1) Flux, N units a. m/s b. kg.mol.m/s c. kg.mol/m2s d. none of these 2) The Wilke-Lee modification of the Hirschfelder-Bird-Spotz method is recommended for a. mixtures of non-polar gases b. polar with non-polar gases c. both a and b d. none of these 3) D AB is a. αT^(3/2) /Pt b. αT^(1/2) /Pt c. αPt/ T^(1/2) d. none of these 4) Wilke-Lee, will serve for pressure up to a. 1500 kN/m2 b. 150 kN/m2 c. 15 at m d. both a and b
1) Flux, N units a. m/s b. kg.mol.m/s c. kg.mol/m2s d. none of these 2) The Wilke-Lee modification of the Hirschfelder-Bird-Spotz method is recommended for a. mixtures of non-polar gases b. polar with non-polar gases c. both a and b d. none of these 3) D AB is a. αT^(3/2) /Pt b. αT^(1/2) /Pt c. αPt/ T^(1/2) d. none of these 4) Wilke-Lee, will serve for pressure up to a. 1500 kN/m2 b. 150 kN/m2 c. 15 at m d. both a and b
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
1) Flux, N units
a. m/s
b. kg.mol.m/s
c. kg.mol/m2s
d. none of these
2) The Wilke-Lee modification of the Hirschfelder-Bird-Spotz method is recommended for
a. mixtures of non-polar gases
b. polar with non-polar gases
c. both a and b
d. none of these
3) D AB is
a. αT^(3/2) /Pt
b. αT^(1/2) /Pt
c. αPt/ T^(1/2)
d. none of these
4) Wilke-Lee, will serve for pressure up to
a. 1500 kN/m2
b. 150 kN/m2
c. 15 at m
d. both a and b
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