Cryoscopic constant

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Template:DMCA Template:Short description Template:Refimprove In thermodynamics, the cryoscopic constant, Kf, relates the molality of a solution to its freezing point depression (which is a colligative property).

It is the ratio of the latter to the former:

ΔTf=iKfb
  • ΔTf is the depression of freezing point, calculated as the freezing point Tf0 of the pure solvent minus the freezing point Tf of the solution;
  • i is the van ‘t Hoff factor, representing the number of particles the solute dissociates into or forms when dissolved;
  • b is the molality of the solution (moles of solute per kilogram of solvent).

Through cryoscopy, a known constant can be used to calculate an unknown molar mass. The term "cryoscopy" means "freezing measurement" in Greek. Freezing point depression is a colligative property, so ΔT depends only on the number of solute particles dissolved, not on the nature of those particles. Cryoscopy is related to, and is the opposite of ebullioscopy, which determines the same value from the ebullioscopic constant (of boiling point elevation).

The value of Kf, which depends on the nature of the solvent, can be calculated by the following equation:

Kf=MRTf2ΔHfusion=MRTfΔSfusion

The Kf for water is 1.853 K kg mol−1.[1]

See also

References

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  1. ^ Page Module:Citation/CS1/styles.css has no content.Aylward, Gordon; Findlay, Tristan (2002), SI Chemical Data (5 ed.), Sweden: John Wiley & Sons, p. 202, ISBN 0-470-80044-5


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