AIIMS Syllabus 2020 (Released) - Check Out the AIIMS Syllabus for Physics, Chemistry, Biology, Exam Dates, Pattern at

AIIMS Syllabus 2020 - Syllabus for AIIMS 2020 is available by the All India Institute of Medical Sciences, New Delhi (AIIMS) at and Candidates can view AIIMS Syllabus 2020 at The AIIMS Syllabus 2020 topic for all subjects like physics, chemistry, biology, general knowledge, and general aptitude. With this AIIMS Entrance Exam Syllabus 2020, candidates have an idea to prepare well for the Exams. Candidates can check and download the AIIMS Syllabus 2020 from this Article.

by Geetha Nishad | Last updated: Aug 08, 2020

AIIMS Syllabus 2020 (Released) - Check Out the AIIMS Syllabus for Physics, Chemistry, Biology, Exam Dates, Pattern at

AIIMS Syllabus 2020 (Released) - Check Out the AIIMS Syllabus for Physics, Chemistry, Biology, Exam Dates, Pattern at

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AIIMS Syllabus 2020

New Update: AIIMS Syllabus 2020 - Candidates who are looking for the AIIMS NORCET Syllabus 2020 must check this article completely, the AIIMS Syllabus 2020 is released by All India Institute of Medical Sciences, New Delhi (AIIMS) officials are going to conduct a Nursing Officer Recruitment Common Eligibility Test 2020 (Online CBT) for the applied candidates. Candidates who want to score well in the AIIMS Delhi Nursing Officer Exam 2020 must prepare from this AIIMS Syllabus 2020. Candidates go through this article and get the AIIMS Syllabus 2020.

Check - AIIMS Syllabus 2020

What are the AIIMS Syllabus 2020?

AIIMS Delhi Nursing Officer Concerned Subjects Syllabus

  • Pharmaceutical Chemistry
  • First aid
  • Psychology
  • Mental Health
  • Fundamentals of Nursing
  • Medical-Surgical Nursing
  • Health Education & Community Pharmacy
  • Toxicology
  • Pharmacology
  • Nutrition
  • Clinical Pathology
  • Microbiology
  • Biochemistry
  • Environmental Hygiene
  • Accountancy
  • Sociology
  • Nursing Management
  • Pharmacognosy
  • Pharmaceutics
  • Midwifery & Gynaecological Nursing

AIIMS NORCET General Knowledge Syllabus

  • Current Affairs
  • General Science
  • Famous Books & Authors
  • Artists
  • Tourism
  • Sports
  • Civics
  • Literature
  • Indian Politics
  • Indian Economy
  • Famous Places in India
  • Biology
  • Countries and Capitals
  • Rivers, Lakes, and Seas
  • Environmental Issues
  • Indian Parliament
  • Indian History
  • Inventions and Discoveries
  • Famous Days & Dates
  • Geography

NORCET Aptitude Syllabus

  • Simple Interest
  • Compound Interest
  • Time and work
  • Problems on H.C.F, L.C.M & ages
  • Ratio and Proportion
  • Logarithm
  • Average
  • Numbers
  • Surds and Indices
  • Races and Games
  • Probability
  • Simplification
  • Square Root and Cube Root
  • Boats & streams
  • Chain rule
  • Volume and Surface Area
  • Allegation or Mixture
  • Height & distance
  • Time and Distance
  • Permutation & Combination

How to Know the AIIMS Syllabus 2020 for Physics?

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 consistently charged thin spherical shell (area inside and outside) Electric potential, potential difference, electric potential due to a point charge, a dipole and system of costs: equipotential surfaces, electrical potential energy of a network of two point charges and of electric dipoles in an electrostatic field
  • Conductors and insulators, free fees, and bound charges inside a conductor. Dielectrics and electric polarization, capacitors and capacitance, combination of capacitors in series and 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, 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.
  • 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, Meter 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, Magnetic dipole moment of a revolving electron, Magnetic field intensity due to a magnetic dipole 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 fibers, refraction at spherical surfaces, lenses, thin lens formula, lens maker's formula. Magnification, the power of a lens, a 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 color 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.
  • It is resolving power of microscopes and astronomical telescopes. Polarization, 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.

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, the 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, components of a conductor, transistor as an amplifier and oscillator. Logic gates (OR, AND, NOT, NAND & NOR).

AIIMS Syllabus 2020- Biology

Students Can go through the following table for Biology Syllabus.






Reproduction in organisms: Reproduction, a characteristic feature of all organisms for the continuation of species; Modes of reproduction – Asexual and sexual; Asexual reproduction; Modes-Binary fission, sporulation, budding, gemmule, fragmentation; vegetative propagation in plants.

Heredity and variation: Mendelian Inheritance; Deviations from Mendelism-Incomplete dominance, Co-dominance, Multiple alleles and Inheritance of blood groups, Pleiotropy; Elementary idea of polygenic inheritance; Chromosome theory of inheritance; Chromosomes and genes; Sex determination-In humans, birds, honey bee; Linkage and crossing over; Sex-linked inheritance-Haemophilia, Colour blindness; Mendelian disorders in humans-Thalassemia; Chromosomal disorders in humans; Down’s syndrome, Turner’s and Klinefelter’s syndromes.

Health and Disease; Pathogens; parasites causing human diseases (Malaria, Filariasis, Ascariasis. Typhoid, Pneumonia, common cold, amoebiasis, ringworm); Basic concepts of immunology-vaccines; Cancer, HIV and AIDS; Adolescence, drug and alcohol abuse.

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

Organisms and environment: Habitat

Sexual reproduction in flowering plants: Flower structure; Development of male and female gametophytes; Pollination-types, agencies, and examples; Outbreeding devices; Pollen-Pistil interaction; Double fertilization; Post fertilization events. Development of endosperm and embryo, Development of seed and formation of fruit; Special modes-apomixis, parthenocarpy, polyembryony; Significance of seed and fruit formation.

Molecular basis of Inheritance: Search for genetic material and DNA as genetic material; Structure of DNA and RNA; DNA packaging; DNA replication; Central dogma; Transcription, genetic code, translation; Gene expression and regulation-Lac Operon; Genome and human genome project; DNA fingerprinting.

Improvement in food production; Plant breeding, tissue culture, single-cell protein, Biofortification; Apiculture and Animal husbandry.

Application of Biotechnology in health and agriculture: Human insulin and vaccine production, gene therapy; genetically modified organisms- Bt crops; Transgenic Animals; Biosafety issues- Biopiracy and patents.


Human Reproduction: Male and female reproductive systems; Microscopic anatomy of testis and ovary; Gametogenesis spermatogenesis & oogenesis; Menstrual cycle; Fertilisation, embryo development up to blastocyst formation, implantation; Pregnancy and placenta formation (Elementary idea); Parturition (Elementary idea); Lactation (Elementary idea).

Evolution: Origin of life; Biological evolution and evidence for biological evolution from Paleontology, comparative anatomy, embryology, and molecular evidence); Darwin’s contribution, Modern Synthetic Theory of Evolution; Mechanism of evolution-Variation (Mutation and Recombination) and Natural Selection with examples, types of natural selection; Gene flow and genetic drift; Hardy-Weinberg’s principle; Adaptive Radiation; Human evolution.

Microbes in human welfare: In household food processing, industrial production, sewage treatment, energy generation, and as biocontrol agents and biofertilizers.



Reproductive health: Need for reproductive health and prevention of sexually transmitted diseases (STD); Birth control Need and Methods, Contraception and Medical Termination of Pregnancy (MTP); Amniocentesis; Infertility and assisted reproductive technologies – IVF, ZIFT, GIFT (Elementary idea for general awareness).





What is the AIIMS Syllabus 2020 for Chemistry?

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: relative lowering of vapor 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), the 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, 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 aluminum, 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. Sulfur – allotropic forms
  • Compounds of sulfur: preparation, features, and uses of sulfur dioxide; sulphuric acid: industrial process of manufacture, properties, and uses, oxoacids of sulfur (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, color, catalytic property, magnetic properties, interstitial compounds, alloy formation. Preparation and features of K2Cr2O7 and KMnO4.
  • Lanthanides- electronic configuration, oxidation states, chemical reactivity, and lanthanide contraction and its consequences.
  • Actinides- Electronic configuration, oxidation states, and comparison with lanthanides.

UNIT IX: Coordination Compounds

  • Coordination compounds: Introduction, ligands, coordination number, color, 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 particular 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.

UNIT XIII: Organic Compounds Containing Nitrogen

  • 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, and maltose), and 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, tranquilizers, 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.

AIIMS Syllabus 2020- General Knowledge and General Awareness



India Independence


International Organizations

Computer Science

Current Affairs

AIIMS Syllabus 2020-Aptitude & Logical Thinking


Blood Relations

Coding and Decoding

Clock Concepts


Mirror Images

Ode One Out

Venn Diagrams

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Tags: AIIMS Exam 2020,AIIMS Exam 2020 Syllabus 2023, AIIMS Exam 2020 Syllabus, AIIMS Exam 2020 2023 Syllabus, Syllabus of AIIMS Exam 2020 2023

AIIMS Exam 2020 Syllabus 2023 - FAQ

1. What is the Exam Pattern for AIIMS?
Subject Names Questions Marks
Concerned Subjects 180 180
General Knowledge & Aptitude 20 20
Total 200 Questions 200 Marks
2. How many questions will be asked in the Delhi Nursing Officer Exam 2020?  

There will be 200 questions in the Delhi Nursing Officer Exam 2020.

3. What type of questions will be asked in the AIIMS New Delhi Nursing Officer Exam 2020?  

All questions will be Multiple Choice Questions in the AIIMS New Delhi Nursing Officer Exam 2020.

4. What is the minimum qualifying marks for the AIIMS NORCET Exam 2020?  

The minimum qualifying marks for AIIMS NORCET Exam 2020 is 50 % for UR/ EWS, 45 % for OBC & 40 % for SC & ST. For PWBD additional 5% relaxation will be provided.

5. What is the duration of the AIIMS Delhi Nursing Officer Exam 2020?  

The duration of the AIIMS Delhi Nursing Officer Exam 2020 is 180 minutes (3 hours).

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