Boost, Buck-Boost); Single and three-phase uncontrolled rectifiers; Thyristor based converters; Bidirectional AC to DC converters; Line current harmonics; Power factor and Distortion Factor; Single-phase and three-phase voltage and current source inverters; Sinusoidal pulse width modulation.

Sub-TopicTopic Test LinkSub-TopicTopic Test Link
Thyristor – V-I characteristicsStart TestThyristor – firing circuitsStart Test
MOSFET – V-I characteristicsStart TestMOSFET – gating circuitsStart Test
IGBT – V-I characteristicsStart TestIGBT – gating circuitsStart Test
Buck converterStart TestBoost converterStart Test
Buck-Boost converterStart TestSingle-phase uncontrolled rectifiersStart Test
Three-phase uncontrolled rectifiersStart TestVoltage commutated thyristor convertersStart Test
Current commutated thyristor convertersStart TestBidirectional AC to DC voltage source convertersStart Test
Line current harmonics (uncontrolled)Start TestLine current harmonics (thyristor based)Start Test
Power factor of AC to DC convertersStart TestDistortion Factor of AC to DC convertersStart Test
Single-phase voltage source invertersStart TestThree-phase voltage source invertersStart Test
Single-phase current source invertersStart TestThree-phase current source invertersStart Test
Sinusoidal pulse width modulationStart Test

Regular mock test practice allows candidates to strengthen core Electrical Engineering concepts, identify weak areas, and improve problem-solving speed. By reviewing performance after every test, aspirants can revise important topics effectively and develop a better examination strategy for GATE 2027.


Free GATE Electrical Engineering (EE) Test Series 2027 Overview

ParticularDetails
ExaminationGATE 2027
Paper CodeEE
SubjectElectrical Engineering
Test ModeOnline
Test TypesChapter-wise, Topic-wise, Subject-wise & Full-Length Mock Tests
CostFree
Question PatternBased on the Latest GATE Examination Pattern
Suitable ForGATE Electrical Engineering Aspirants

Why Practice the GATE EE Online Test Series?

The Electrical Engineering paper includes conceptual, analytical, and numerical questions from various core engineering subjects. Solving online mock tests regularly helps candidates improve calculation speed, strengthen conceptual understanding, and become familiar with the computer-based examination format. Continuous practice also helps aspirants monitor their preparation and revise important topics before the examination.

Key benefits include:

  • Free online mock tests
  • Chapter-wise practice
  • Topic-wise quizzes
  • Subject-wise mock tests
  • Full-length online examinations
  • Better speed and time management
  • Detailed performance analysis
  • Complete revision support

Features of the Free GATE EE Mock Tests

The mock tests are prepared to provide an examination-like experience while covering the complete Electrical Engineering syllabus. Regular practice enables candidates to improve accuracy, track their progress, and strengthen weaker subjects through continuous assessment.

The test series offers:

  • Chapter-wise practice tests
  • Topic-wise question banks
  • Subject-wise mock examinations
  • Full-length online tests
  • Instant score and performance analysis
  • Latest GATE examination pattern
  • Unlimited online practice
  • Mobile and desktop compatibility

How to Use the GATE EE Test Series for Better Preparation

Begin your Electrical Engineering preparation by studying one subject at a time, such as Electrical Circuits, Network Theory, Signals and Systems, Control Systems, Electrical Machines, Power Systems, Power Electronics, Analog and Digital Electronics, Measurements, or Engineering Mathematics. After completing each topic, attempt the corresponding chapter-wise mock tests to evaluate your conceptual understanding and identify mistakes.

Once multiple subjects are covered, solve subject-wise mock tests to strengthen your preparation across broader sections of the syllabus. After completing the entire EE syllabus, regularly attempt full-length mock examinations under timed conditions to simulate the actual GATE examination. Analyze every incorrect answer carefully, revise important formulas and concepts, and continue practicing consistently to improve your speed, accuracy, confidence, and overall GATE EE score.


Conclusion

Success in the Electrical Engineering paper depends on conceptual clarity, consistent revision, and regular mock test practice. Solving free online mock tests throughout your preparation will strengthen your problem-solving skills, improve time management, and help you approach GATE 2027 with confidence while maximizing your overall score.

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