2.3 Avogadro’s Hypothesis
🎯 Learning Outcomes
After the completion of the chapter, the students should be able to:
- ✓ State Avogadro’s hypothesis and explain its significance
- ✓ Derive the relationship: Molecular Mass = 2 × Vapour Density
- ✓ Show that the gram molecular volume of any gas is 22.4 L at NTP
- ✓ Calculate Avogadro’s number (NA)
🔥 The Mystery of the Half-Atom: A Chemistry Story ▶
In 1808, two big ideas landed on the scene.
Gay-Lussac noticed something cool: when gases react, their volumes mix in simple ratios — like 1:1, 1:2, or 2:3.
Dalton had his own idea: elements combine in simple whole-number ratios by atoms (think H₂O, not H₂O0.5).
Then Berzelius mixed them. He guessed:
Uh-oh. When he tested this with hydrogen and oxygen, it led to a problem. For water formation, his idea forced oxygen and hydrogen to split into half-atoms. But Dalton’s theory said: No half-atoms allowed! 🔥
Enter Avogadro, the problem solver. He said: “You’re confusing two things.”
- Atom = the smallest part of an element that reacts (may not exist alone).
- Molecule = the smallest part of a substance that can exist freely.
With that, he fixed Berzelius’s idea into Avogadro’s Hypothesis:
Mystery solved. Half-atoms disappeared. Chemistry moved on. 🧪✨
📐 Definition of Avogadro’s Hypothesis ▶
e.g., if a litre of hydrogen, oxygen, nitrogen, or carbon dioxide is taken separately at NTP, then each of them contains the same number of molecules.
Where V = volume of gas; n = number of molecules.
At constant temperature and pressure, doubling the volume doubles the number of molecules, and vice versa.
⚖️ Deduction 1 — Molecular Mass = 2 × Vapour Density ▶
The vapour density (V.D.) is the ratio of the mass of a given volume of a gas or vapour to the mass of the same volume of hydrogen, under the same conditions of temperature and pressure.
(at similar T & P)
Let the chosen volume of the gas contain ‘n’ molecules. By Avogadro’s hypothesis, this number is the same for the gas and for hydrogen under identical conditions. Then:
V.D. = (mass of 1 molecule of gas) ÷ (mass of 1 molecule of hydrogen) ……… (1)
The molecular mass of a compound/element is a number that shows how many times the molecule is heavier than one atom of hydrogen:
Dividing equation (2) by (1):
= (mass of 2 atoms of hydrogen) ÷ (mass of 1 atom of hydrogen) = 2
🧊 Deduction 2 — Gram Molecular Volume = 22.4 L at NTP ▶
We know that:
= 2 × (mass of the given volume of gas) ÷ (mass of the same volume of hydrogen at same T & P)
Let us consider 1 litre of gas at NTP:
It has been found that the mass of 1 litre of hydrogen gas at NTP is 0.08986 g. So:
Or, molecular mass (in g) = (2 ÷ 0.08986) × mass of 1 L gas at NTP
⇒ mass of 1 L gas at NTP that equals the molecular mass (in g) occupies ≈ 22.4 L
This volume (22.4 L) is called the gram molecular volume or molar volume of a gas at NTP.
🔢 Deduction 3 — Avogadro’s Number (NA) ▶
Avogadro’s number (NA) is the number of molecules present in one gram molecular mass (one mole) of any gas or substance. Its value is approximately 6.023 × 10²³ molecules per mole.
Let us consider H₂ gas to deduce this number.
We know the molecular mass of H₂ = 2, so 1 gram molecular mass of H₂ = 2 g.
Let w gram = mass of one hydrogen atom. Then 2w gram is the mass of one H₂ molecule, so 2 g contains 1/w H₂ molecules.
Since the mass of one hydrogen atom, w ≈ 1.67 × 10⁻²⁴ g:
i.e., 1 gram molecular mass of any gas contains Avogadro’s number of molecules (6.023 × 10²³).
- Avogadro’s number (6.023 × 10²³) applies to any substance — solid, liquid, or gas. One mole of iron, water, or glucose contains the same number of particles.
- The molar volume of 22.4 L applies only to gases at NTP. It does not apply to solids or liquids.
📋 Summary
| Concept | Key Statement |
|---|---|
| Avogadro’s Hypothesis | Equal volumes of all gases at the same T & P contain the same number of molecules. |
| Vapour Density | V.D. = (mass of given volume of gas) ÷ (mass of same volume of H₂) at same T & P |
| Deduction 1 | Molecular Mass = 2 × Vapour Density |
| Deduction 2 | Gram Molecular Volume of any gas = 22.4 L at NTP |
| Deduction 3 | Avogadro’s number NA = 6.023 × 10²³ molecules per mole |
📝 Quick Quiz
Test what you’ve learned about Avogadro’s Law and its deductions:
