JEE Main Chemistry Some Basic Concepts 2026 | Mole Concept, Stoichiometry & Concentration | PrepMocker
JEE Main Chemistry · Some Basic Concepts

Some Basic Concepts: Mole Concept, Stoichiometry & Concentration

Study mole concept, stoichiometry, concentration terms, empirical and molecular formula, limiting reagent and percentage composition for JEE Main Chemistry.

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The central idea of this chapter

Chemical calculations are based on mole concept and balanced equations. This chapter connects mass, moles, volume and concentration through stoichiometric relations.

What should you understand first?

Some Basic Concepts is foundation of entire Chemistry. Master mole concept, stoichiometry and concentration terms. This chapter is highly scoring with direct formula-based questions.

Core concepts

  • Mole concept n = w/M
  • Avogadro number 6.022×10²³
  • Stoichiometry Balanced equation
  • Molarity M = n/V(L)
  • Limiting reagent First to consume

Useful building blocks

  • Moles from mass n = w/M
  • Moles from volume n = V/22.4 L at STP
  • Molality m = n/kg solvent
  • Mole fraction x = n/ntotal
  • Empirical formula Simplest ratio

Some Basic Concepts formula sheet

Use consistent units. Apply mole concept with proper molar masses and stoichiometric coefficients from balanced equations.

Topic Formula / Relation Meaning or use
Number of moles n = w/M From given mass and molar mass
Avogadro number NA = 6.022 × 1023 mol−1 Number of particles in one mole
Number of particles N = n × NA Total number of atoms, molecules or ions
Moles at STP n = V/22.4 L For gases at STP (0, 1 atm)
Molarity M = n/V(L) Moles per litre of solution
Molality m = n/kg solvent Moles per kg of solvent
Mole fraction xA = nA/(nA + nB) Ratio of moles to total moles
Mass percent % = (mass of component/total)×¹⁰⁰ Percentage by mass
Empirical formula Simplest whole number ratio From percentage composition
Molecular formula n × Empirical formula n = Molar mass/Empirical mass
Limiting reagent Reactant with least (moles/coeff) Determines product amount
Percentage yield % yield = (actual/theoretical)×¹⁰⁰ Efficiency of reaction
Dilution formula M₁V₁ = M₂V₂ Before and after dilution
Law of equivalence N₁V₁ = N₂V₂ For titration calculations

How to approach Basic Concepts problems

First convert all given data to moles, then use balanced equation for stoichiometric ratios. Apply appropriate concentration formula based on given and required quantities.

Mole & stoichiometry

  • Mass to moles? n = w/M
  • Gas volume? n = V/22.4 L at STP
  • Product amount? Use coefficients
  • Limiting reagent? Least ratio
  • Percentage yield? (actual/theoretical)×¹⁰⁰

Concentration terms

  • Molarity? M = n/V(L)
  • Molality? m = n/kg
  • Mole fraction? x = n/ntotal
  • Dilution? M₁V₁ = M₂V₂
  • Titration? N₁V₁ = N₂V₂

How to prepare Some Basic Concepts

Start with mole concept and Avogadro number, then master stoichiometry and limiting reagent. Finish with concentration terms and empirical/molecular formula calculations.

What to do

  • Learn all mole concept formulas and conversions
  • Practise stoichiometry with balanced equations
  • Master limiting reagent identification and calculations
  • Understand all concentration terms and their differences
  • Revise empirical and molecular formula determination

Common mistakes

  • Wrong molar mass calculation in mole concept
  • Not balancing chemical equation before stoichiometry
  • Confusing molarity and molality formulas
  • Wrong limiting reagent identification
  • Forgetting unit conversions (mL to L, g to kg)

Ready to test Basic Concepts?

Revise the formula sheet, then solve mixed JEE Main problems on mole concept, stoichiometry, concentration and limiting reagent.

Start Mock Test

Some Basic Concepts FAQ

Short answers to frequently tested ideas in this chapter.

One mole contains 6.022×10²³ particles (Avogadro number). Number of moles = given mass/molar mass = volume at STP/22.4 L.

Limiting reagent is the reactant that is completely consumed first in a reaction. It determines the maximum amount of product formed.

Molarity is number of moles of solute per litre of solution. M = n/V(L). It is temperature dependent concentration term.