One liter per minute of liquid containing A and B (CA0= 0.10 mol/liter, C0 0.01 mol/liter) flow into a mixed reactor of volume V react in a complex manner for which the stoichiometry is unknown. The outlet- stream from the reactor contains A, B, and C (CA = 0.02 mol/liter, CBf = 0.03 mol/liter, Cc = 0.04 mol/liter) of A, B, and C for the conditions within the reactor. %3D %3D 1 liter. The materials %3D %3D %3D Find the rate of reaction %3D V = U0 = 1 lit/min CAO = 0.1 mol/lit CBO = 0.01 mol/lit %3D %3D %3D CA = CA = 0.02 mol/lit 3D0.03mol/lit :0.04 mol/lit Liquid V3D1 lit

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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One liter per minute of liquid containing A and B (CA0 = 0.10 mol/liter, CO
0.01 mol/liter) flow into a mixed reactor of volume V = 1 liter. The materials
react in a complex manner for which the stoichiometry is unknown. The outlet
stream from the reactor contains A, B, and C (CA = 0.02 mol/liter, CBf = 0.03
mol/liter, C = 0.04 mol/liter)
of A, B, and C for the conditions within the reactor.
Af
Find the rate of reaction
V= V0 = 1 lit/min
CAO = 0.1 mol/lit
CB0 = 0.01 mol/it
3D1
%3D
CA = CA = 0.02 mol/it
CB 0.03 mol/lit
= 0.04 mol/lit
Liquid-
V = 1 lit
Transcribed Image Text:One liter per minute of liquid containing A and B (CA0 = 0.10 mol/liter, CO 0.01 mol/liter) flow into a mixed reactor of volume V = 1 liter. The materials react in a complex manner for which the stoichiometry is unknown. The outlet stream from the reactor contains A, B, and C (CA = 0.02 mol/liter, CBf = 0.03 mol/liter, C = 0.04 mol/liter) of A, B, and C for the conditions within the reactor. Af Find the rate of reaction V= V0 = 1 lit/min CAO = 0.1 mol/lit CB0 = 0.01 mol/it 3D1 %3D CA = CA = 0.02 mol/it CB 0.03 mol/lit = 0.04 mol/lit Liquid- V = 1 lit
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