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NEET UG (Practice Series) Chemistry Syllabus

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NEET UG (Practice Series) Chemistry Syllabus

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The NEET Chemistry Syllabus is important for students preparing for the NEET UG exam. It is released by the National Testing Agency (NTA) and covers topics from Class 11 and Class 12, focusing on physical, organic, and inorganic sections. This syllabus helps candidates understand the Chemistry topics which are asked in NEET UG exam. NEET chemistry syllabus 2026 aligns with NCERT books for better preparation.

Students often search for the NEET Chemistry Syllabus PDF to download and study offline. It is available here. Also, NEET Chemistry chapter wise weightage is provided for better exam preparation. Scroll down and check NEET organic, inorganic and physical chemistry syllabus.

NEET Chemistry Syllabus, Overview

The NEET chemistry syllabus 2026 includes 20 units from Class 11 and Class 12. NTA has revised it to include practical chemistry topics like qualitative salt analysis and enthalpy experiments. Some chapters, such as states of matter and hydrogen, were removed, making the syllabus more focused.

The NEET Chemistry Syllabus for organic, inorganic, and physical is balanced. Download the NEET Chemistry Syllabus PDF from the NTA website or from here for a complete list. This helps in better planning of study time.

NEET Chemistry Syllabus 2026

Here is the complete NEET UG Chemistry syllabus provided for students to refer and prepare accordingly. The PDF for the same is attached below.

Unit

Title

Topics

PHYSICAL CHEMISTRY

Unit 1

Some Basic Concepts in Chemistry

Matter and its nature, Dalton's atomic theory: Concept of atom, molecule, element, and compound:: Laws of chemical combination; Atomic and molecular masses, mole concept, molar mass, percentage composition, empirical and molecular formulae: Chemical equations and stoichiometry.

Unit 2

Atomic Structure

Nature of electromagnetic radiation, photoelectric effect; Spectrum of the hydrogen atom. Bohr model of a hydrogen atom - its postulates, derivation of the relations for the energy of the electron and radii of the different orbits, limitations of Bohr's model; Dual nature of matter, de Broglie's relationship. Heisenberg uncertainty principle. Elementary ideas of quantum mechanics, quantum mechanical model of the atom, its important features. Concept of atomic orbitals as one-electron wave functions: Variation of Ψ and Ψ2 with r for 1s and 2s orbitals; various quantum numbers (principal, angular momentum, and magnetic quantum numbers) and their significance; shapes of s, p, and d - orbitals, electron spin and spin quantum number: Rules for filling electrons in orbitals – Aufbau principle. Pauli's exclusion principle and Hund's rule, electronic configuration of elements, extra stability of half-filled and completely filled orbitals.

Unit 3

Chemical Bonding and Molecular Structure

Kossel - Lewis approach to chemical bond formation, the concept of ionic and covalent bonds. Ionic Bonding: Formation of ionic bonds, factors affecting the formation of ionic bonds; calculation of lattice enthalpy. Covalent Bonding: Concept of electronegativity. Fajan’s rule, dipole moment: Valence Shell Electron Pair Repulsion (VSEPR) theory and shapes of simple molecules. Quantum mechanical approach to covalent bonding: Valence bond theory - its important features, the concept of hybridization involving s, p, and d orbitals; Resonance. Molecular Orbital Theory - Its important features. LCAOs, types of molecular orbitals (bonding, antibonding), sigma and pi-bonds, molecular orbital electronic configurations of homonuclear diatomic molecules, the concept of bond order, bond length, and bond energy. Elementary idea of metallic bonding. Hydrogen bonding and its applications.

Unit 4

Chemical Thermodynamics

Fundamentals of thermodynamics: System and surroundings, extensive and intensive properties, state functions, types of processes. The first law of thermodynamics - Concept of work, heat internal energy and enthalpy, heat capacity, molar heat capacity; Hess’s law of constant heat summation; Enthalpies of bond dissociation, combustion, formation, atomization, sublimation, phase transition, hydration, ionization, and solution. The second law of thermodynamics - Spontaneity of processes; ∆S of the universe and ∆G of the system as criteria for spontaneity. ∆Gº (Standard Gibbs energy change) and equilibrium constant.

Unit 5

Solutions

Different methods for expressing the concentration of solution - molality, molarity, mole fraction, percentage (by volume and mass both), the vapour pressure of solutions and Raoult's Law - Ideal and non-ideal solutions, vapour pressure - composition, plots for ideal and non-ideal solutions; Colligative properties of dilute solutions - a relative lowering of vapour pressure, depression of freezing point, the elevation of boiling point and osmotic pressure; Determination of molecular mass using colligative properties; Abnormal value of molar mass, van’t Hoff factor and its significance.

Unit 6

Equilibrium

Meaning of equilibrium, the concept of dynamic equilibrium. Equilibria involving physical processes: Solid-liquid, liquid-gas and solid-gas equilibria, Henry's law. General characteristics of equilibrium involving physical processes. Equilibrium involving chemical processes: Law of chemical equilibrium, equilibrium constants (Kp and Kc) and their significance, the significance of ∆G and ∆Gº in chemical equilibrium, factors affecting equilibrium concentration, pressure, temperature, the effect of catalyst; Le Chatelier’s principle. Ionic equilibrium: Weak and strong electrolytes, ionization of electrolytes, various concepts of acids and bases (Arrhenius, Bronsted-Lowry and Lewis) and their ionization, acid-base equilibria (including multistage ionization) and ionization constants, ionization of water. pH scale, common ion effect, hydrolysis of salts and pH of their solutions, the solubility of sparingly soluble salts and solubility products, buffer solutions.

Unit 7

Redox Reactions and Electrochemistry

Electronic concepts of oxidation and reduction, redox reactions, oxidation number, rules for assigning oxidation number, balancing of redox reactions. Electrolytic and metallic conduction, conductance in electrolytic solutions, molar conductivities and their variation with concentration: Kohlrausch’s law and its applications. Electrochemical cells - Electrolytic and Galvanic cells, different types of electrodes, electrode potentials including standard electrode potential, half-cell and cell reactions, emf of a Galvanic cell and its measurement: Nernst equation and its applications; Relationship between cell potential and Gibbs' energy change: Dry cell and lead accumulator; Fuel cells.

Unit 8

Chemical Kinetics

Rate of a chemical reaction, factors affecting the rate of reactions: concentration, temperature, pressure, and catalyst; elementary and complex reactions, order and molecularity of reactions, rate law, rate constant and its units, differential and integral forms of zero and first-order reactions, their characteristics and half-lives, the effect of temperature on the rate of reactions, Arrhenius theory, activation energy and its calculation, collision theory of bimolecular gaseous reactions (no derivation).

INORGANIC CHEMISTRY

Unit 9

Classification of Elements and Periodicity in Properties

Modern periodic law and present form of the periodic table, s, p, d and f block elements, periodic trends in properties of elements’ atomic and ionic radii, ionization enthalpy, electron gain enthalpy, valence, oxidation states, and chemical reactivity.

Unit 10

P-Block Elements

Group 13 to Group 18 Elements General Introduction: Electronic configuration and general trends in physical and chemical properties of elements across the periods and down the groups; unique behaviour of the first element in each group.

Unit 11

d- and f-Block Elements

Transition Elements: General introduction, electronic configuration, occurrence and characteristics, general trends in properties of the first-row transition elements - physical properties, ionization enthalpy, oxidation states, atomic radii, colour, catalytic behaviour, magnetic properties, complex formation, interstitial compounds, alloy formation; Preparation, properties, and uses of K2Cr2O7, and KMnO4. Inner Transition Elements: Lanthanoids - Electronic configuration, oxidation states, and lanthanoid contraction. Actinoids - Electronic configuration and oxidation states.

Unit 12

Co-ordination Compounds

Introduction to coordination compounds. Werner's theory; ligands, coordination number, denticity, chelation; IUPAC nomenclature of mononuclear coordination compounds, isomerism; Bonding-Valence bond approach and basic ideas of Crystal field theory, colour and magnetic properties; Importance of coordination compounds (in qualitative analysis, extraction of metals and in biological systems).

ORGANIC CHEMISTRY

Unit 13

Purification and Characterisation of Organic Compounds

Purification - Crystallization, sublimation, distillation, differential extraction, and chromatography - principles and their applications. Qualitative analysis - Detection of nitrogen, sulphur, phosphorus, and halogens. Quantitative analysis (basic principles only) - Estimation of carbon, hydrogen, nitrogen, halogens, sulphur, phosphorus. Calculations of empirical formulae and molecular formulae: Numerical problems in organic quantitative analysis.

Unit 14

Some Basic Principles of Organic Chemistry

Tetravalency of carbon: Shapes of simple molecules - hybridization (s and p): Classification of organic compounds based on functional groups: and those containing halogens, oxygen, nitrogen, and sulphur; Homologous series: Isomerism - structural and stereoisomerism. Nomenclature (Trivial and IUPAC). Covalent bond fission - Homolytic and heterolytic: free radicals, carbocations, and carbanions; stability of carbocations and free radicals, electrophiles, and nucleophiles. Electronic displacement in a covalent bond: - Inductive effect, electromeric effect, resonance, and hyperconjugation. Common types of organic reactions - Substitution, addition, elimination, and rearrangement.

Unit 15

Hydrocarbons

Classification, isomerism, IUPAC nomenclature, general methods of preparation, properties, and reactions. Alkanes - Conformations: Sawhorse and Newman projections (of ethane): Mechanism of halogenation of alkanes. Alkenes - Geometrical isomerism: Mechanism of electrophilic addition: addition of hydrogen, halogens, water, hydrogen halides (Markownikoff's and peroxide effect): Ozonolysis and polymerization. Alkynes - Acidic character: Addition of hydrogen, halogens, water, and hydrogen halides: Polymerization. Aromatic hydrocarbons - Nomenclature, benzene - structure and aromaticity: Mechanism of electrophilic substitution: halogenation, nitration. Friedel-Craft's alkylation and acylation, directive influence of the functional group in monosubstituted benzene.

Unit 16

Organic Compounds Containing Halogens

General methods of preparation, properties, and reactions; Nature of C-X bond; Mechanisms of substitution reactions. Uses; Environmental effects of chloroform, iodoform, freons, and DDT.

Unit 17

Organic Compounds Containing Oxygen

General methods of preparation, properties, reactions, and uses. Alcohols, Phenols, and Ethers: Alcohols: Identification of primary, secondary, and tertiary alcohols: mechanism of dehydration. Phenols: Acidic nature, electrophilic substitution reactions: halogenation, nitration, and sulphonation. Reimer-Tiemann reaction. Ethers: Structure. Aldehydes and Ketones: Nature of carbonyl group; Nucleophilic addition to >C=O group, relative reactivities of aldehydes and ketones; Important reactions - Nucleophilic addition reactions (addition of HCN, NH3, and its derivatives), Grignard reagent; oxidation; reduction (Wolf Kishner and Clemmensen); the acidity of α-hydrogen, aldol condensation, Cannizzaro reaction, Haloform reaction, Chemical tests to distinguish between aldehydes and Ketones. Carboxylic Acids: Acidic strength and factors affecting it.

Unit 18

Organic Compounds Containing Nitrogen

General methods of preparation. Properties, reactions, and uses. Amines: Nomenclature, classification, structure, basic character, and identification of primary, secondary, and tertiary amines and their basic character. Diazonium Salts: Importance in synthetic organic chemistry.

Unit 19

Biomolecules

General introduction and importance of biomolecules. Carbohydrates - Classification; aldoses and ketoses: monosaccharides (glucose and fructose) and constituent monosaccharides of oligosaccharides (sucrose, lactose, and maltose). Proteins - Elementary idea of α-amino acids, peptide bond, polypeptides. Proteins: primary, secondary, tertiary, and quaternary structure (qualitative idea only), denaturation of proteins, enzymes. Vitamins – Classification and functions. Nucleic Acids – Chemical constitution of DNA and RNA. Biological functions of nucleic acids. Hormones (General introduction).

Unit 20

Principles Related to Practical Chemistry

Detection of extra elements (Nitrogen, Sulphur, halogens) in organic compounds; Detection of the following functional groups: hydroxyl (alcoholic and phenolic), carbonyl (aldehyde and ketones) carboxyl, and amino groups in organic compounds. • The chemistry involved in the preparation of the following: Inorganic compounds: Mohr’s salt, potash alum. Organic compounds: Acetanilide, p-nitro acetanilide, aniline yellow, iodoform. • The chemistry involved in the titrimetric exercises – Acids, bases and the use of indicators, oxalic acid vs KMnO4, Mohr’s salt vs KMnO4. • Chemical principles involved in the qualitative salt analysis: Cations – Pb2+, Cu2+, Al3+, Fe3+, Zn2+, Ni2+, Ca2+, Ba2+, Mg2+, NH4+. Anions – CO3 2-, S2-, SO4 2-, NO3-, NO2-, Cl-, Br-, I- (Insoluble salts excluded). • Chemical principles involved in the following experiments: 1. Enthalpy of solution of CuSO4. 2. Enthalpy of neutralization of strong acid and strong base. 3. Preparation of lyophilic and lyophobic sols. 4. Kinetic study of the reaction of iodide ions with hydrogen peroxide at room temperature.

NEET Chemistry Syllabus 2026 PDF Download

To access the NEET 2026 Chemistry Syllabus PDF, visit the official NTA website or click on the direct link provided below. It provides a free download with chapter-wise details. Save it for easy reference during revision.

NEET Chemistry Syllabus Organic Inorganic Physical Breakdown

The NEET Chemistry Syllabus for organic, inorganic, and physical is divided for balanced coverage.

  • Physical Chemistry (30%): Basic concepts, thermodynamics, equilibrium, kinetics, electrochemistry.
  • Inorganic Chemistry (36%): Periodic table, bonding, p-block, d- and f-block, coordination compounds.
  • Organic Chemistry (34%): Basic principles, hydrocarbons, haloalkanes, alcohols, aldehydes, amines, biomolecules.

The NEET Chemistry Syllabus organic, inorganic, and physical helps in targeted preparation. Organic focuses on reactions, inorganic on elements, and physical on calculations.

NEET Chemistry Syllabus Total Chapters and Updates

The NEET Chemistry Syllabus total chapters are 20, with 10 each from Class 11 and 12. NTA added practical topics like salt analysis and enthalpy experiments. Removed chapters include states of matter and hydrogen.

The NEET Chemistry Syllabus 2026 updates focus on practical skills. Check the NEET Chemistry Syllabus PDF for full details.

How Many Units Are Covered in NEET Chemistry?

As per NEET chemistry syllabus, 20 units from Class 11 and Class 12 are covered for NEET UG exam. Eight are from Physical, four from Inorganic and eight from organic chemistry.

Section

Unit No.

Unit Title

Physical Chemistry

1

Some Basic Concepts of Chemistry

2

Atomic Structure

3

Chemical Bonding and Molecular Structure

4

Chemical Thermodynamics

5

Solutions

6

Equilibrium

7

Redox Reactions and Electrochemistry

8

Chemical Kinetics

Inorganic Chemistry

9

Classification of Elements and Periodicity in Properties

10

P-Block Elements

11

D- and F-Block Elements

12

Coordination Compounds

Organic Chemistry

13

Purification and Characterisation of Organic Compounds

14

Some Basic Principles of Organic Chemistry

15

Hydrocarbons

16

Organic Compounds Containing Halogens

17

Organic Compounds Containing Oxygen

18

Organic Compounds Containing Nitrogen

19

Biomolecules

20

Principles Related to Practical Chemistry

How Many Class 11 Units Covered in NEET Chemistry Syllabus?

Basic concepts of chemistry, atomic structure, equilibrium, etc., are the major topics covered in NEET UG chemistry syllabus from Class 11. Check the complete list below:

Class 11 Chemistry Units

Unit 1

Some Basic Concepts in Chemistry

Unit 2

Atomic Structure

Unit 3

Chemical Bonding and Molecular Structure

Unit 4

Chemical Thermodynamics

Unit 5

Equilibrium

Unit 6

Redox Reactions

Unit 7

The Hydrogen Element & The s-Block Element

Unit 8

The p-Block Element (Group 13 & 14)

Unit 9

Hydrocarbons

Unit 10

Environmental Chemistry

NEET Chemistry Syllabus Class 11 Topics

The NEET Chemistry Syllabus class 11 has 10 chapters, forming the base for advanced concepts. These topics introduce basic principles and are easier to score in.

  • Some Basic Concepts of Chemistry: Matter, Dalton's theory, mole concept, stoichiometry.
  • Atomic Structure: Electromagnetic radiation, Bohr model, quantum mechanics, electronic configuration.
  • Classification of Elements and Periodicity in Properties: Modern periodic table, trends in atomic radii, ionisation enthalpy.
  • Chemical Bonding and Molecular Structure: Ionic and covalent bonds, VSEPR theory, hybridisation, molecular orbital theory.
  • Chemical Thermodynamics: System and surroundings, first law, enthalpy, entropy, Gibbs energy.
  • Equilibrium: Chemical and physical equilibrium, Le Chatelier’s principle, acids and bases.
  • Redox Reactions: Oxidation-reduction, balancing equations, electrochemical cells.
  • p-Block Elements: Group 13-18 properties, anomalies.
  • Organic Chemistry - Some Basic Principles and Techniques: Tetravalency, isomerism, purification methods, qualitative and quantitative analysis.
  • Hydrocarbons: Alkanes, alkenes, alkynes, aromatic hydrocarbons, mechanisms like halogenation.

These chapters in the NEET Chemistry Syllabus class 11 make up about 40% of questions. Focus on the NEET Chemistry Syllabus chapter wise to build a strong foundation.

How Many Class 12 Units Covered in NEET Chemistry Syllabus?

Both Class 11 and Class 12 contribute equally to the NEET UG syllabus for Chemistry. Like Class 11, total 10 units from Class 12 chemistry are covered in NEET syllabus.

Class 12 Chemistry Units

Unit 1

Solid State

Unit 2

Solutions

Unit 3

Electrochemistry

Unit 4

Chemical Kinetics

Unit 5

Surface Chemistry

Unit 6

The d-Block Element (Transition Elements)

Unit 7

The f-Block Element (Inner Transition Elements)

Unit 8

The p-Block Element (Group 15, 16, 17, 18)

Unit 9

Coordination Compounds

Unit 10

Organic Compounds – Haloalkanes, Alcohols, Phenols, Aldehydes, Ketones, Carboxylic Acids, Amines, Biomolecules, Polymers, Chemistry in Everyday Life

NEET Chemistry Syllabus Class 12 Topics

The NEET Chemistry Syllabus 2026 for Class 12 has 10 chapters, covering deeper applications. These test problem-solving skills.

  • Solutions: Concentration terms, Raoult’s law, colligative properties.
  • Electrochemistry: Redox reactions, electrochemical cells, Nernst equation.
  • Chemical Kinetics: Rate laws, order of reaction, Arrhenius equation.
  • d- and f-Block Elements: Transition elements, coordination compounds.
  • Coordination Compounds: Werner’s theory, isomerism, bonding.
  • Haloalkanes and Haloarenes: Nomenclature, mechanisms, environmental effects.
  • Alcohols, Phenols and Ethers: Preparation, reactions, acidic nature.
  • Aldehydes, Ketones and Carboxylic Acids: Nucleophilic addition, oxidation, reduction.
  • Amines: Classification, basic character, diazonium salts.
  • Biomolecules: Carbohydrates, proteins, vitamins, nucleic acids.

The NEET Chemistry Syllabus total chapters in Class 12 focus on reactions and applications. Study the NEET Chemistry Syllabus chapter wise for better retention.

NEET Chemistry Syllabus Weightage: High-Scoring Chapters

The NEET Chemistry Syllabus weightage guides focus areas. Some chapters contribute more questions.

Chapter

Approx. Weightage (%)

Approx. Questions

Organic Chemistry - Some Basic Principles

8

4

Chemical Bonding and Molecular Structure

7

3-4

Coordination Compounds

6

3

p-Block Elements

6

3

Electrochemistry

5

2-3

Solutions

5

2-3

Aldehydes, Ketones and Carboxylic Acids

5

2-3

Thermodynamics

4

2

Chemical Kinetics

4

2

d- and f-Block Elements

4

2

The NEET Chemistry Syllabus weightage shows organic and inorganic sections score high. Prioritise these in your study plan.

Preparation Tips for NEET Chemistry Syllabus 2026

To cover the NEET Chemistry Syllabus 2026, start with NCERT books. Practice numericals in physical chemistry and reactions in organic. Check more NEET preparation tips from below:

  • Break the NEET Chemistry Syllabus chapter wise into daily goals.
  • Solve past papers for the NEET Chemistry Syllabus weightage patterns.
  • Use mnemonics for inorganic elements.
  • Revise the NEET Chemistry Syllabus organic inorganic physical sections weekly.
  • Take mock tests to build speed.

How to Prepare for NEET without Coaching? Get Free of Cost Strategy Here!

Best Books for NEET Chemistry Syllabus 2026

Use NCERT books first, then reference books like mentioned below. These are some of the best books to prepare for NEET UG.

  • Physical Chemistry by O.P. Tandon.
  • Organic Chemistry by Morrison and Boyd.
  • Inorganic Chemistry by J.D. Lee.
  • Objective Chemistry by Dinesh.

Frequently Asked Questions

What is the full form of NEET Exam?

The full form of NEET is National Eligibility-cum-Entrance Test.

What is the NEET Chemistry Syllabus 2026?<br />

It includes 20 chapters from Class 11 and 12, focusing on physical, organic, and inorganic topics.

Is NEET 2026 going to be tough?

Yes, each year the NEET difficulty increasing and also the number of students appeared. Thus, 2026 NEET UG exam is going to be tough.

Where to get the NEET Chemistry Syllabus PDF?<br />

Download from the NTA website for free.

Is NEET 2026 Syllabus released?

Yes, NMC along with NTA has officially released the NEET 2026 Syllabus PDF on the official website.

How is the NEET Chemistry Syllabus organic inorganic physical divided?<br />

Physical: 30%, Inorganic: 36%, Organic: 34%.

What is the age eligibility for the NEET Exam?

The candidate must have completed 17 years of age at the time of the examination. For further detailed information check the article eligibility section.

What is the NEET Chemistry Syllabus weightage for organic chemistry?<br />

About 34%, with high-scoring chapters like aldehydes and amines.

What is the official website of NEET?

The official website of NEET UG is https://neet.nta.nic.in/.

How many NEET Chemistry Syllabus total chapters?<br />

20 chapters, 10 each from Class 11 and 12.

When will the NEET 2026 Information Brochure released?

The NEET UG notification has been released on 8th February 2026 aling with the detailed Information Bulletin PDF.

What are key NEET Chemistry Syllabus class 11 topics?<br />

Basic concepts, atomic structure, bonding, thermodynamics.

What are the application dates for NEET UG 2026?

NEET UG Registration started from 8th February 2026 at neet.nta.nic.in. The last date to apply online earlier scheduled till 8th March 2026 has now been extended. The new registration deadline for NEET 2026 is 11th March 2026 (9:00 PM).

Is the NEET Chemistry Syllabus 2026 in Hindi available?<br />

Yes, on official sites for non-English speakers.

What is the NEET UG New Exam Date?

The NEET UG New Exam Date 2026 is 21st June 2026.

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