Consider the two tanks as shown in (Figure 11-2), which are connected in series. The first tank has a volume of salt water Vo with a concentration of Co. The second tank whose volume is Vo. It was empty at first. At moment t = 0, pure water enters the first tank with a volumetric flow rate of v and at the same time, it is pumped from the first tank to the second tank with an intensity v. At this time, no fluid leaves the second tank. C, v ob Vo Figure 11-2 B) Prove that the salt concentration changes in the second tank are as follows. C2 - Co Vo vt exp Vo

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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Consider the two tanks as shown in (Figure 11-2), which are connected in series.
The first tank has a volume of salt water Vo with a concentration of Co . The
second tank whose volume is Vo . It was empty at first. At moment t = 0, pure
water enters the first tank with a volumetric flow rate of v and at the same time,
it is pumped from the first tank to the second tank with an intensity v. At this
time, no fluid leaves the second tank.
C, v
Vo
o Vo
Figure 11-2
B) Prove that the salt concentration changes in the second tank are as follows.
C2
Co
Vo
vt
exp
vt
Vo
Transcribed Image Text:Consider the two tanks as shown in (Figure 11-2), which are connected in series. The first tank has a volume of salt water Vo with a concentration of Co . The second tank whose volume is Vo . It was empty at first. At moment t = 0, pure water enters the first tank with a volumetric flow rate of v and at the same time, it is pumped from the first tank to the second tank with an intensity v. At this time, no fluid leaves the second tank. C, v Vo o Vo Figure 11-2 B) Prove that the salt concentration changes in the second tank are as follows. C2 Co Vo vt exp vt Vo
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