2. A gas absorber is fed, via stream F1. 100 mol/min of monoethanolamine (MEA) and CO2. Stream Fi is composed of 98°% (mo%6) MEA and 2 CO2. Stream F2 contains Co2. SO2. N2 (Figure to the left). Experimental data available for the unit are shown in Table to the left. Derive the linear system for the absorber using the supplied information. The three unknowns are the flow rates of P1, F2. P2. Note that since data are available on only two components, it is necessary to include the overall material balance as one of the equations. Determine the following: a. Matrix that coefficients of system of linear equations. b. Determine the values of P1, F2. P2 represents the using Cramer's Rule. c. Determine the values of P1, F2, P2. by matrix inverse technique in MS S Scanne cel amScanner

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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kindly solve this problem with table from excel thank u so much
2. A gas absorber is fed, via stream F1, 100
mol/min of monoethanolamine (MEA) and
co2. Stream Fı is composed of 98% (mo6)
MEA and 2%% CO2. Stream F2 contains
Co2. SO2. N2 (Figure to the left).
Experimental data available for the unit
are shown in Table to the left.
Derive the linear system for the
absorber using the supplied information.
The three unknowns are the flow rates of
P1, F2. P2. Note that since data are
available on only two components, it is
necessary to include the overall material
balance as one of the equations.
Determine the following:
a. Matrix
that
represents
the
coefficients of system
equations.
b. Determine the values of P1. F2. P2
of linear
using Cramer's Rule.
c. Determine the values of P1, F2, P2.
by matrix inverse technique in MS
CamScanner
CS Scannexcel.
Transcribed Image Text:2. A gas absorber is fed, via stream F1, 100 mol/min of monoethanolamine (MEA) and co2. Stream Fı is composed of 98% (mo6) MEA and 2%% CO2. Stream F2 contains Co2. SO2. N2 (Figure to the left). Experimental data available for the unit are shown in Table to the left. Derive the linear system for the absorber using the supplied information. The three unknowns are the flow rates of P1, F2. P2. Note that since data are available on only two components, it is necessary to include the overall material balance as one of the equations. Determine the following: a. Matrix that represents the coefficients of system equations. b. Determine the values of P1. F2. P2 of linear using Cramer's Rule. c. Determine the values of P1, F2, P2. by matrix inverse technique in MS CamScanner CS Scannexcel.
P2+
F2
Absorber
F1
P1
Data for Gas Absorber (Mole
Fraction)
P2
P1
0.0170
F2
SO:
0.0200
0.0022
N2
0.000
0.9000
0.9890
Transcribed Image Text:P2+ F2 Absorber F1 P1 Data for Gas Absorber (Mole Fraction) P2 P1 0.0170 F2 SO: 0.0200 0.0022 N2 0.000 0.9000 0.9890
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