(c) For a fixed mass flow rate m, if the reactor diameter is increased by a factor of 2, the equilibrium conversion X, will (1) increase (2) decrease (3) remain the same (4) insufficient information to tell (d) For a fixed mass flow rate m, if the particle size is increased, the equilibrium conversion will (1) increase (2) decrease (3) remain the same (4) insufficient information to tell (e) For a fixed mass flow rate m, if the particle size is increased, the conversion will (1) increase (2) decrease (3) remain the same (4) insufficient information to tell
(c) For a fixed mass flow rate m, if the reactor diameter is increased by a factor of 2, the equilibrium conversion X, will (1) increase (2) decrease (3) remain the same (4) insufficient information to tell (d) For a fixed mass flow rate m, if the particle size is increased, the equilibrium conversion will (1) increase (2) decrease (3) remain the same (4) insufficient information to tell (e) For a fixed mass flow rate m, if the particle size is increased, the conversion will (1) increase (2) decrease (3) remain the same (4) insufficient information to tell
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
Related questions
Question
please answer and avoid typing.

Transcribed Image Text:Multiple Choice. In each of the cases below, (a) through (e), you will need to explain why you chose
the answer you did.
The elementary isomerization exothermic reaction
P5-4
AZ
is carried out isothermally at 400 K in a PBR in which pressure drop plays a role, with a = 0.001 kg-'.
Currently, 50% conversion is achieved. The equilibrium constant at this temperature is 3.0.

Transcribed Image Text:(c) For a fixed mass flow rate m, if the reactor diameter is increased by a factor of 2, the equilibrium
conversion X, will
(1) increase (2) decrease (3) remain the same (4) insufficient information to tell
(d) For a fixed mass flow rate m, if the particle size is increased, the equilibrium conversion will
(1) increase (2) decrease (3) remain the same (4) insufficient information to tell
(e) For a fixed mass flow rate im , if the particle size is increased, the conversion will
(1) increase (2) decrease (3) remain the same (4) insufficient information to tell
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