m1 and m2 are mixed to produce a solution that will be distributed into two tanks as shown on the diagram below. Find how much of components A and B are there in m1 if m4 is twice as much as m5. MIXER TANK 2 90% Component A 10% Component B Component A Component B 200 Kg/Hr 75% Component A m2 Component B (Pure) m4 TANK 1

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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m1 and m2 are mixed to produce a solution that will be distributed into
two tanks as shown on the diagram below. Find how much of
components A and B are there in m1 if m4 is twice as much as m5.
MIXER
TANK 2
m3
90% Component A
10% Component B
Component A
Component B
200 Kg/Hr
75% Component A
m2
Component B
(Pure)
m4
TANK 1
O A= 380 kg; B = 45 kg
O A= 215 kg; B = 18 kg
O A = 450 kg; B = 50 kg
O A = 120 kg; B = 68 kg
Transcribed Image Text:m1 and m2 are mixed to produce a solution that will be distributed into two tanks as shown on the diagram below. Find how much of components A and B are there in m1 if m4 is twice as much as m5. MIXER TANK 2 m3 90% Component A 10% Component B Component A Component B 200 Kg/Hr 75% Component A m2 Component B (Pure) m4 TANK 1 O A= 380 kg; B = 45 kg O A= 215 kg; B = 18 kg O A = 450 kg; B = 50 kg O A = 120 kg; B = 68 kg
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