The mass of ethylene contained in a 0.25 m3 cylinder at 50°C and 115 bar. The characteristic properties of ethylene are given in the following table: Molar Ve mass TK Pe/bar Ze cm3-mol-! T/K Ethylene 28.054 0.087 282.3 50.40 0.281 131. 169.4 To get the value of Z, use the Lee/Kesler generalized-correlation table given below.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
icon
Related questions
Question
100%

20 

The mass of ethylene contained in a 0.25 m3 cylinder at 50°C and 115 bar. The characteristic properties of ethylene are given in the
following table:
Molar
Ve
T. K
Pe /bar
Ze
cm3-mol-
T„/K
mass
Ethylene
28.054
0.087
282.3
50.40
0.281
131.
169.4
To get the value of Z, use the Lee/Kesler generalized-correlation table given below.
TABLE D.3 Values of Zº
P, =
1.0000
1.2000
1.5000
2.0000
3.0000
5.0000
7.0000
10.000
T,
1.02
0.5146
0.2629
0.2715
0.3297
0.4547
0.6980
0.9307
1.2650
1.05
0.6026
0.4437
0.3131
0.3452
0.4604
0.6956
0.9222
1.2481
1.10
0.6880
0.5984
0.4580
0.3953
0.4770
0.6950
0.9110
1.2232
1.15
0.7443
0.6803
0.5798
0.4760
0.5042
0.6987
0.9033
1.2021
1.20
0.7858
0.7363
0.6605
0.5605
0.5425
0.7069
0.990
1.1844
Transcribed Image Text:The mass of ethylene contained in a 0.25 m3 cylinder at 50°C and 115 bar. The characteristic properties of ethylene are given in the following table: Molar Ve T. K Pe /bar Ze cm3-mol- T„/K mass Ethylene 28.054 0.087 282.3 50.40 0.281 131. 169.4 To get the value of Z, use the Lee/Kesler generalized-correlation table given below. TABLE D.3 Values of Zº P, = 1.0000 1.2000 1.5000 2.0000 3.0000 5.0000 7.0000 10.000 T, 1.02 0.5146 0.2629 0.2715 0.3297 0.4547 0.6980 0.9307 1.2650 1.05 0.6026 0.4437 0.3131 0.3452 0.4604 0.6956 0.9222 1.2481 1.10 0.6880 0.5984 0.4580 0.3953 0.4770 0.6950 0.9110 1.2232 1.15 0.7443 0.6803 0.5798 0.4760 0.5042 0.6987 0.9033 1.2021 1.20 0.7858 0.7363 0.6605 0.5605 0.5425 0.7069 0.990 1.1844
TABLE D.4 Values of Z1
P, =
1.0000
1.2000
1.5000
2.0000
3.0000
5.0000
7.0000
10.000
T,
1.02
-0.0062
-0.0227
-0.0524
-0.0722
-0.1021
-0.1556
-0.2047
-0.2731
1.05
0.0220
0.1059
0.0451
-0.0432
-0.0838
-0.1370
-0.1835
-0.2476
1.10
0.0476
0.0897
0.1630
0.0698
-0.0373
-0.1021
-0.1469
-0.2056
1.15
0.0625
0.0943
0.1548
0.1667
0.0332
-0.0611
-0.1084
-0.1642
1.20
0.0719
0.0991
0.1477
0.1990
0.1095
-0.0141
-0.0678
-0.1231
The values of the ideal gas constant (R) are given below.
Values of the Universal Gas Constant
8.314 J-mol-1-K-' = 8.314 m³-Pa-mol-1-K-1
83.14 cm³-bar-mol¬1-K¯1
R
%3D
%3D
8314 cm³ -kPa-mol¬1-K-1
%3D
%3D
= 82.06 cm³.(atm)-mol K-l = 62, 356 cm³-(torr)-mol1.K-!
1.987 (cal)-mol-K¯ª
0.7302 (ft)° (atm) (lb mol)-' (R)~1 = 10.73 (ft)³ (psia) (lb mol) (R)-1
1545 (ft) (lb;) (lb mol)(R)¯
1.986 (Btu)(lb mole) (R)-1
%3D
%3D
-1
The mass of ethylene is
kg.
Transcribed Image Text:TABLE D.4 Values of Z1 P, = 1.0000 1.2000 1.5000 2.0000 3.0000 5.0000 7.0000 10.000 T, 1.02 -0.0062 -0.0227 -0.0524 -0.0722 -0.1021 -0.1556 -0.2047 -0.2731 1.05 0.0220 0.1059 0.0451 -0.0432 -0.0838 -0.1370 -0.1835 -0.2476 1.10 0.0476 0.0897 0.1630 0.0698 -0.0373 -0.1021 -0.1469 -0.2056 1.15 0.0625 0.0943 0.1548 0.1667 0.0332 -0.0611 -0.1084 -0.1642 1.20 0.0719 0.0991 0.1477 0.1990 0.1095 -0.0141 -0.0678 -0.1231 The values of the ideal gas constant (R) are given below. Values of the Universal Gas Constant 8.314 J-mol-1-K-' = 8.314 m³-Pa-mol-1-K-1 83.14 cm³-bar-mol¬1-K¯1 R %3D %3D 8314 cm³ -kPa-mol¬1-K-1 %3D %3D = 82.06 cm³.(atm)-mol K-l = 62, 356 cm³-(torr)-mol1.K-! 1.987 (cal)-mol-K¯ª 0.7302 (ft)° (atm) (lb mol)-' (R)~1 = 10.73 (ft)³ (psia) (lb mol) (R)-1 1545 (ft) (lb;) (lb mol)(R)¯ 1.986 (Btu)(lb mole) (R)-1 %3D %3D -1 The mass of ethylene is kg.
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 2 steps

Blurred answer
Knowledge Booster
Process flow diagram
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemical-engineering and related others by exploring similar questions and additional content below.
Recommended textbooks for you
Introduction to Chemical Engineering Thermodynami…
Introduction to Chemical Engineering Thermodynami…
Chemical Engineering
ISBN:
9781259696527
Author:
J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:
McGraw-Hill Education
Elementary Principles of Chemical Processes, Bind…
Elementary Principles of Chemical Processes, Bind…
Chemical Engineering
ISBN:
9781118431221
Author:
Richard M. Felder, Ronald W. Rousseau, Lisa G. Bullard
Publisher:
WILEY
Elements of Chemical Reaction Engineering (5th Ed…
Elements of Chemical Reaction Engineering (5th Ed…
Chemical Engineering
ISBN:
9780133887518
Author:
H. Scott Fogler
Publisher:
Prentice Hall
Process Dynamics and Control, 4e
Process Dynamics and Control, 4e
Chemical Engineering
ISBN:
9781119285915
Author:
Seborg
Publisher:
WILEY
Industrial Plastics: Theory and Applications
Industrial Plastics: Theory and Applications
Chemical Engineering
ISBN:
9781285061238
Author:
Lokensgard, Erik
Publisher:
Delmar Cengage Learning
Unit Operations of Chemical Engineering
Unit Operations of Chemical Engineering
Chemical Engineering
ISBN:
9780072848236
Author:
Warren McCabe, Julian C. Smith, Peter Harriott
Publisher:
McGraw-Hill Companies, The