Question
a.
Volatile
b.
Non-Volatile
c.
Cryogenic
d.
None of the mentioned
Posted under Mass Transfer
Interact with the Community - Share Your Thoughts
Uncertain About the Answer? Seek Clarification Here.
Understand the Explanation? Include it Here.
Q. Consider a sugar solution[ Sugar + Water]; On vaporization water only evaporate since sugar is________
Similar Questions
Explore Relevant Multiple Choice Questions (MCQs)
Q. Distillation is possible only if the solution components are_____________
View solution
Q. No further process required for _____________
View solution
Q. In a solution (A and B); The vapour pressure of A is 260 mmHg and B is 360 mmHg; Find the relative volatility?
View solution
Q. If the gas phase composition of a component A is 0.65 and its relative volatility is 2. Find the liquid phase composition.
View solution
Q. The component A and B has the same boiling point. Can the separation is done by ordinary separation?
View solution
Q. The possibility of separation will be more if the separation factor is greater than 1.
View solution
Q. Find the vapour pressure of component A in an ideal mixture, if its liquid composition and the partial pressure is 0.65 and 260 mmHg.
View solution
Q. Consider an ideal vapour-liquid binary mixture, find the total pressure if the vapour pressure of A is 260 mmHg and the vapour pressure of B is 520 mmHg and the composition of A in mole fraction is 0.55.
View solution
Q. Guess the exact relation between the vapour phase mole fraction and relative volatility.
View solution
Q. Given the total pressure is 2 atm. Also the partial pressure of the two components in an ideal solution is 1 atm and 0.5 atm. It shows __________ deviation.
View solution
Q. If the vapour pressure of the two components in a binary mixture is same, then it is a________
View solution
Q. Minimum boiling azeotrope has_________
View solution
Q. Alternative word of Azeotrope is a Differential-boiling point.
View solution
Q. Negative deviation is due to a total pressure less than the pressure obtained from Hendry’s law.
View solution
Q. Azeotropic composition can be eliminated by
View solution
Q. When the two liquid mixtures are completely insoluble then the total pressure of the mixture is
View solution
Q. Consider an insoluble mixture A and B; Find the Total pressure of the system.
Vapour pressure of A= 50mmHg
Vapour pressure of B= 100 mmHg
View solution
Q. Ordinary distillation cannot separate Azeotrope.
View solution
Q. Flash vaporization is a
View solution
Q. The feed is directly passed to the flash vaporization column
View solution
Recommended Subjects
Are you eager to expand your knowledge beyond Mass Transfer? We've handpicked a range of related categories that you might find intriguing.
Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!