Look at the image below and calculate the unknown flow rates in kg/h (m,, m, and m3) and fractional compositions (x1,A, X1,B, X2,A, X2,B, X3,A, X3,B) Output 1 Output 2 40.0 kg/h 0.900 kg A/kg 0.100 kg B/kg 30.0 kg/h 0.600 kg A/kg 0.400 kg B/kg Input 1 Mixing point 100.0 kg/h Unit 1 m,(kg/h) (kg/h) m3(kg/h) Unit 2 0.500 kg A/kg 0.500 kg B/kg X1,a(kg A/kg) X1,8(kg B/kg) X2,A(kg A/kg) X2, B(kg B/kg) X3, (kg A/kg) X3,6(kg B/kg) 30.0 kg/h 0.300 kg A/kg 0.700 kg B/kg Input 2

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
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Look at the image below and calculate the unknown flow rates in kg/h (mi,, m, and mi3) and
fractional compositions (x1,A, X1,B, X2,A, X2,B, X3,A, X3,B)
Output 1
Output 2
40.0 kg/h
0.900 kg A/kg
0.100 kg B/kg
30.0 kg/h
0.600 kg A/kg
0.400 kg B/kg
Input 1
Mixing point
100.0 kg/h
m (kg/h)
m2(kg/h)
im3(kg/h)
Unit 1
Unit 2
0.500 kg A/kg
0.500 kg B/kg
X1,A(kg A/kg)
X1,8(kg B/kg)
X2,a(kg A/kg)
X2,B(kg B/kg)
X3,A(kg A/kg)
X3,8(kg B/kg)
30.0 kg/h
0.300 kg A/kg
0.700 kg B/kg
Input 2
Transcribed Image Text:Look at the image below and calculate the unknown flow rates in kg/h (mi,, m, and mi3) and fractional compositions (x1,A, X1,B, X2,A, X2,B, X3,A, X3,B) Output 1 Output 2 40.0 kg/h 0.900 kg A/kg 0.100 kg B/kg 30.0 kg/h 0.600 kg A/kg 0.400 kg B/kg Input 1 Mixing point 100.0 kg/h m (kg/h) m2(kg/h) im3(kg/h) Unit 1 Unit 2 0.500 kg A/kg 0.500 kg B/kg X1,A(kg A/kg) X1,8(kg B/kg) X2,a(kg A/kg) X2,B(kg B/kg) X3,A(kg A/kg) X3,8(kg B/kg) 30.0 kg/h 0.300 kg A/kg 0.700 kg B/kg Input 2
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