Consider an ideal mixture of two liquids, A and B. The image below shows the mole fraction of omponent A in the vapour plotted against the mole fraction of component A in the solution. The urve has a slope of 1. Which of the following is necessarily true in such a case? Male fraction of Ainthe solution O A A and B are present in equimolar quantities in the solution. B.A and B are present in equimolar quantities in the vapour that is in equilibrium with the solution. O C The vapour pressure of A, p'a is equal to the vapour pressure of B, p's- O D. The mole fraction of A in the solution, XA =1 O E. The mole fraction of B in the solution, xg = 1 Mole fraction ofAh the vapour : : : :
Consider an ideal mixture of two liquids, A and B. The image below shows the mole fraction of omponent A in the vapour plotted against the mole fraction of component A in the solution. The urve has a slope of 1. Which of the following is necessarily true in such a case? Male fraction of Ainthe solution O A A and B are present in equimolar quantities in the solution. B.A and B are present in equimolar quantities in the vapour that is in equilibrium with the solution. O C The vapour pressure of A, p'a is equal to the vapour pressure of B, p's- O D. The mole fraction of A in the solution, XA =1 O E. The mole fraction of B in the solution, xg = 1 Mole fraction ofAh the vapour : : : :
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:Consider an ideal mixture of two liquids, A and B. The image below shows the mole fraction of
component A in the vapour plotted against the mole fraction of component A in the solution. The
curve has a slope of 1. Which of the following is necessarily true in such a case?
Mole fraction of A in the solution
O A. A and Bare present in equimolar quantities in the solution.
B. A and B are present in equimolar quantities in the vapour that is in equilibrium with the
solution.
O C. The vapour pressure of A, pa is equal to the vapour pressure of B, p'B.
D. The mole fraction of A in the solution, xA =1
E. The mole fraction of B in the solution, xg = 1
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