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JAMB 2025 CHEMISTRY SYLLABUS

Introduction:

JAMB 2025 CHEMISTRY SYLLABUS aims to prepare the candidates for the Board’s examination. It is designed to test their achievement of the following objectives:

  1. Understand the basic principles and concepts in chemistry.
  2. Interpret scientific data relating to chemistry.
  3. Deduce the relationships between chemistry and other sciences.
  4. Apply the knowledge of chemistry to industry and everyday life.

Table of Contents


1. Separation of Mixtures and Purification of Chemical Substances

Topics:

  • Pure and impure substances
  • Boiling and melting points
  • Elements, compounds, and mixtures
  • Chemical and physical changes
  • Separation processes: evaporation, simple and fractional distillation, sublimation, filtration, crystallization, paper and column chromatography, simple and fractional crystallization, magnetization, decantation

Objectives:
Candidates should be able to:

  • Distinguish between pure and impure substances.
  • Use boiling and melting points as criteria for purity.
  • Differentiate between elements, compounds, and mixtures.
  • Differentiate between chemical and physical changes.
  • Identify the properties of components in a mixture.
  • Apply separation processes in everyday life.

2. Chemical Combination

Topics:

  • Stoichiometry
  • Laws of definite and multiple proportions
  • Law of conservation of matter
  • Gay Lussac’s law of combining volumes
  • Avogadro’s law
  • Chemical symbols, formulae, equations, and their uses
  • Relative atomic mass based on ^{12}C=12
  • The mole concept and Avogadro’s number

Objectives:
Candidates should be able to:

  • Perform calculations involving formulae, equations, and the mole concept.
  • Deduce chemical laws from data.
  • Interpret graphical representations of these laws.
  • Deduce stoichiometry in chemical reactions.

JAMB CHEMISTRY SYLLABUS

3. Kinetic Theory of Matter and Gas Laws

Topics:

  • The kinetic theory of matter (melting, vaporization, boiling, freezing, condensation in terms of molecular motion and Brownian movement).
  • Laws of Boyle, Charles, Graham, Dalton, combined gas law, molar volume, and atomicity of gases.
  • The ideal gas equation (PV = nRT).
  • Relationship between vapour density and relative molecular mass of gases.

Objectives:
Candidates should be able to:

  • Apply the kinetic theory to distinguish between solids, liquids, and gases.
  • Deduce reasons for changes of state.
  • Deduce gas laws and perform calculations based on them.

4. Atomic Structure and Bonding

Topics:

  • Atomic structure, electron configuration, atomic number, mass number, isotopes.
  • The periodic table and periodicity of elements.
  • Chemical bonding: Electrovalency, covalency, hydrogen bonding, metallic bonding, and coordinate bonds.
  • Shapes of simple molecules.
  • Nuclear chemistry: Types of radioactivity, nuclear reactions, and uses of natural and artificial radioactivity.

Objectives:
Candidates should be able to:

  • Distinguish between atoms, molecules, and ions.
  • Identify the contributions of scientists to atomic theory.
  • Apply the rules guiding electron arrangement.
  • Relate atomic structure to the periodic table.
  • Differentiate between bonding types and their effects on compounds.

5. Air

Topics:

  • Natural gaseous constituents of air: nitrogen, oxygen, carbon dioxide, noble gases.
  • Air as a mixture and uses of noble gases.

Objectives:
Candidates should be able to:

  • Deduce reasons for air as a mixture.
  • Identify the components of air and their uses.

6. Water

Topics:

  • Water as a product of combustion, its composition, and uses.
  • Hard and soft water, temporary and permanent hardness, methods of softening.
  • Treatment of water for town supply.
  • Water of crystallization, efflorescence, deliquescence, and hygroscopy.

Objectives:
Candidates should be able to:

  • Identify the uses of water.
  • Differentiate between hard and soft water.
  • Describe water treatment methods.

7. Solubility

Topics:

  • Saturated, unsaturated, and supersaturated solutions.
  • Solubility curves and simple deductions.
  • Solvents for fats, oils, and paints.
  • False solutions: Suspensions and colloids.

Objectives:
Candidates should be able to:

  • Distinguish between solution types.
  • Interpret solubility curves and perform calculations.
  • Differentiate between true solutions and colloids.

8. Environmental Pollution

Topics:

  • Sources and effects of pollutants: Air, water, soil pollution.

Objectives:
Candidates should be able to:

  • Identify sources and effects of pollutants.
  • Propose methods for pollution control.

9. Acids, Bases, and Salts

Topics:

  • General characteristics and properties of acids, bases, and salts.
  • Preparation of salts by neutralization, precipitation, and acid-metal reactions.
  • Acid/base titrations.
  • Hydrolysis of salts.

Objectives:
Candidates should be able to:

  • Perform calculations on pH, conduct titrations.
  • Relate the strength of acids and bases to their dissociation.

10. Oxidation and Reduction

Topics:

  • Oxidation and reduction as electron transfer processes.
  • Use of oxidation numbers.
  • Tests for oxidizing and reducing agents.

Objectives:
Candidates should be able to:

  • Classify reactions as oxidation or reduction.
  • Perform redox reaction calculations.
  • Identify oxidizing and reducing agents.

11. Electrolysis

Topics:

  • Electrolytes and non-electrolytes.
  • Electrolysis of various solutions (CuSO₄, NaCl).
  • Uses of electrolysis: Purification, metal extraction.
  • Electrochemical cells and corrosion.

Objectives:
Candidates should be able to:

  • Identify suitable electrodes.
  • Perform electrolysis calculations.
  • Explain industrial applications of electrolysis.

12. Energy Changes

Topics:

  • Heat changes accompanying physical and chemical processes (Endothermic/Exothermic reactions).
  • Entropy and spontaneity of reactions.

Objectives:
Candidates should be able to:

  • Determine heat changes in reactions.
  • Relate entropy and spontaneity to reaction conditions.

13. Rates of Chemical Reactions

Topics:

  • Factors affecting reaction rates: Temperature, concentration, surface area, catalysts.
  • Activation energy and Arrhenius law.

Objectives:
Candidates should be able to:

  • Identify factors affecting reaction rates.
  • Determine the effect of catalysts on reactions.

14. Chemical Equilibrium

Topics:

  • Reversible reactions, Le Chatelier’s Principle, and equilibrium constants.

Objectives:
Candidates should be able to:

  • Predict effects of factors on equilibrium.
  • Analyze equilibrium constants.

15. Non-Metals and Their Compounds

Topics:

  • Hydrogen, halogens, oxygen, sulfur, nitrogen, and carbon: Laboratory preparation, properties, uses, and reactions.

Objectives:
Candidates should be able to:

  • Prepare and identify properties of non-metal compounds.
  • Relate the uses of non-metal compounds in industry.

16. Metals and Their Compounds

Topics:

  • General properties of metals, alkali metals, alkaline-earth metals, transition metals.
  • Methods of extraction, properties, and uses of metals like sodium, calcium, aluminum, iron, copper, and alloys.

Objectives:
Candidates should be able to:

  • Identify properties and extraction methods of metals.
  • Relate the properties of alloys to their uses.

JAMB CHEMISTRY SYLLABUS

17. Organic Compounds

Topics:

  • Alkanes, alkenes, alkynes, aromatic hydrocarbons, alkanols, alkanals, alkanoic acids, and other organic compounds: Structure, properties, reactions, and uses.

Objectives:
Candidates should be able to:

  • Identify and name organic compounds.
  • Perform tests for organic compounds.

18. Chemistry and Industry

Topics:

  • Types of chemical industries and their relevance.
  • Biotechnology and its relation to chemical industries.

Objectives:
Candidates should be able to:

  • Classify chemical industries.
  • Relate industrial processes to biotechnology.

  • Ababio, O. Y. (2009). New School Chemistry for Senior Secondary Schools (4th ed.).
  • Bajah, S. T.; Teibo, B. O., Onwu, G.; and Obikwere, A. (1999). Senior Secondary Chemistry Books 1, 2, and 3.
  • Ojokuku, G. O. (2012). Understanding Chemistry for Schools and Colleges (Revised Edition).
  • Odesina, I. A. (2008). Essential: Chemistry for Senior Secondary Schools (2nd ed.).
  • Uche, I. O. et al. (2003). Countdown to WASSCE/SSCE, NECO, JME Chemistry.
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