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Course Features

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Session Plan

Our well-researched curriculum and session plan are designed to equip you with the knowledge and skills needed to conquer the CUET. With expert guidance and unparalleled resources, you'll be empowered to reach your full potential and achieve your academic goals

Session Details

Lecture 1. Electric Forces and Field

  • Properties of charges
  • Coulomb’s Law and superposition of forces
  • Null Point due to two point charges
  • Electric Field due to point charges, ring and circular arc; Graphs
  • Electric Dipole – Electric field and Torque on a dipole in uniform field

Lecture 2. Electric Forces and Field

  • Electric Field Lines and Flux
  • Gauss’ Law and Field due to line charge
  • Field due to Line charge, Infinite sheet and Spherical Charges

Lecture 3. Electric Potential and Energy

  • Electrical potential energy of a system of charges
  • Electric potential, potential difference and Work Done
  • Electric potential due to a point charge, a dipole and spheres
  • Relation between E & V, Equipotential surfaces,
  • Electric dipoles in an electrostatic field.

Lecture 4. Conductors and Capacitors

  • Properties of Conductors in Electrostatics
  • Charge distribution on a spherical conductor and plates
  • Capacitance of parallel plate, spherical and cylindrical capacitors
  • Charging and Energy of capacitors

Lecture 5. Capacitor Circuits and Dielectrics

  • Combination of Capacitors
  • Redistribution of Charges between Capacitors
  • Capacitors with Dielectrics
  • Changing gap and medium between Capacitor plates

Lecture 6. Electric Currents and DC Circuits

  • Properties of Conductors in Electrostatics
  • Charge distribution on a spherical conductor and plates
  • Capacitance of parallel plate, spherical and cylindrical capacitors
  • Charging and Energy of capacitors

Lecture 7. Electric Cells and Measurements

  • Electric Cells
  • Ammeter, Voltmeter, meter bridge and Potentiometer
  • RC charging and discharging

Lecture 8. Magnetic Effects of Current

  • Biot-Savart Law – Magnetic Field due to straight wire and circular loop
  • Ampere’s Law- Magnetic Field due to Thick wire, solenoid and Toroid

Lecture 9. Magnetic Forces

  • Magnetic Force on a moving charge- motion of charge in B Field
  • Magnetic Force on a current in B field
  • Force between Parallel wires
  • Magnetic Moment and Torque on a loop
  • Galvanometer and its sensitivity

Lecture 10. Magnetic Properties of Matter

  • Bar Magnets
  • Earth’s Magnetic Field
  • Para, Día and Ferromagnetism- Electromagnets & Permanent Magnets

Lecture 11. Electromagnetic Induction

  • Faraday’s Law of EMI
  • Motional EMF and Induced Electric Field

Lecture 12. Self and Mutual Induction

  • Self-Inductance and Mutual Inductance
  • LR circuits
  • LC Oscillations

Lecture 13. Alternating Current

  • AC Circuits Series LCR Resonance
  • Power in AC Circuits
  • Transformers

Lecture 14. Electromagnetic Waves

  • Maxwell’s Equations and their solution, Displacement Current
  • Energy Transmission by EM waves
  • Electromagnetic Wave Spectrum

Lecture 15. Reflection and Refraction

  • Spherical Mirrors
  • Refraction from plane surfaces, TIR
  • Glass slab and Prism

Lecture 16. Lenses and Optical Instruments

  • Lenses and their combinations
  • Optical Instruments- Microscopes and Telescopes

Lecture 17. Wave Optics

  • YDSE
  • Single Slit Diffraction and Limits of resolution
  • Polarisation

Lecture 18. Dual Nature of Light and Matter

  • Photoelectric Effect
  • Matter waves and de Broglie Wavelength

Lecture 19. Atomic Structure and X Rays

  • Bohr Model of Atoms and Spectrum of Hydrogen Atom
  • X Rays

Lecture 20. Nuclei

  • Stability of Nucleus and Radioactivity
  • Mass Defect and Nuclear Reactions

Lecture 21. Semiconductor Devices

  • Semiconductor Diodes
  • Junction Transistors
  • Logic Gates

Lecture 22. Communication Systems

  • Modulation of Waves
  • Transmission and Propagation of Waves
  • Detection and Demodulation of Waves

Session Details

Quant / Reasoning

  • Vedic Maths, Simplication & Symbols
  • Numbers & HCF
  • Average & Algebra
  • Percentage
  • Profit & Loss
  • Simple Interest & Compound Interest
  • Series & Inserting the Missing Character
  • Coding & Blood Relations
  • Membership & Syllogism
  • Aptitude Practice - No., Percentage, Profit, Coding, Series
  • Time & Work
  • Ratio & Problem on Ages
  • Time, Speed & Distance
  • Mensuration & Geometry - Angles
  • DI - Tables, Bar & Venn diagram
  • Directions
  • Clocks & Calendars
  • AR – Elementary
  • Visual Reasoning & Counting Figures
  • Aptitude Practice - AR, Directions & DI


  • Basic Information About India
  • Firsts in India and the World
  • Countries - Capitals and Currencies
  • World Heritage Sites in India
  • International Organisations and Headquarters
  • Sobriquets - India and the World
  • National Parks, Sanctuaries and Reserves
  • Inventions and Discoveries
  • Superlatives - India and the World
  • Important Days of the Year
  • Sports
  • Countries - Heads of State
  • Indian States - Chief Ministers and Governors
  • Books and Authors
  • Indian Awards and Recognitions
  • Global Awards and Recognitions
  • Facts About Indian Cinema
  • Indian Art and Culture
  • Facts About Indian Polity
  • Facts About Science and Technology

Session Details

Lecture 1.Solid state

  • Classification of solids
  • Unit cell
  • Density of unit cell
  • Packing efficiency and voids
  • Electric and magnetic properties

Lecture 2.Solution

  • Types of solution
  • Expression of concentration of solution
  • Solublityof gas
  • Raoults law

Lecture 3.Colligative properties

  • Relative lowering in vapour pressure
  • Elevation in boiling point
  • Depression in freezing point
  • Osmotic pressure
  • Vantoff factor

Lecture 4.Electrochemistry

  • Redox reaction
  • Conductance in electrolytic solution
  • Kohlrausch law
  • Law of electrolysis

Lecture 5.cell

  • EMF of cell
  • Nernst equation
  • Primary and secondry batteries
  • Gibbs enegry

Lecture 6. Chemical kinetics

  • Rate of reaction
  • Factor affecting rate of reaction
  • Order and molecularity of reaction
  • Arrhenius equation

Lecture 7.Surface chemistry

  • Adsorption , faetors affecting adsorption
  • Catalysts
  • Colloidal state
  • Properties of colloids

Lecture 8.General principles and processes of isolstion of elements

  • Principles and methods of extraction
  • Electrolytic method and refining

Lecture 9.P block elements

  • Group 15
  • Physical and chemical properties
  • Group 16
  • Physical properties

Lecture 10.Group 17,18

  • Chemical properties of group 16
  • Physical and chemical properties of 17 and 18 group

Lecture 11. D and f block elements

  • Transition elements
  • Properties
  • Preparations and properties of compound of transition
  • Lanthanoids and actinoids

Lecture 12.Coordination compounds

  • Introduction
  • Ligands
  • Iupac of compounds
  • Isomerism

Lecture 13.Properties of coordination compound

  • Valance bond theory
  • CFT
  • Werner theory
  • Imprtanc eof coordination compound

Lecture 14.Haloalkanes and haloarenes

  • Physical and chemical properties
  • Haloarenes - substitution reaction
  • Uses

Lecture 15.Alcohols

  • Methods of preparations
  • Physical and chemical properties
  • Dehydration
  • Uses

Lecture 16.Phenol and ethers

  • Methods of preparations
  • Physical and chemical properties

Lecture 17.Aldehydes and ketones

  • Nature of carbonyl group
  • Methods of preparations
  • Physical and chemical properties
  • Nucleophilic additions reaction

Lecture 18.Carboxylic group

  • Methods of preparations
  • Physical and chemical properties
  • Acidic nature

Lecture 19.Amines

  • Methods of preparations
  • Physical and chemical properties
  • Diazonium salts

Lecture 20.Polymer

  • Natural and synthetic polymers
  • Methods of polymerization
  • Biodegradable and non biodegradable polymers

Lecture 21.Chemistry in everyday life

  • Chemical in medicines
  • Chemical in food
  • Cleansing agent

Lecture 22.Biomolecules

  • Carbohydrates
  • Proteins
  • Vitamins
  • Nucleic acids

Session Details


  • Vocabulary - Overview & Tricks
  • Vocabulary, Contextual, Idiomatic & Vocab Quiz - 1
  • RC - Fundamentals & Vocab Quiz – 2
  • RC - Question Types & Vocab Quiz – 3
  • Vocabulary, Idioms/Phrases, Spellings & Vocab Quiz - 4
  • Analogy & Vocab Quiz - 5
  • Vocabulary, One Word Substitution & Collective Nouns & Vocab Quiz - 6
  • Recap - RC, Vocabulary & Analogy Quiz - 7
  • Rhetorical & Literary Devices & Vocab Quiz - 8
  • Sentence Completion & Vocab Quiz - 9
  • Grammar - SVA, Tenses & Prepositions & Vocab Quiz - 10
  • RC - Practice - 1 & Vocab Quiz - 11
  • Recap - Grammar, RC & Sentence Completion & Vocab Quiz - 12
  • Sentence Rearrangement & Vocab Quiz - 13
  • Speech, Voice & Vocab Quiz - 14
  • Analogy & RC Practice - Vocab Quiz - 15
  • RC - Practice - 2 & Vocab Quiz-16
  • Critical Reasoning - Fundamentals & Vocab Quiz - 17
  • Recap - RC, SR & CR & Vocab Quiz - 18
  • Vocabulary Practice & Vocab Quiz - 19

Session Details

Lecture 1. Matrices

  • Types of Matrices
  • Operation on Matrices
  • Transpose of a Matrix
  • Symmetric and Skew Symmetric Matrices

Lecture 2.Matrices

  • Elementary Operation (Transformation) of a Matrix
  • Invertible Matrices

Lecture 3.Determinants

  • Properties of Determinants
  •  Area of a Triangle
  • Minors and Cofactors
  • Adjoint and Inverse of a Matrix
  • Applications of Determinants and Matrices

Lecture 4. Relations and Functions

  • Types of Relations
  • Types of Functions

Lecture 4.Relations and Functions

  • Domain
  • Range
  • Composition of Functions and Invertible Function

Lecture 6.Inverse Trigonometric Functions

  • Introduction and Basic Concepts or Inverse Trigonometric Functions

Lecture 7.Inverse Trigonometric Functions

  •  Properties of Inverse Trigonometric Functions

Lecture 8.Continuity and Differentiability

  • Continuity and Differentiability
  •  Exponential and Logarithmic Functions
  •  Logarithmic

Lecture 9.Continuity and Differentiability

  • Differentiation
  • Derivatives of Functions in Parametric Forms
  •  Second Order Derivative
  • Mean Value Theorem

Lecture 10. Applications of Derivatives

  • Rate of Change of Quantities
  • Increasing and Decreasing Functions

Lecture 11.Applications of Derivatives

  • Tangents and Normals
  • Approximations
  •  Maxima and Minima

Lecture 12.Integrals

  • Integration as an Inverse Process of Differentiation
  • Methods of Integration

Lecture 13.Integrals

  •  Integrals of Some Particular Functions
  •  Integration by Partial Fractions
  •  Integration by Parts

Lecture 14.Definite Integrals

  • Definite Integral
  •  Fundamental Theorem of Calculus
  •  Evolution of Definite Integrals by Substitution
  • Some Properties of Definite Integrals

Lecture 15.Application of Integrals

  • Area under Simple Curves
  • Area Between Two Curves

Lecture 16. Differential Equations

  • Basic Concepts
  • General and Particular Solutions of a Differential Equation
  •  Formation of a Differential Equation whose General Solution is given
  •  Methods of Solving First Order
  • First Degree Differential Equations

Lecture 17.Vector Algebra

  • Introduction to Vectors
  •  Some Basic Concepts
  • Types of Vectors
  •  Addition of Vectors
  •  Multiplication of a Vector by a Scalar

Lecture 18.Vector Algebra

  • Product of Vectors

Lecture 19.Three Dimensional Geometry

  • Direction Cosines and Direction Ratios of a Line
  • Equation of a Line in Space
  • Angle between Two Lines
  • Short Distance between Two Lines
  • Plane
  • Coplanarity of Two Lines
  •  Angle between Two Planes
  • Distance of a Point from a Plane
  •  Angle between a Line and a Plane

Lecture 20.Three Dimensional Geometry

  • Plane
  • Coplanarity of Two Lines
  •  Angle between Two Planes
  • Distance of a Point from a Plane
  •  Angle between a Line and a Plane

Lecture 21.Linear Programming

  • Linear Programming Problem and its Mathematical Formulation
  • Different Types of Linear Programming Problems

Lecture 22. Probability

  • Probability Introduction
  • Conditional Probability
  • Multiplication Theorem on Probability
  • Independent Events
  •  Bayes’ Theorem
  • Random Variables and its Probability Distributions
  •  Bernoulli Trials and Binomial Distribution seriously

Session Details

Lecture 1.Reproduction in Organisms

  • Characteristic feature of all organisms
  • Modes of reproduction
  • Binary fission, sporulation, budding, gemmule, fragmentation; vegetative propagation in plants

Lecture 2.Sexual reproduction in flowering plants

  • Flower structure
  • Development of gametophytes
  • Pollination
  • Outbreeding devices

Lecture 3. Sexual reproduction in flowering plants

  • Pollen-Pistil interaction
  • Double fertilization
  • Post fertilization events
  • Apomixis, parthenocarpy, polyembryony

Lecture 4.Human Reproduction

  • Male and female reproductive systems
  • Microscopic anatomy of testis and ovary
  • Gametogenesis
  • Menstrual cycle

Lecture 5.Human Reproduction

  • Fertilisation, embryo development up to blastocyst formation
  • Implantation
  • Pregnancy and placenta formation
  • Parturition
  • Lactation

Lecture 6.Reproductive health

  • Need for reproductive health and prevention of sexually transmitted diseases (STD)
  • Birth control
  • Contraception and Medical Termination of Pregnancy
  • Amniocentesis
  • Infertility and assisted reproductive technologies – IVF, ZIFT, GIFT

Lecture 7.Heredity and variation

  • Mendelian Inheritance
  • Deviations from Mendel's– Incomplete dominance, Co-dominance, Multiple alleles and Inheritance of blood groups
  • Pleiotropy; Elementary idea of polygenic inheritance

Lecture 8.Heredity and variation

  • Chromosome theory of inheritance
  • Chromosomes and genes
  • Sex determination–Inhumans, birds, honeybee
  • Linkage and crossing over

Lecture 9.Heredity and variation

  • Sex linked inheritance- Haemophilia, Colour blindness
  • Mendelian disorders in humans– Thalassemia; Chromosomal disorders in humans; Down’s syndrome, Turner’s and Klinefelter’s syndromes

Lecture 10.Molecular Basis of Inheritance

  • Search for genetic material
  • DNA as genetic material
  • Structure of DNA and RNA
  • DNA packaging; DNA replication
  • Central dogma

Lecture 11.Molecular Basis of Inheritance

  • Transcription,
  • genetic code
  • translation
  • Gene expression and regulation–Lac Operon
  • Genome and human genome project
  • DNA fingerprinting

Lecture 12.Evolution

  • Origin of life
  • Biological evolution and evidence for biological evolution (Paleontological, comparative anatomy, embryology and molecular evidence)
  • Darwin’s contribution
  • Modern Synthetic theory of Evolution

Lecture 13.Evolution

  • Mechanism of evolution–Variation (Mutation and Recombination)
  • Natural Selection with examples, types of natural selection; Gene flow and genetic drift
  • Hardy-Weinberg’s principle
  • Adaptive Radiation
  • Human evolution

Lecture 14.Health and Disease

  • Pathogens
  • parasites causing human diseases (Malaria, Filariasis, Ascariasis, Typhoid, Pneumonia, common cold, amoebiasis, ring worm)

Lecture 15.Health and Disease

  • Basic concepts of immunology– vaccines
  • Cancer
  • HIV and AIDs
  • Adolescence, drug and alcohol abuse

Lecture 16.Improvement in food production

  • Plant breeding, tissue culture
  • single cell protein
  • Biofortification
  • Apiculture
  • Animal husbandry

Lecture 17.Microbes in human welfare:

  • In household food processing
  • industrial production
  • sewage treatment
  • energy generation and as biocontrol agents and biofertilizers

Lecture 18.Biotechnology and Its Applications

  • Principles and process of Biotechnology
  • Genetic engineering (Recombinant DNA technology)

Lecture 19.Biotechnology and Its Applications

  • Application of Biotechnology in health and agriculture
  • Human insulin
  • Vaccine production
  • Gene therapy
  • Genetically modified organisms-Bt crops
  • Transgenic Animals
  • Biosafety issues–Biopiracy and patents

Lecture 20.Organisms and environment

  • Habitat and niche
  • Population and ecological adaptations
  • Population interactions– mutualism, competition, predation,parasitism
  • Population attributes–growth, birth rate and death rate, agedistribution

Lecture 21.Ecosystems

  • Patterns
  • components
  • productivity and decomposition
  • Energy flow
  • Pyramids of number, biomass, energy

Lecture 22.Ecosystems

  • Nutrient cycling (carbon and phosphorous)
  • Ecological succession
  • Ecological Services– Carbon fixation, pollination, oxygen release

Lecture 23.Biodiversity and its conservation:

  • Concept of Biodiversity
  • Patterns of Biodiversity
  • Importance of Biodiversity
  • Loss of Biodiversity

Lecture 24.Biodiversity and its conservation:

  • Biodiversity conservation
  • Hotspots
  • Endangered organisms
  • Extinction
  • Red Data Book
  • Biosphere reserves
  • National parks and sanctuaries

Lecture 25.Environmental issues

  • Air pollution and its control
  • Water pollution and its control
  • Agrochemicals and their effects
  • Solid management plan
  • Greenhouse effect and global warming
  • Ozone depletion
  • Deforestation

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Frequently Asked Questions

Our students receive 1000s of calls from Top Colleges every year. You can be the next one!

The Common University Entrance Test (CUET) is a common entrance exam for admissions to undergraduate courses offered by 400+ universities, including 47 Central Universities and other top universities with the likes of Delhi University, BHU, Jamia Millia Islamia, JNU, AMU, Indraprastha University, University of Allahabad, and University of Hyderabad. The exam tests one's language, aptitude, subject knowledge, and general mental ability.
The purpose of CUET is to assess an individual's proficiency in language, comprehension of subjects studied in the twelfth grade, and overall logical and quantitative reasoning abilities. The test will be divided into three sections: Language, Subject Domain Test, and General Aptitude Test.
Yes, Each correct answer in the CUET will be awarded 5 marks, whereas each incorrect answer will result in a deduction of 1 mark. There will be no negative marking for questions left unanswered.
The National Testing Agency (NTA) will conduct CUET in a hybrid mode (computer-based test/pen-and-paper).
One can sit for the CUET multiple times, as of now. However, the Central Universities might have their own eligibility criteria for admission to their UG programs.
No, Only CUET scores will now be accepted for admissions to undergraduate programs in all the Central and other participating Universities (400+) participating in CUET
To excel in any entrance exam, it is essential to have a good grasp of the paper pattern and the topics covered. Therefore, beginning with a Mock Test is a prudent step. Here are some tips that can help you prepare efficiently for CUET:
  • Gain a comprehensive understanding of the syllabus and the exam pattern.
  • Create a realistic and workable timetable and adhere to it.
  • Focus on building a strong foundation by mastering the fundamental concepts.
  • Take regular Mock Tests, and analyze your performance to identify your strengths and weaknesses and improve your skills.

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