KLEEE BTech Lateral Entry Pattern 2026: Know Marking Scheme & Exam Duration

KL Engineering Entrance Exam 2026 ( KLEEE )

DeskCalelnderRegistration - 19 Sep '25 - 12 Nov '25

This exam is conducted for courses given below:
Saakshi Varsha Lama
Updated on Sep 19, 2025 16:30 IST

By Saakshi Varsha Lama, Deputy Manager Content

KLEEE 2026 exam pattern is now available online. Candidates can check the details on how the entrance examination will be held through the KLEEE exam pattern 2026. Some of the important information that the candidates can check through the exam pattern of KLEEE 2026 is the exam mode, duration, type of questions, marking scheme and more. Before starting their preparation, all candidates should check the KLEEE exam pattern, since it will help them to understand the examination. KLEEE 2026 will be held in offline (pen and paper-based) and online (computer-based) modes. Along with the exam pattern, the candidates are advised to check the official KLEEE 2026 syllabus. Read to know more about the KLEEE 2026 Exam Pattern.

Table of content
  • KLEEE 2026 Exam Pattern
  • KLEEE 2026 Exam Pattern - Division of Questions
  • KLEEE 2026 Syllabus
  • KLEEE 2026 Pattern Frequently Asked Questions (FAQs)
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KLEEE 2026 Exam Pattern

KLEEE 20256 exam pattern has been released online. The candidates can check the KLEEE exam pattern 2026 given below to know more about the examination.

Particular Details
Mode of Exam Computer-Based Mode and Pen-and-Paper-Based Mode
Duration  3 Hours
Sections
  • Mathematics
  • Chemistry
  • Physics
Type of Questions Multiple Choice Questions
Total Number of Questions

75 Questions

  • Mathematics - 25 questions
  • Chemistry - 25 questions
  • Physics - 25 questions
Marking Scheme For every correct answer, one mark will be allotted. There will be no negative marking.
Q&A Icon
Commonly asked questions
Q:   What is the marking scheme of KLEEE?
A: 

The official marking scheme of KLEEE is released by the authorities of the KL University. As per the official marking scheme, for every correct answer one mark will be allotted. There will be no negative marking for incorrect answers. Unanswered questions will not be negatively marked and will be left as unattempted. Since there is no negative marking, the candidates are advised to attempt as many questions as possible. This will raise their chances of scoring well in the entrance examination.

Q:   What is the duration of KLEEE?
A: 

As per KLEEE exam pattern, total duration of KLEEE is 3 hours. All candidates will have to complete entrance examination within allotted time. A total of 75 questions from three sections have to be answered by candidates in examination.

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KLEEE 2026 Exam Pattern - Division of Questions

The KLEEE question paper will be divided into sections as per the subjects in the syllabus. The division of the KLEEE 2026 questions can be checked from the table given below.

Subjects Total Number of Questions Total Number of Questions to be Attempted
Mathematics 25 25
Physics 25 25
Chemistry 25 25
Q&A Icon
Commonly asked questions
Q:   Which sections will be present in the KLEEE paper?
A: 

According to the KLEEE question paper, there will be three sections. Candidates will have to answer multiple-choice questions from Physics, Chemistry and Mathematics. All of the questions for these sections will be prepared from the KLEEE syllabus. The difficulty level of the questions in these sections will be equivalent to the 12th standard qualifying exam. More details regarding the sections present in the question paper will be released through the KLEEE exam pattern.

Q:   What is the division of questions in the KLEEE paper?
A: 

In KLEEE paper, there will be three sections. Section will be of Mathematics, Physics and Chemistry. In each section, there will be 25 questions prepared from syllabus of KLEEE. Candidates have to answer all 25 questions from each section.

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KLEEE 2026 Syllabus

KLEEE 2026 syllabus has been released online. Candidates can check the list of subjects, units and topics that they will have to prepare for the entrance exam. To learn the basic topics to be studied in Mathematics, Physics, and Chemistry for the entrance exam, the candidates are advised to refer to the KLEEE syllabus. The candidates are advised to check the official KLEEE exam pattern along with the syllabus.

Q&A Icon
Commonly asked questions
Q:   What is the KLEEE syllabus?
A: 

KLEEE syllabus will have subjects and topics candidates have to study for entrance examination. Through syllabus of KLEEE, candidates can know topics that have to be studied to perform well in examination. For KLEEE, candidates will have to study topics from Mathematics, Chemistry and Physics.

Q:   Is KLEEE syllabus important for the preparation process?
A: 

Candidates should be familiar with KLEEE syllabus to prepare for entrance examination. Since KLEEE syllabus will provide required information about subjects and topics to be studied, candidates should check and constantly refer to it during preparation process.

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KLEEE 2026 Pattern Frequently Asked Questions (FAQs)

Read for KLEEE 2026 Pattern Frequently Asked Questions (FAQs).

Q&A Icon
Commonly asked questions
Q:   Is KLEEE exam pattern important for preparation?
A: 

Candidates should check KLEEE exam pattern before entrance examination. This will allow candidates to know how examination will be held and be accordingly prepared for it. From KLEEE exam pattern, candidates can check important details such as the duration, mode, type of questions, marking scheme, and more.

Q:   Is there negative marking in KLEEE?
A: 

No, there is no negative marking. The authorities will not deduct any marks for incorrect answers in the entrance examination. Since there is no negative marking, the candidates are advised to attempt as many questions as possible, to have a higher chance of securing the marks required for admission. The marking scheme will be released through the official KLEEE exam pattern.

Explore subject-wise topics asked in KLEEE

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Complement of a SetEqual SetsUniversal SetFinite and Infinite SetEmpty SetSets and their RepresentationsRelations and FunctionsCartesian Products of SetsFunctionsRelationsBinomial TheoremBinomial Theorem for Positive Integral IndexComposition of Functions and Invertible FunctionTypes of FunctionsTypes of RelationsProperties of Inverse Trigonometric FunctionsInverse Trigonometric FunctionsBasic Concepts of Inverse Trigonometric FunctionsTypes of MatrixTranspose of a MatrixSymmetric and Skew Symmetric MatricesInvertible MatricesOperations on MatricesDeterminantsDeterminantsIntegration as Inverse Process of DifferentiationDifferentiationStandard DeviationAssumed Mean MethodCorrelation and RegressionZ Score TableCube and CuboidComplement of a SetEqual SetsUniversal SetFinite and Infinite SetEmpty SetSets and their RepresentationsRelations and FunctionsCartesian Products of SetsFunctionsRelationsBinomial TheoremBinomial Theorem for Positive Integral IndexComposition of Functions and Invertible FunctionTypes of FunctionsTypes of RelationsProperties of Inverse Trigonometric FunctionsInverse Trigonometric FunctionsBasic Concepts of Inverse Trigonometric FunctionsTypes of MatrixTranspose of a MatrixSymmetric and Skew Symmetric MatricesInvertible MatricesOperations on MatricesDeterminantsDeterminantsIntegration as Inverse Process of DifferentiationDifferentiationStandard DeviationAssumed Mean MethodCorrelation and RegressionZ Score TableCube and CuboidOverviewDIMENSIONS OF PHYSICAL QUANTITIESDIMENSIONAL FORMULAESignificant FiguresDIMENSIONAL ANALYSIS AND ITS APPLICATIONSINTERNATIONAL SYSTEM OF UNITSOverviewChange of StateIdeal Gas Equation and Absolute TemperatureThermal ExpansionHeat TransferSpecific HeatCalorimetryTemperature and HeatMeasurement of TemperatureThermodynamic ProcessCarnot EngineReversible and Irreversible ProcessThermal EquilibriumThermodynamic State Variables Equation of StateOverviewFirst Law of ThermodynamicsSecond Law of ThermodynamicsBehaviour of GasesKinetic Theory of Ideal GasOverviewPeriodic and Oscillatory MotionSimple PendulumSimple Harmonic MotionOverviewSpeed of a Travelling WaveDisplacement Relation in a Progressive WaveSuperposition PrincipleBeatsReflection of WavesKinematic Equation Uniformly of Accelerated MotionInstantaneous Velocity and SpeedOverviewAccelerationResolution of VectorsVector Addition by Analytical MethodScalars and VectorsMultiplication of Vectors by Real NumbersAddition and Subtraction of VectorsOverviewProjectile MotionMotion in a PlaneConservation of MomentumEquilibrium of a ParticleCircular MotionCommon Forces in MechanicsSolving Problems in MechanicsConservation of Mechanical EnergyPotential Energy of SpringPowerKinetic EnergyCollisionWorkConcept of Potential EnergyMoment of InertiaOverviewCentre of MassVector Product of Two VectorsTorque and Angular MomentumMotion of Centre of MassEquilibrium of a Rigid BodyOverviewAngular Velocity and Relation with Linear VelocityDynamics of Rotational Motion About a Fixed AxisKinematics of Rotational Motion About a Fixed AxisAngular Momentum of Rotation About a Fixed AxisKeplers LawOverviewEscape SpeedEarth SatellitesEnergy of an Orbiting SatelliteStress Strain CurveElastic ModuliApplications of Elastic Behaviour of MaterialsSurface TensionBernoulli PrinciplePressure in FluidsViscosityStreamline FlowForces between Multiple ChargesConductors and InsulatorsBasic Properties of Electric ChargeElectric ChargeElectric Charge and FieldElectric FluxElectric Charge and FieldElectric Field LinesContinuous Charge DistributionInterference Light Waves Youngs ExperimentRefraction Reflection Plane Wave Huygens PrincipleRefraction Reflection Plane Wave Huygens PrincipleEinstein Photoelectric TheoryPhotoelectric Effect Wave Theory LightPhotoelectric EffectElectron EmissionOverviewBohr Model of Hydrogen AtomRadioactivityPhysics Nuclei OverviewSize of NucleusBinding EnergyNuclear EnergySemiconductor Devices OverviewSemiconductor Devices OverviewSemiconductor DiodeDiode as RectifierIntrinsic SemiconductorExtrinsic SemiconductorOverviewPotential Due to Point ChargeCombination of CapacitorsElectrostatic PotentialEnergy Stored in a CapacitorCapacitors and CapacitanceEffect of Dielectric on CapacitanceElectrostatics of ConductorsPotential Energy of a System of ChargesPotential due to a System of ChargesElectric CurrentOverviewElectrical Energy and PowerTemperature Dependence of ResistivityWheatstone BridgeOverviewOhms LawKirchhoffs LawDrift of Electrons and the Origin of ResistivityTorque on Current Loop Magnetic DipoleMotion in Magnetic FieldSolenoidMagnetic Field due to a Current ElementMagnetic Field on Axis of Circular Current LoopAmpere Circuital LawMagnetic ForceOverviewMoving Coil GalvanometerMagnetism and MatterMagnetic Properties of MaterialsMagnetisation and Magnetic IntensityBar MagnetElectromagnetismMotional Electromotive ForceExperiments of Faraday and HenryAlternating Current OverviewTransformerAC Voltage Applied to a ResistorAC Voltage Applied to an InductorAC Voltage applied to a CapacitorAC Voltage applied to a Series LCR circuitRepresentation of AC Current and Voltage by VectorElectromagnetic SpectrumElectromagnetic WavesDisplacement CurrentTotal Internal ReflectionRefraction through a PrismOptical InstrumentsDerivation of Lens FormulaReflection of Light by Spherical MirrorsRefraction at Spherical Surface and by LensesDerive Equation of Motion by Calculus methodAlternating Current OverviewMole Concept and Molar MassSTOICHIOMETRY AND STOICHIOMETRIC CALCULATIONSPercentage CompositionLaws of Chemical CombinationAtomic and Molecular MassesProperties of Matter and their MeasurementImportance of ChemistryOverviewOverviewAtomic ModelsDiscovery of Sub Atomic ParticlesTowards Quantum Mechanical Model of AtomQuantum Mechanical Model of AtomElectronic Configuration Types of ElementsPeriodic Table Electronic Configuration of ElementPeriodic Trends in Properties of ElementsGenesis of Periodic ClassificationNomenclature of Elements with Atomic NumbersPresent Form of Periodic TableChemical Bonding and Molecular StructureHybridizationValence Bond TheoryMolecular Orbital TheoryHydrogen BondingIonic or Electrovalent BondKossel-Lewis Approach to Chemical BondingBond ParametersBonding in Homonuclear Diatomic MoleculesVSEPR TheoryApplications of Chemical BondingEquilibrium ProcessesHomogeneous EquilibriaFactors Affecting EquilibriaApplications of Equilibrium ConstantIonization of Acids and BasesIonic Equilibrium in SolutionEquilibrium in Chemical ProcessesSolubility Equilibria of Sparingly Soluble SaltsHeter Heterogeneous EquilibriaOxidation NumberClassification of Organic CompoundsIsomerismNomenclature of Organic CompoundsQuantitative AnalysisQualitative Analysis of Organic CompoundsOverviewStructural Representations of Organic CompoundsFundamental Concepts in Organic Reaction MechanismTetravalence of Carbon Shapes of Organic CompoundsMethods of Purification of Organic CompoundsClassificationAlkanesAlkenesAlkynesAromatic HydrocarbonCarcinogenicity and ToxicityAbnormal Molar MassColligative Properties and Molar MassSolubilityProteinsVitaminsCarbohydratesEnzymesHormonesNucleic AcidsElectrolytic Cells and ElectrolysisCorrosionGalvanic CellFuel CellsNernst EquationElectrochemical CellsBatteriesRate of ReactionIntegrated Rate EquationsCollision Theory of Chemical ReactionsTemperature Dependence of the Rate of a ReactionFactors Influencing Rate of a ReactionBonding in Metal CarbonylsDifference between Glucose and Fructose
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