Calculate the boiling point of a solution containing 0.61 g of benzoic acid () in 5 g of CS₂ in which it dimerises to the extent of 88%. The boiling point and Kb of CS₂ are 46.2 °C and respectively.
Calculate the boiling point of a solution containing 0.61 g of benzoic acid () in 5 g of CS₂ in which it dimerises to the extent of 88%. The boiling point and Kb of CS₂ are 46.2 °C and respectively.
Step 1 — molality of benzoic acid
Step 2 — van't Hoff factor for dimerisation
For 2 molecules → 1 dimer, with degree of association α = 0.88:
- 0.56
Step 3 — elevation of boiling point
Step 4 — boiling point of solution
()
Marking Scheme
- 11 mark: molality of benzoic acid = (, ).
- 21 mark: van't Hoff factor for dimerisation .
- 31 mark: and (accept ≈ 47.5 °C).
Hint
; for dimerisation ; ; add to 46.2 °C.
Quick Oral Answer
The benzoic acid is 1.0 molal; because 88% dimerises, , so , making the boiling point .
Analysis & Explanation
Concept — association lowers particle count
Colligative properties depend on the number of solute particles. Benzoic acid dimerises in a non-polar solvent like CS₂ through hydrogen bonding, so two molecules act as one particle. This reduces the effective number of particles, making i less than 1 and the boiling-point elevation smaller than expected.
Deriving the van't Hoff factor
- Start with 1 mole; a fraction α associates. Particles left = (1 − α) monomers + α/2 dimers.
- Total particles = , which is the value of i.
- With — nearly half the particles have paired up.
Exam trap
- Use for dimerisation; the general form is . Do not use the dissociation form .
- Add ΔTb to the solvent's boiling point (46.2 °C), and keep ΔTb in kelvin (numerically same size as °C change).
Real-world link
Carboxylic acids famously form such dimers; this molecular pairing is why their measured molar masses in benzene or CS₂ come out roughly double the true value.
Common Mistakes
- 1Using the dissociation formula instead of the association formula , giving a wrong i.
- 2Forgetting to include the van't Hoff factor and computing ΔTb as just .
- 3Reporting only ΔTb (1.29 K) and forgetting to add it to the solvent's boiling point 46.2 °C.
Interesting Facts
Benzoic acid was one of the first molecules shown to have an 'abnormal' molar mass — nearly double the real value — because it dimerises in non-polar solvents.
The dimer is held together by two O–H···O hydrogen bonds, forming a stable eight-membered ring that survives even in the vapour phase.
Association reduces colligative effects, whereas dissociation (as in salts) increases them — the same formula family () describes both.
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Frequently Asked Questions
Why is the van't Hoff factor less than 1 here?
Benzoic acid molecules associate into dimers in CS₂, so two molecules behave as a single particle. This lowers the total number of solute particles below the number dissolved, making i less than 1. With 88% association, , reflecting that nearly half the particles have paired up.
Why use i = 1 − α/2 instead of i = 1 + (n−1)α?
The form is for dissociation, where one particle splits into n. For association, n particles combine into one, so the correct expression is . For dimerisation n = 2, giving . Using the dissociation formula here would wrongly increase the particle count.