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Moles and Avogadro's Numbers

150 questions found

Practice Questions

During the reaction N₂ + 3H₂ → 2NH₃, complete reaction of 67.2 L of hydrogen at STP produces

A. 22.4 L of NH₃
B. 33.6 L of NH₃
C. 44.8 L of NH₃
D. 67.2 L of NH₃

Gas volumes at the same conditions follow mole ratios. Three volumes of H₂ produce two volumes of NH₃. Therefore, 67.2 L H₂ (3 × 22.4 L) yields 44.8 L NH₃ (2 × 22.4 L). Concept tested: Gas volume stoichiometry at STP.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During the reaction 2Al + 3Cl₂ → 2AlCl₃, complete reaction of 6 moles of chlorine gas produces

A. 2 moles of AlCl₃
B. 4 moles of AlCl₃
C. 6 moles of AlCl₃
D. 9 moles of AlCl₃

The balanced equation shows that 3 moles of Cl₂ produce 2 moles of AlCl₃. Therefore, 6 moles of Cl₂ produce 4 moles of AlCl₃. Concept tested: Mole ratio from a balanced equation.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Concerning Avogadro’s number, 3 moles of carbon dioxide contain

A. 6.02 × 10²³ molecules
B. 1.20 × 10²⁴ molecules
C. 1.81 × 10²⁴ molecules
D. 3.01 × 10²³ molecules

Three moles contain 3 × 6.02 × 10²³ = 1.81 × 10²⁴ molecules. The other values represent fewer moles. Concept tested: Mole-to-particles conversion.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During the decomposition reaction 2HgO → 2Hg + O₂, complete decomposition of 8 moles of HgO produces

A. 2 moles of O₂
B. 4 moles of O₂
C. 6 moles of O₂
D. 8 moles of O₂

According to the balanced equation, 2 moles of HgO produce 1 mole of O₂. Therefore, 8 moles of HgO produce 4 moles of O₂. Concept tested: Stoichiometric calculations.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Among the following statements, the most appropriate reason balanced chemical equations are essential in stoichiometric calculations is

A. They provide the physical states of reactants
B. They provide the exact mole relationships among reactants and products
C. They indicate the reaction temperature
D. They determine the reaction rate

Stoichiometric calculations depend on the coefficients of a balanced equation because they represent mole ratios. Physical states, temperature, and reaction rate are not sufficient for quantitative calculations. Concept tested: Importance of balanced equations in stoichiometry.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During the reaction 2Na + Cl₂ → 2NaCl, complete reaction of 5 moles of sodium produces

A. 2.5 moles of NaCl
B. 5 moles of NaCl
C. 7.5 moles of NaCl
D. 10 moles of NaCl

The balanced equation shows a 2 : 2 ratio between Na and NaCl, which simplifies to 1 : 1. Therefore, 5 moles of Na produce 5 moles of NaCl. Concept tested: Mole ratio from a balanced equation.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Regarding the reaction CaCO₃ → CaO + CO₂, thermal decomposition of 2.5 moles of calcium carbonate produces

A. 1.25 moles of CO₂
B. 2.5 moles of CO₂
C. 5.0 moles of CO₂
D. 7.5 moles of CO₂

The balanced equation indicates a 1 : 1 mole ratio between CaCO₃ and CO₂. Therefore, 2.5 moles of CaCO₃ yield 2.5 moles of CO₂. Concept tested: Stoichiometric mole calculations.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During a stoichiometric calculation, 0.5 mole of oxygen molecules contains

A. 3.01 × 10²³ molecules
B. 6.02 × 10²³ molecules
C. 1.20 × 10²⁴ molecules
D. 1.50 × 10²³ molecules

One mole contains 6.02 × 10²³ molecules. Therefore, 0.5 mole contains half of this number, 3.01 × 10²³ molecules. Concept tested: Avogadro's number.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Under standard conditions, the volume occupied by 2.5 moles of an ideal gas is

A. 22.4 L
B. 44.8 L
C. 56.0 L
D. 33.6 L

At STP, one mole of any ideal gas occupies 22.4 L. Thus, 2.5 × 22.4 = 56.0 L. Concept tested: Molar volume at STP.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Concerning the reaction 2Mg + O₂ → 2MgO, complete reaction of 4 moles of magnesium requires

A. 1 mole of O₂
B. 2 moles of O₂
C. 3 moles of O₂
D. 4 moles of O₂

According to the balanced equation, 2 moles of Mg react with 1 mole of O₂. Therefore, 4 moles of Mg require 2 moles of O₂. Concept tested: Mole ratio application.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During the reaction 2H₂O₂ → 2H₂O + O₂, decomposition of 6 moles of hydrogen peroxide produces

A. 2 moles of O₂
B. 3 moles of O₂
C. 4 moles of O₂
D. 6 moles of O₂

The balanced equation shows that 2 moles of H₂O₂ produce 1 mole of O₂. Hence, 6 moles produce 3 moles of oxygen gas. Concept tested: Stoichiometric relationships.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Since one mole occupies 22.4 L at STP, 11.2 L corresponds to 0.50 mole. Concept tested: Volume-to-mole conversion.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During the reaction N₂ + 3H₂ → 2NH₃, complete reaction of 2 moles of nitrogen requires

A. 3 moles of H₂
B. 4 moles of H₂
C. 6 moles of H₂
D. 2 moles of H₂

From the equation, 1 mole of N₂ reacts with 3 moles of H₂. Therefore, 2 moles of N₂ require 6 moles of H₂. Concept tested: Stoichiometric mole calculations.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Concerning Avogadro’s number, one mole of any substance contains

A. 3.01 × 10²³ particles
B. 6.02 × 10²² particles
C. 6.02 × 10²³ particles
D. 1.00 × 10²³ particles

Avogadro's number is 6.02 × 10²³ representative particles per mole. The other values are incorrect multiples or fractions. Concept tested: Avogadro's constant.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During a chemical calculation, 18 g of water corresponds to

A. 0.5 mole
B. 1 mole
C. 2 moles
D. 18 moles

The molar mass of H₂O is 18 g mol⁻¹. Therefore, 18 g represents exactly one mole. Concept tested: Mass-mole relationship.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Under standard conditions, one mole of an ideal gas occupies

A. 11.2 L
B. 22.4 L
C. 44.8 L
D. 24.0 L

At STP (0°C and 1 atm), one mole of any ideal gas occupies 22.4 L. Values like 24.0 L apply approximately at room temperature, not STP. Concept tested: Molar volume of gases.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During the combustion reaction CH₄ + 2O₂ → CO₂ + 2H₂O, complete combustion of 3 moles of methane produces

A. 2 moles of CO₂
B. 3 moles of CO₂
C. 4 moles of CO₂
D. 6 moles of CO₂

The balanced equation shows a 1 : 1 mole ratio between CH₄ and CO₂. Thus, 3 moles of methane produce 3 moles of carbon dioxide. Concept tested: Mole ratio application.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

During the decomposition reaction 2KClO₃ → 2KCl + 3O₂, decomposition of 4 moles of KClO₃ produces

A. 3 moles of O₂
B. 4 moles of O₂
C. 5 moles of O₂
D. 6 moles of O₂

According to the balanced equation, 2 moles of KClO₃ produce 3 moles of O₂. Therefore, 4 moles produce 6 moles of O₂. Concept tested: Stoichiometric calculations using balanced equations.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026

Regarding representative particles, one mole of sodium atoms contains

A. 6.02 × 10²³ atoms
B. 6.02 × 10²³ molecules
C. 3.01 × 10²³ atoms
D. 1.20 × 10²⁴ atoms

Sodium is an element consisting of atoms, so one mole contains Avogadro's number of atoms, not molecules. Concept tested: Representative particles.

nmdcat.online Chemistry NMDCAT MCQs
Jul 13, 2026
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