38. Following is a labeled flowchart for a steady-state two-unit process, with boundaries shown to denote subsystems about which balances can be taken. State the maximum number of balances that can be written for each subsystem and the order in which you would write balances to determine the unknown process variables. (See Example 4.4-1.) 200 g C/s - 475 g/s I (g B/g) z(g C/g) 800 g/s i m2(g/s) UNIT(g/s) UNIT 2 0.800 g B/g i3(g/s) (1-x2-y2)(g C/g) J 0.012 g A/g 0.558 g B/g 0.430 g C/g Y100 g A/s

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
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38. Following is a labeled flowchart for a steady-state two-unit process, with boundaries shown to
denote subsystems about which balances can be taken. State the maximum number of balances that
can be written for each subsystem and the order in which you would write balances to determine the
unknown process variables. (See Example 4.4-1.)
200 g C/s
-
475 g/s
I (g B/g)
z(g C/g)
800 g/s
i m2(g/s)
UNIT(g/s)
UNIT
2
0.800 g B/g
i3(g/s)
(1-x2-y2)(g C/g)
J 0.012 g A/g
0.558 g B/g
0.430 g C/g
Y100 g A/s
Transcribed Image Text:38. Following is a labeled flowchart for a steady-state two-unit process, with boundaries shown to denote subsystems about which balances can be taken. State the maximum number of balances that can be written for each subsystem and the order in which you would write balances to determine the unknown process variables. (See Example 4.4-1.) 200 g C/s - 475 g/s I (g B/g) z(g C/g) 800 g/s i m2(g/s) UNIT(g/s) UNIT 2 0.800 g B/g i3(g/s) (1-x2-y2)(g C/g) J 0.012 g A/g 0.558 g B/g 0.430 g C/g Y100 g A/s
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