IPU CET BSc Nursing Syllabus 2022: Download Latest Syllabus PDF

Indraprastha University Common Entrance Test 2022 ( IPU CET )

Nidhi Gupta

Nidhi GuptaDeputy Manager

Updated on Jul 26, 2021 06:25 IST

IPU CET Syllabus is an important factor for the candidates seeking admission to the BSc Nursing course There is no syllabus for IPU CET BSc Nursing admission because the admission is based on counselling. On this page, the details of the BPT entrance exam syllabus is available. Candidates should be aware of the IPU CET exam pattern also. It will help them in making their study plan for the entrance examination. Candidates who will submit the IPU CET application form will get the chance to sit for the exam.

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July 15, 2021: IPU CET 2021 application form last date extended from July 15 to July 31. Check Here

Table of Contents
  1. Physics
  2. Chemistry

Physics

Contents of Class 11 Syllabus 

Unit I: Physical World and Measurement 

  • Physics: Scope and excitement; nature of physical laws; Physics, technology and society. 
  • Need for measurement: Units of measurement; systems of units; SI units, fundamental and derived units. Length, mass and time measurements; accuracy and precision of measuring instruments; errors in measurement; significant figures. 
  • Dimensions of physical quantities, dimensional analysis, and its applications. 

Unit II: Kinematics 

  • The frame of reference, Motion in a straight line; Position-time graph, speed, and velocity. Uniform and non-uniform motion, average speed and instantaneous velocity. Uniformly accelerated motion, velocity-time and position-time graphs, for uniformly accelerated motion (graphical treatment). 
  • Elementary concepts of differentiation and integration for describing motion. Scalar and vector quantities: Position and displacement vectors, general vectors, general vectors and notation, equality of vectors, multiplication of vectors by a real number; addition and subtraction of vectors. Relative velocity. 
  • Unit vectors. Resolution of a vector in plane-rectangular components. 
  • Scalar and Vector products of Vectors. Motion in a plane. Cases of uniform velocity and uniform acceleration- projectile motion. Uniform circular motion. 

Unit III: Laws of Motion 

  • Intuitive concept of force. Inertia, Newton’s first law of motion; momentum and Newton’s second law of motion; impulse; Newton’s third law of motion. Law of conservation of linear momentum and its applications. 
  • Equilibrium of concurrent forces. Static and Kinetic friction, laws of friction, rolling friction, lubrication. 
  • Dynamics of uniform circular motion. Centripetal force, examples of circular motion (vehicle on level circular road, vehicle on banked road). 

Unit IV: Work, Energy and Power 

  • Work done by a constant force and variable force; kinetic energy, work-energy theorem, power. 
  • The notion of potential energy, the potential energy of a spring, conservative forces; conservation of mechanical energy (kinetic and potential energies); non-conservative forces; motion in a vertical circle, elastic and inelastic collisions in one and two dimensions. 

Unit V: Motion of System of Particles and Rigid Body 

  • Centre of mass of a two-particle system, momentum conservation, and centre of mass motion. Centre of mass of a rigid body; centre of mass of the uniform rod. 
  • Moment of a force,-torque, angular momentum, conservation of angular momentum with some examples. 
  • Equilibrium of rigid bodies, rigid body rotation and equation of rotational motion, comparison of linear and rotational motions; a moment of inertia, the radius of gyration. Values of M.I. for simple geometrical objects (no derivation). Statement of parallel and perpendicular axes theorems and their applications. 

Unit VI: Gravitation 

  • Kepler’s laws of planetary motion. The universal law of gravitation. Acceleration due to gravity and its variation with altitude and depth. 
  • Gravitational potential energy; gravitational potential. Escape velocity, orbital velocity of a satellite. Geostationary satellites. 

Unit VII: Properties of Bulk Matter 

  • Elastic behaviour, Stress-strain relationship. Hooke’s law, Young’s modulus, bulk modulus, shear, modulus of rigidity, Poisson's ratio; elastic energy. 
  • Viscosity, Stokes’ law, terminal velocity, Reynold’s number, streamline and turbulent flow. Critical velocity, Bernoulli’s theorem and its applications. 
  • Surface energy and surface tension, angle of contact, excess of pressure, application of surface tension ideas to drops, bubbles and capillary rise. 
  • Heat, temperature, thermal expansion; thermal expansion of solids, liquids, and gases. Anomalous expansion. Specific heat capacity: Cp, Cv- calorimetry; change of state – latent heat. 
  • Heat transfer- conduction and thermal conductivity, convection and radiation. Qualitative ideas of Black Body Radiation, Wein’s displacement law, and Green House effect. 
  • Newton’s law of cooling and Stefan’s law. 

Unit VIII: Thermodynamics 

  • Thermal equilibrium and definition of temperature (zeroth law of Thermodynamics). Heat, work and internal energy. The first law of thermodynamics. Isothermal and adiabatic processes. 
  • The second law of thermodynamics: Reversible and irreversible processes. Heat engines and refrigerators. 

Unit IX: Behaviour of Perfect Gas and Kinetic Theory 

  • Equation of state of a perfect gas, work done on compressing a gas. 
  • Kinetic theory of gases: Assumptions, the concept of pressure. Kinetic energy and temperature; degrees of freedom, the law of equipartition of energy (statement only) and application to specific heat capacities of gases; the concept of mean free path. 

Unit X: Oscillations and Waves 

  • Periodic motion-period, frequency, displacement as a function of time. Periodic functions. Simple harmonic motion(SHM) and its equation; phase; oscillations of a spring-restoring force and force constant; energy in SHM –Kinetic and potential energies; simple pendulum-derivation of expression for its time period; free, forced and damped oscillations (qualitative ideas only), resonance. 
  • Wave motion. Longitudinal and transverse waves, speed of wave motion. Displacement relation for a progressive wave. Principle of superposition of waves, the reflection of waves, standing waves in strings and organ pipes, fundamental mode and harmonics, Beats, Doppler Effect. 

Contents of Class XII Syllabus

Unit I: Electrostatics 

  • Electric charges and their conservation. Coulomb’s law-force between two point charges, forces between multiple charges; superposition principle and continuous charge distribution. 
  • Electric field, electric field due to a point charge, electric field lines; electric dipole, electric field due to a dipole; torque on a dipole in a uniform electric field. 
  • Electric flux, statement of Gauss’s theorem and its applications to find field due to infinitely long straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell (field inside and outside) 
  • Electric potential, potential difference, electric potential due to a point charge, a dipole and system of charges: equipotential surfaces, the electrical potential energy of a system of two point charges and of electric dipoles in an electrostatic field. 
  • Conductors and insulators, free charges and bound charges inside a conductor. Dielectrics and electric polarization, 
  • Capacitors and capacitance, the combination of capacitors in series and in parallel, the capacitance of a parallel plate capacitor with and without dielectric medium between the plates, energy stored in a capacitor, Van de Graaff generator. 

Unit II: Current Electricity 

  • Electric current, the flow of electric charges in a metallic conductor, drift velocity and mobility, and their relation with electric current; Ohm’s law, electrical resistance, V-I characteristics (linear and non-linear), electrical energy and power, electrical resistivity and conductivity. 
  • Carbon resistors, colour code for carbon resistors; series and parallel combinations of resistors; temperature dependence of resistance. 
  • The internal resistance of a cell, potential difference and emf of a cell, combination of cells in series and in parallel. 
  • Kirchhoff’s laws and simple applications. Wheatstone bridge, metre bridge. 
  • Potentiometer principle and applications to measure potential difference, and for comparing emf of two cells; measurement of internal resistance of a cell.  

Unit III: Magnetic Effects of Current and Magnetism 

  • Concept of the magnetic field, Oersted’s experiment. Biot-Savart law and its application to current carrying circular loop. 
  • Ampere’s law and its applications to infinitely long straight wire, straight and toroidal solenoids. Force on a moving charge in uniform magnetic and electric fields. Cyclotron. 
  • Force on a current-carrying conductor in a uniform magnetic field. The force between two parallel current-carrying conductors-definition of ampere. Torque experienced by a current loop in a magnetic field; moving coil galvanometer-its current sensitivity and conversion to ammeter and voltmeter. 
  • Current loop as a magnetic dipole and its magnetic dipole moment. The magnetic dipole moment of a revolving electron. 
  • Magnetic field intensity due to a magnetic dipole (bar magnet) along its axis and perpendicular to its axis. Torque on a magnetic dipole (bar magnet) in a uniform magnetic field; bar magnet as an equivalent solenoid, magnetic field lines; Earth’s magnetic field and magnetic elements. 
  • Para-, dia-and ferromagnetic substances, with examples. 
  • Electromagnetic and factors affecting their strengths. Permanent magnets. 

Unit IV: Electromagnetic Induction and Alternating Currents 

  • Electromagnetic induction; Faraday’s law, induced emf and current; Lenz’s Law, Eddy currents. Self and mutual inductance. 
  • Alternating currents, peak and RMS value of alternating current/ voltage; reactance and impedance; LC oscillations (qualitative treatment only), LCR series circuit, resonance; power in AC circuits, wattles current. 
  • AC generator and transformer. 

Unit V: Electromagnetic Waves 

  • Need for displacement current. 
  • Electromagnetic waves and their characteristics (qualitative ideas only). Transverse nature of electromagnetic waves. 
  • Electromagnetic spectrum (radio waves, microwaves, infrared, visible, ultraviolet, x-rays, gamma rays) including elementary facts about their uses. 

Unit VI: Optics 

  • Reflection of light, spherical mirrors, mirror formula. Refraction of light, total internal reflection and its applications optical fibres, refraction at spherical surfaces, lenses, thin lens formula, lens maker's formula. Magnification, power of a lens, combination of thin lenses in contact combination of a lens and a mirror. Refraction and dispersion of light through a prism. 
  • Scattering of light- blue colour of the sky and reddish appearance of the sun at sunrise and sunset. 
  • Optical instruments: Human eye, image formation and accommodation, correction of eye defects (myopia and hypermetropia) using lenses. 
  • Microscopes and astronomical telescopes (reflecting and refracting) and their magnifying powers. 
  • Wave optics: Wavefront and Huygens’ principle, reflection and refraction of plane wave at a plane surface using wavefronts. 
  • Proof of laws of reflection and refraction using Huygens’ principle. 
  • Interference, Young’s double hole experiment and expression for fringe width, coherent sources and sustained interference of light. 
  • Diffraction due to a single slit, width of central maximum. 
  • Resolving power of microscopes and astronomical telescopes. Polarisation, plane polarized light; Brewster’s law, uses of plane-polarized light and Polaroids. 

Unit VII: Dual Nature of Matter and Radiation 

  • Photoelectric effect, Hertz and Lenard’s observations; Einstein’s photoelectric equation- particle nature of light. 
  • Matter waves- wave nature of particles, de Broglie relation. Davisson-Germer experiment (experimental details should be omitted; only the conclusion should be explained). 

Unit VIII: Atoms and Nuclei 

  • Alpha- particle scattering experiments; Rutherford’s model of atom; Bohr model, energy levels, hydrogen spectrum. 
  • Composition and size of nucleus, atomic masses, isotopes, isobars; isotones. 
  • Radioactivity- alpha, beta and gamma particles/ rays and their properties decay law. Mass- 

energy relation, mass defect; binding energy per nucleon and its variation with mass number, nuclear fission and fusion. 

Unit IX: Electronic Devices 

  • Energy bands in solids (qualitative ideas only), conductors, insulators and semiconductors; semiconductor diode- I-V characteristics in forward and reverse bias, diode as a rectifier; I-V characteristics of LED, photodiode, solar cell, and Zener diode; Zener diode as a voltage regulator. Junction transistor, transistor action, characteristics of a transistor; transistor as an amplifier (common emitter configuration) and oscillator. Logic gates (OR, AND, NOT, NAND and NOR). Transistor as a switch. 

Chemistry

Contents of Class XI Syllabus

Unit I: Some Basic Concepts of Chemistry 

  • General Introduction: Important and scope of chemistry. 
  • Laws of chemical combination, Dalton’s atomic theory: the concept of elements, atoms and molecules. 
  • Atomic and molecular masses. Mole concept and molar mass; percentage composition and empirical and molecular formula; chemical reactions, stoichiometry and calculations based on stoichiometry. 

Unit II: Structure of Atom 

  • Atomic number, isotopes and isobars. Concept of shells and subshells, dual nature of matter and light, de Broglie’s relationship, Heisenberg uncertainty principle, the concept of orbital, quantum numbers, shapes of s,p and d orbitals, rules for filling electrons in orbitals- Aufbau principle, Pauli exclusion principles and Hund’s rule, electronic configuration of atoms, stability of half-filled and completely filled orbitals. 

Unit III: Classification of Elements and Periodicity in Properties 

  • Modern periodic law and long form of the periodic table, periodic trends in properties of elements- atomic radii, ionic radii, ionization enthalpy, electron gain enthalpy, electronegativity, valence. 

Unit IV: Chemical Bonding and Molecular Structure 

  • Valence electrons, ionic bond, covalent bond, bond parameters, Lewis structure, the polar character of covalent bond, valence bond theory, resonance, the geometry of molecules, VSEPR theory, the concept of hybridisation involving s, p and d orbitals and shapes of some simple molecules, molecular orbital theory of homonuclear diatomic molecules (qualitative idea only). Hydrogen bond. 

Unit V: States of Matter: Gases and Liquids 

  • Three states of matter, intermolecular interactions, types of bonding, melting and boiling points, the role of gas laws of elucidating the concept of the molecule, Boyle’s law, Charle’s law, Gay Lussac’s law, Avogadro’s law, ideal behaviour of gases, empirical derivation of the gas equation. Avogadro number, ideal gas equation. Kinetic energy and molecular speeds (elementary idea), deviation from ideal behaviour, liquefaction of gases, critical temperature. 
  • Liquid State- Vapour pressure, viscosity and surface tension (qualitative idea only, no mathematical derivations). 

Unit VI: Thermodynamics 

  • The first law of thermodynamics-internal energy and enthalpy, heat capacity and specific heat, measurement of U and H, Hess’s law of constant heat summation, enthalpy of: bond dissociation, combustion, formation, atomisation, sublimation, phase transition, ionisation, solution and dilution. 
  • Introduction of entropy as state function, Second law of thermodynamics, Gibbs energy change for spontaneous and non-spontaneous process, criteria for equilibrium and spontaneity. 
  • Third law of thermodynamics- Brief introduction. 

Unit VII: Equilibrium 

  • Equilibrium in physical and chemical processes, dynamic nature of equilibrium, the law of chemical equilibrium, equilibrium constant, factors affecting equilibrium-Le Chatelier’s principle; ionic equilibrium- ionization of acids and bases, strong and weak electrolytes, degree of ionization, ionization of polybasic acids, acid strength, the concept of PH., Hydrolysis of salts (elementary idea), buffer solutions, Henderson equation, solubility product, common ion effect (with illustrative examples).

Unit VIII: Redox Reactions 

  • Concept of oxidation and oxidation and reduction, redox reactions oxidation number, balancing redox reactions in terms of loss and gain of electron and change in oxidation numbers. 

Unit IX: Hydrogen 

  • Occurrence, isotopes, preparation, properties and uses of hydrogen; hydrides-ionic, covalent and interstitial; physical and chemical properties of water, heavy water; hydrogen peroxide- preparation, reactions, uses and structure; 

Unit X: s-Block Elements (Alkali and Alkaline earth metals) 

  • Group I and group 2 elements: 
  • General introduction, electronic configuration, occurrence, anomalous properties of the first element of each group, diagonal relationship, trends in the variation of properties (such as ionization enthalpy, atomic and ionic radii), trends in chemical reactivity with oxygen, water, hydrogen and halogens; uses. 
  • Preparation and Properties of Some important Compounds: 
  • Sodium carbonate, sodium chloride, sodium hydroxide and sodium hydrogen carbonate, biological importance of sodium and potassium. 
  • Industrial use of lime and limestone, biological importance of Mg and Ca. 

Unit XI: Some p-Block Elements 

  • General Introduction to p-Block Elements. 
  • Group 13 elements: General introduction, electronic configuration, occurrence, variation of properties, oxidation states, trends in chemical reactivity, anomalous properties of the first element of the group; Boron, some important compounds: borax, boric acids, boron hydrides. Aluminium: uses, reactions with acids and alkalies. 
  • General 14 elements: General introduction, electronic configuration, occurrence, variation of properties, oxidation states, trends in chemical reactivity, anomalous behaviour of the first element. Carbon, allotropic forms, physical and chemical properties: uses of some important compounds: oxides. 
  • Important compounds of silicon and a few uses: silicon tetrachloride, silicones, silicates and zeolites, their uses. 

Unit XII: Organic Chemistry- Some Basic Principles and Techniques 

  • General introduction, methods of purification qualitative and quantitative analysis, classification and IUPAC nomenclature of organic compounds. 
  • Electronic displacements in a covalent bond: inductive effect, electromeric effect, resonance and hyperconjugation. 
  • Homolytic and heterolytic fission of a covalent bond: free radicals, carbocations, carbanions; electrophiles and nucleophiles, types of organic reactions. 

Unit XIII: Hydrocarbons 

  • Alkanes- Nomenclature, isomerism, conformations (ethane only), physical properties, chemical reactions including free radical mechanism of halogenation, combustion and pyrolysis. 
  • Alkanes-Nomenclature, the structure of double bond (ethene), geometrical isomerism, physical properties, methods of preparation: chemical reactions: addition of hydrogen, halogen, water, hydrogen halides (Markovnikov’s addition and peroxide effect), ozonolysis, oxidation, mechanism of electrophilic addition. 
  • Alkynes-Nomenclature, the structure of triple bond (ethyne), physical properties, methods of preparation, chemical reactions: acidic character of alkynes, addition reaction of- hydrogen, halogens, hydrogen halides and water. 
  • Aromatic hydrocarbons- Introduction, IUPAC nomenclature; Benzene; resonance, aromaticity; chemical properties: mechanism of electrophilic substitution- Nitration sulphonation, halogenation, Friedel Craft’s alkylation and acylation; directive influence of the functional group in mono-substituted benzene; carcinogenicity and toxicity. 

Unit XIV: Environmental Chemistry 

  • Environmental pollution: Air, water and soil pollution, chemical reactions in the atmosphere, smogs, major atmospheric pollutants; acid rain ozone and its reactions, effects of depletion of the ozone layer, greenhouse effect and global warming pollution due to industrial wastes; green chemistry as an alternative tool for reducing pollution, strategy for control of environmental pollution. 

Contents of Class 12 Syllabus

Unit I: Solid State 

  • Classification of solids based on different binding forces; molecular, ionic covalent and metallic solids, amorphous and crystalline solids (elementary idea), unit cell in two dimensional and three-dimensional lattices, calculation of density of unit cell, packing in solids, packing efficiency, voids, number of atoms per unit cell in a cubic unit cell, point defects, electrical and magnetic properties, Band theory of metals, conductors, semiconductors and insulators. 

Unit II: Solutions 

  • Types of solutions, expression of concentration of solutions of solids in liquids, the solubility of gases in liquids, solid solutions, colligative properties- the relative lowering of vapour pressure, Raoult’s law, the elevation of boiling point, depression of freezing point, osmotic pressure, determination of molecular masses using colligative properties abnormal molecular mass. Van Hoff factor. 

Unit III: Electrochemistry 

  • Redox reactions, conductance in electrolytic solutions, specific and molar conductivity variation of conductivity with concentration, Kohlrausch’s Law, electrolysis and Laws of electrolysis (elementary idea), dry cell- electrolytic cells and Galvanic cells; lead accumulator, EMF of a cell, standard electrode potential, Relation between Gibbs energy change and EMF of a cell, fuel cells; corrosion. 

Unit IV: Chemical Kinetics 

  • Rate of a reaction (average and instantaneous), factors affecting rates of reaction; concentration, temperature, catalyst; order and molecularity of a reaction; rate law and specific rate constant, integrated rate equations and half-life (only for zero and first-order reactions); concept of collision theory ( elementary idea, no mathematical treatment). Activation energy, Arrhenius equation. 

Unit V: Surface Chemistry 

  • Adsorption-physisorption and chemisorption; factors affecting adsorption of gases on solids, catalysis homogeneous and heterogeneous, activity and selectivity: enzyme catalysis; colloidal state: the distinction between true solutions, colloids and suspensions; lyophilic, lyophobic multimolecular and macromolecular colloids; properties of colloids; Tyndall effect, Brownian movement, electrophoresis, coagulation; emulsions- types of emulsions. 

Unit VI: General Principles and Processes of Isolation of Elements 

  • Principles and methods of extraction- concentration, oxidation, reduction electrolytic method and refining; occurrence and principles of extraction of aluminium, copper, zinc and iron. 

Unit VII: p- Block Elements 

  • Group 15 elements: General introduction, electronic configuration, occurrence, oxidation states, trends in physical and chemical properties; preparation and properties of ammonia and nitric acid, oxides of nitrogen (structure only); Phosphorous- allotropic forms; compounds of phosphorous: preparation and properties of phosphine, halides (PCI3, PCI5) and oxoacids (elementary idea only). 
  • Group 16 elements: General introduction, electronic configuration, oxidation states, occurrence, trends in physical and chemical properties; dioxygen: preparation, properties and uses; classification of oxides; ozone. Sulphur - allotropic forms; compounds of sulphur: preparation, preparation, properties and uses of sulphur dioxide; sulphuric acid: industrial process of manufacture, properties and uses, oxoacids of sulphur (structures only). 
  • Group 17 elements: General introduction, electronic configuration, oxidation states, occurrence, trends in physical and chemical properties; compounds of halogens: preparation, properties and uses of chlorine and hydrochloric acid, interhalogen compounds oxoacids of halogens (structures only). 
  • Group 18 elements: General introduction, electronic configuration, occurrence, trends in physical and chemical properties, uses. 

Unit VIII: d and f Block Elements 

  • General introduction, electronic configuration, characteristics of transition metals, general trends in properties of the first-row transition metals- metallic character, ionization enthalpy, oxidation states, ionic radii, colour, catalytic property, magnetic properties, interstitial compounds, alloy formation. Preparation and properties of K2Cr2O7 and KMnO4. 
  • Lanthanoids- electronic configuration, oxidation states, chemical reactivity, and lanthanoid contraction and its consequences. 
  • Actinoids: Electronic configuration, oxidation states and comparison with lanthanoids. 

Unit IX: Coordination Compounds 

  • Coordination compounds: Introduction, ligands, coordination number, colour, magnetic properties and shapes, IUPAC nomenclature of mononuclear coordination compounds, isomerism (structural and stereo) bonding, Werner's theory VBT, CFT; the importance of coordination compounds (in qualitative analysis, biological systems). 

Unit X: Haloalkanes and Haloarenes 

  • Haloalkanes: Nomenclature, nature of C -X bond, physical and chemical properties, mechanism of substitution reactions. Optical rotation. 
  • Haloarenes: Nature of C-X bond, substitution reactions (directive influence of halogen for monosubstituted compounds only). 
  • Uses and environment effects of - dichloromethane, trichloromethane, tetrachloromethane, iodoform, freons, DDT. 

Unit XI: Alcohols, Phenols and Ethers 

  • Alcohols: Nomenclature, methods of preparation, physical and chemical properties (of primary alcohols only); identification of primary, secondary and tertiary alcohols; mechanism of dehydration, uses with special reference to methanol and ethanol. 
  • Phenols: Nomenclature, methods of preparation, physical and chemical properties, acidic nature of phenol, electrophilic substitution reactions, uses of phenols. 
  • Ethers: Nomenclature, methods of preparation, physical and chemical properties uses. 

Unit XII: Aldehydes, Ketones and Carboxylic Acids 

  • Aldehydes and Ketones: Nomenclature, nature of carbonyl group, methods of preparation, physical and chemical properties; and mechanism of nucleophilic addition, the reactivity of alpha hydrogen in aldehydes; uses. 
  • Carboxylic Acids: Nomenclature, acidic nature, methods of preparation, physical and chemical properties; uses. 
  • Amines: Nomenclature, classification, structure, methods of preparation, physical and chemical properties, uses, identification of primary secondary and tertiary amines. 
  • Cyanides and Isocyanides- will be mentioned at relevant places. 
  • Diazonium salts: Preparation, chemical reactions and importance in synthetic organic chemistry. 

Unit XIV: Biomolecules 

  • Carbohydrates- Classification (aldoses and ketoses), monosaccharide (glucose and fructose), D.L. configuration, oligosaccharides (sucrose, lactose, maltose), polysaccharides (starch, cellulose, glycogen): importance. 
  • Proteins- Elementary idea of - amino acids, peptide bond, polypeptides, proteins, primary structure, secondary structure, tertiary structure and quaternary structure (qualitative idea only), denaturation of proteins; enzymes. 
  • Hormones- Elementary idea (excluding structure). 
  • Vitamins- Classification and function. 
  • Nucleic Acids: DNA and RNA 

Unit XV: Polymers 

  • Classification- Natural and synthetic, methods of polymerization (addition and condensation), copolymerization. Some important polymers: natural and synthetic like polyesters, bakelite; rubber, Biodegradable and non-biodegradable polymers. 

Unit XVI: Chemistry in Everyday Life 

  • Chemicals in medicines- analgesics, tranquillizers, antiseptics, disinfectants, antimicrobials, antifertility drugs, antibiotics, antacids, antihistamines. 
  • Chemicals in food- preservatives, artificial sweetening agents, elementary idea of antioxidants. 
  • Cleansing agents- soaps and detergents, cleansing action.

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Answered a week ago

The IPU CET results for 2025 for admission in (VIPS) Vivekananda Institute of Professional Studies is expected in may 2025  but the exact result date will depend on the exam schedule released by Guru Gobind Singh Indraprastha University (GGSIPU). Generally result is announced within few weeks after

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ANISH SHARMA

Contributor-Level 7

Answered 3 weeks ago

The Vivekananda Institute of Professional Studies (VIPS) in New Delhi does not follow CUET merit list for admission it follow CUET merit list but for remaining seats it follow CUET  merit list for most of the course it follow CET merit list

BA LBB- opening rank is 1724 and closing rank is 2527  for s

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ANISH SHARMA

Contributor-Level 7

Answered 3 weeks ago

The IPU CET score is valid only for the current admission cycle in which the exam is conducted. This means:

Candidates can use their score to apply for admissions to the respective courses only in the same academic year for which the test was taken. If a candidate wishes to seek admission in subseque

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Akansha Karan

Beginner-Level 3

Answered 3 weeks ago

Candidates can apply online via the official GGSIPU website by filling out the application form, uploading documents, and paying the application fee. The application fee for IPU CET is ?1,200 per course. The university provides a correction window for editing specific details in the application form

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Parul Pandey

Beginner-Level 3

Answered 3 weeks ago

Here are the IPU CET cutoffs for Dr. Akhilesh Das Gupta Institute of Technology and Management (ADGITM) for the years 2022 and 2023:

  1. B.Tech. in Computer Science and Engineering:

    • 2023: Round 1 cutoff – 56,175, Round 2 cutoff – 69,612
    • 2022: Round 1 cutoff – 103,335, Round 2 cutoff – 103,210
  2. B.Tech. in Inf

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Shiv Kumar

Contributor-Level 10

Answered 4 weeks ago

No, the IPU CET counselling fee of ?1,000 is non-refundable.

This applies even if:

  • You withdraw from the counselling process.
  • You do not get a seat.
  • You decide not to participate in subsequent rounds of counselling.

However, if you pay the part academic fee (usually ?40,000) after seat allotment, that am

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Dhanya B

Contributor-Level 10

Answered 4 weeks ago

If you are not satisfied with the seat allotted in IPU CET counselling, you have the following options:

  • Participate in the Next Round of Counselling
    You can opt for the next counselling round to get a better seat or college.
    Ensure you follow the rules for seat upgradation, if applicable, during this p

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Rachit Chatterjee

Beginner-Level 3

Answered 4 weeks ago

IPU CET counselling is the process conducted by Guru Gobind Singh Indraprastha University (GGSIPU) for allotting seats to candidates based on their performance in the IPU CET or other relevant entrance exams, depending on the course. Counselling is conducted in online mode. Candidates must register

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Ishita Patra

Beginner-Level 3

Answered a month ago

Yes, you can get admission to B.Tech at VIPS with a JEE Main score or through management quota.

 

 

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Utkarsh Jain

Contributor-Level 8

Answered a month ago

Yes, IPU CET is a mandatory exam for admission to BBA at Jagan Institute of Management Studies, Rohini - IPU. Candidates need to qualify for the exam with a valid score. However, candidates without IPU CET score can also apply for the programme through Management Quota. The eligibility criteria is c

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Bhumika Khandelwal

Contributor-Level 10

8 Institutes accepting IPU CET

B.Sc.(Hons.) in Nursing
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