HP LEET Question Papers: Download Previous Year Question & Sample Papers PDF

Himachal Pradesh Lateral Entry Entrance Test 2026 ( HP LEET )

Samridhi Mishra
Updated on Dec 22, 2025 18:00 IST

By Samridhi Mishra, Senior Executive

HP LEET Question Paper: Candidates preparing for the HP LEET exam can download the HP LEET sample paper for free from this page. The aim of sample paper is to help students provide a set of practice questions for the test. Students must practice the HP LEET sample papers to check their preparation for the HP LEET exam. Through the sample papers, candidates can get a better hold of the HP LEET exam pattern and syllabus. Candidates are advised to attempt the sample paper for HP LEET in a exam environment similar to the actual test. By attempting the HP LEET sample paper within the actual exam duration, students will also be able to boost their time management skills.

The HP LEET exam is usually conducted in May. The authority has yet to announce the official HP LEET exam date 2026 online. Read to know more about HP LEET sample papers.

Table of contents
  • HP LEET Sample Paper
  • HP LEET Prep Guides
  • HP LEET 2026 Exam Pattern
  • HP LEET Syllabus
  • Benefits of Solving HP LEET Sample Papers
  • Important Points of HP LEET Sample Papers

Download previous year HP LEET question papers and sample papers. Use them for practice and improve your speed and accuracy. You can download HP LEET previous year question papers and the preparation guides for free.

HP LEET Sample Paper

HP LEET Sample Paper 2025

HP-LEET-2025-Sample-Paper

HP LEET Prep Guides

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HP LEET 2026 Exam Pattern

Candidates can check the official HP LEET exam pattern below. The details on how the entrance examination will be conducted can be checked through the exam pattern of HP LEET.

Particulars Details
Mode Pen-and-Paper-Based Test
Duration 3 Hours
Medium  English
Sections
  • Mathematics
  • Physics
  • Chemistry
  • General Knowledge
Type of Questions Multiple Choice Questions (MCQs)
Total Number of Questions 100
Total Marks 400 Marks
Marking Scheme 4 marks will be given for every correct answer. 1 mark will be deducted for every incorrect answer.
Q&A Icon
Commonly asked questions
Q:   Is exam pattern important for the HP LEET preparation?
A: 

It is recommended that students check HP LEET exam pattern before starting their exam preparation. The HP LEET paper pattern details information related to question papers like the duration of the exam, marking scheme as well as the type of questions.

Q:   Where can I access the HP LEET exam pattern?
A: 

The authorities releases the official HP LEET exam pattern online at hptechboard.com. Candidates will be able to access the details regarding how the entrance exam will be held through the exam pattern of HP LEET. Before commencing the preparation process, all candidates are advised to check the exam pattern carefully so that they become familiar and are well-prepared for the examination. HP LEET exam pattern will not be released in any other mode. 

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HP LEET Syllabus

Candidates will be able to check the HP LEET syllabus on the official website, hptechboard.com. The authority will provide a detailed list of topics for HP LEET subject-wise. The HP LEET sample paper is based exactly on the official syllabus. Candidates are advised to first complete the HP LEET syllabus and then practice the sample papers. This will give them an idea of their preparation level for the test.

Q&A Icon
Commonly asked questions
Q:   When will HP LEET application form be available?
A: 

The HP LEET 2026 application form will be available soon. Candidates will be able to access the HP LEET application form at hptechboard.com.

Q:   What is the date for HP LEET 2026 exam?
A: 

Himachal Pradesh Takniki Shiksha Board will announce the HP LEET exam date 2026 on its website. The HP LEET exam will be held in offline pen and paper mode.

View Syllabus
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Benefits of Solving HP LEET Sample Papers

Students preparing for the HP LEET exam can check the benefits of solving the sample paper below.

  • The HP LEET sample papers help candidates understand the level of the questions.
  • Students can use the sample papers to check their preparation level for the exam.
  • Candidates get multiple practice problems for the exam.
  • Students can practice the question paper to develop their speed, accuracy and more to crack the exam with good scores.
Q&A Icon
Commonly asked questions
Q:   What is the mode of HP LEET?
A: 

As per the official HP LEET exam pattern, the authorities will conduct the entrance exam as a pen-and-paper-based test. No other mode will be used to conduct HP LEET. Candidates will have to report to the exam centres and attempt the entrance exam. Each question will have four options and the correct one has to be selected and marked in the OMR sheet. It is important to mark the answers on the OMR sheet carefully, otherwise it will not be accepted by the authorities.

Q:   What is the HP LEET exam?
A: 

HP LEET (Himachal Pradesh Lateral Entry Entrance Test) is conducted annually by the authorities of Himachal Pradesh Takniki Shiksha Board to select eligible candidates for admission into the second year in the Diploma courses offered by the participating Government and Private colleges of Himachal Pradesh. HP LEET will be held for 2 hours and will consist of 100 objective multiple-choice questions from Mathematics, Chemistry, Physics and General Knowledge.

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Important Points of HP LEET Sample Papers

  • Candidates will be able to know the detailed exam pattern through the sample papers of HP LEET. 
  • Sample papers are considered one of the best materials to prepare for the examination. 
  • Details regarding the exam pattern, marking scheme, subject weightage and more can be known from the sample papers. 
  • If released, the sample papers will be available as a downloadable PDF.
  • Candidates can use the HP LEET sample papers as a mode to improve their time management skills.
  • HP LEET sample papers can be used to assess the current preparation progress of the candidates.
Q&A Icon
Commonly asked questions
Q:   What is the division of questions in HP LEET?
A: 

The HP LEET question paper will have questions from Physics, Chemistry, Mathematics and General Knowledge. Candidates will have to attempt 25 questions from each. The General Knowledge category will consist of 17 state-level, 5 national-level and 3 international-level questions. A total of 100 objective multiple-choice questions have to be attempted by the candidates within 2 hours.

Q:   What is the HP LEET marking scheme?
A: 

Candidates can check the HP LEET marking scheme below:

  • Correct answer: +4
  • Incorrect answer: -1
  • Unattempted: 0

Explore subject-wise topics asked in HP LEET

Select your preferred subject

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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