# If the solubilities of different components (in a liquid-liquid extraction system) increase with rise in temperature, then the temperature above which they dissolve completely is known as the critical solution temperature (CST or consolute temperature). If solubilities increase with decrease in temperature, then CST is the temperature below which they dissolve completely. If a binary system has no critical solution temperature, it implies that _____ ? with Answer - Chemical Engineering Mcqs | TestPrep

> Solved MCQ: If the solubilities of different components (in a liquid-liquid extraction system) increase with rise in temperature, then the temperature above which they dissolve completely is known as the critical solution temperature (CST or consolute temperature). If solubilities increase with decrease in temperature, then CST is the temperature below which they dissolve completely. If a binary system has no critical solution temperature, it implies that _____ ? Correct Answer: D. On heating, a vapor phase will appear; while on cooling, a solid phase will appear. Verified answer explanation for FPSC, PPSC, MDCAT, NTS, and CSS competitive exam preparation.

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# If the solubilities of different components (in a liquid-liquid extraction system) increase with rise in temperature, then the temperature above which they dissolve completely is known as the critical solution temperature (CST or consolute temperature). If solubilities increase with decrease in temperature, then CST is the temperature below which they dissolve completely. If a binary system has no critical solution temperature, it implies that _____ ?

Direct Answer & Quick Reference

The correct option is **D. On heating, a vapor phase will appear; while on cooling, a solid phase will appear**.

A. The system comprises of partially miscible liquids

B. The system comprises of miscible liquids

C. The system comprises of an azeotrope

D. On heating, a vapor phase will appear; while on cooling, a solid phase will appear **(Correct Answer)**

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Verified Key: D. On heating, a vapor phase will appear; while on cooling, a solid phase will appear
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