Refer to the graph below to answer the questions about a binary mixture of two components (A & B). Note, equations that define the dashed lines are given Binary mixture of two components, A and B 900 800 700 600 i-y = 1600x (6
Refer to the graph below to answer the questions about a binary mixture of two components (A & B). Note, equations that define the dashed lines are given Binary mixture of two components, A and B 900 800 700 600 i-y = 1600x (6
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
Transcribed Image Text:Refer to the graph below to answer the questions about a binary mixture of two components (A
& B). Note, equations that define the dashed lines are given
Binary mixture of two components, A and B
900
800
700
600
i-y = 1600x
500
400
300
200
- y
= -500x
100
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
a) What is Henry's Law constant for component A (in Torr)?
b) What is Vapor pressure of pure component B (in Torr)?
c) By looking at the graph, estimate the \textit(total}total vapor pressure (in Torr) above the solution when
the mole fraction of component A is 0.25. Don't waste your time doing an exact calculation, look at the
graph only to get the answer.
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