2. Single Component Phase Diagram: prepare the L-V (liquid-vapor) equilibrium line of a single component phase diagram for ethanol. Show this L-V line from the triple point to the critical point, including some of the intermediate points on that line, as defined by vapor pressure calculated from the Antoine equation. The triple point T and P are TTP = -123 °C and PTP = 4.3 x 10-7 kPa. Critical T & P Ethyl alcohol C₂H, OH (Ethanol) Compound Antonine Constants 1, T-1/ Ethanol Formula 46.07 0.789 SG Mol. Wt. (20°/4°) -114.6 Tm(°C) 414832 C₂H6O 5.021 AĤ(T) 78.5 38.58 516.3 63.0 kJ/mol TH(°C) TEMARK! -277.63(1) -235.31(g) AH, (T) (AĤ)&i kJ/mol T.(KY P.(atm) kJ/mol 20.0 WU TUNU 19.6 to 93.4 1.MAJJ LJJTV1 8.11220 1592.864 -1366.91(1) -1409.25(g) (AR) kJ/mol ETV.JJ1 226.184
2. Single Component Phase Diagram: prepare the L-V (liquid-vapor) equilibrium line of a single component phase diagram for ethanol. Show this L-V line from the triple point to the critical point, including some of the intermediate points on that line, as defined by vapor pressure calculated from the Antoine equation. The triple point T and P are TTP = -123 °C and PTP = 4.3 x 10-7 kPa. Critical T & P Ethyl alcohol C₂H, OH (Ethanol) Compound Antonine Constants 1, T-1/ Ethanol Formula 46.07 0.789 SG Mol. Wt. (20°/4°) -114.6 Tm(°C) 414832 C₂H6O 5.021 AĤ(T) 78.5 38.58 516.3 63.0 kJ/mol TH(°C) TEMARK! -277.63(1) -235.31(g) AH, (T) (AĤ)&i kJ/mol T.(KY P.(atm) kJ/mol 20.0 WU TUNU 19.6 to 93.4 1.MAJJ LJJTV1 8.11220 1592.864 -1366.91(1) -1409.25(g) (AR) kJ/mol ETV.JJ1 226.184
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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can you please help with anything?
i dont know how to prepare the LV line...
![2. Single Component Phase Diagram: prepare the L-V (liquid-vapor) equilibrium line of a single
component phase diagram for ethanol. Show this L-V line from the triple point to the critical point,
including some of the intermediate points on that line, as defined by vapor pressure calculated from the
Antoine equation. The triple point T and Pare TTP = -123 °C and PTP =
4.3 x 10-7 kPa.
Critical T & P
Ethyl alcohol C₂H₂OH 46.07 0.789
(Ethanol)
SG
Formula Mol. Wt. (20°/4°)
Compound
Antonine Constants
DIVAG
Ethanol
Compound
I
-114.6
Tm (°C)
1411802
C₂H₂O
Fene
Formula
5.021
log10 P² = A -
78.5
ZU.U W LUJ.
19.6 to 93.4
38.58
Range (°C)
AĤm (Tm)
AH, (T.).
kJ/mol TH (°C) kJ/mol T.(KY P.(atm)
516.3
⇒PC₂H₂o (25°C) = 102.9551
=
63.0
A
TEVNE!
-277.63(1) -1366.91(1)
-235.31(g)
-1409.25(g)
1.4J1J9
194019
244.JJ1
8.11220 1592.864 226.184
B
p in mm Hg, T in °C
T + C
Example: The vapor pressure of acetaldehyde at 25°C is determined as follows:
log10 PC₂H₁0 (25°C) = 8.00552
1600.017
25 +291.809
(AĤ,*)**
kJ/mol
B
902 mm Hg
(AĤ₂°).
kJ/mol
= 2.9551](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd47fc2c3-8f4b-4085-b234-bc909be774e3%2Fafcf9028-2916-466f-8bd2-12757a3dd11d%2Fzvyvadi_processed.png&w=3840&q=75)
Transcribed Image Text:2. Single Component Phase Diagram: prepare the L-V (liquid-vapor) equilibrium line of a single
component phase diagram for ethanol. Show this L-V line from the triple point to the critical point,
including some of the intermediate points on that line, as defined by vapor pressure calculated from the
Antoine equation. The triple point T and Pare TTP = -123 °C and PTP =
4.3 x 10-7 kPa.
Critical T & P
Ethyl alcohol C₂H₂OH 46.07 0.789
(Ethanol)
SG
Formula Mol. Wt. (20°/4°)
Compound
Antonine Constants
DIVAG
Ethanol
Compound
I
-114.6
Tm (°C)
1411802
C₂H₂O
Fene
Formula
5.021
log10 P² = A -
78.5
ZU.U W LUJ.
19.6 to 93.4
38.58
Range (°C)
AĤm (Tm)
AH, (T.).
kJ/mol TH (°C) kJ/mol T.(KY P.(atm)
516.3
⇒PC₂H₂o (25°C) = 102.9551
=
63.0
A
TEVNE!
-277.63(1) -1366.91(1)
-235.31(g)
-1409.25(g)
1.4J1J9
194019
244.JJ1
8.11220 1592.864 226.184
B
p in mm Hg, T in °C
T + C
Example: The vapor pressure of acetaldehyde at 25°C is determined as follows:
log10 PC₂H₁0 (25°C) = 8.00552
1600.017
25 +291.809
(AĤ,*)**
kJ/mol
B
902 mm Hg
(AĤ₂°).
kJ/mol
= 2.9551
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