A. tast Vapor diffusioen Produced Cenducted te explain through the wes bunter newly waterial ) A beaner with unter is Yestin eighing Scale and recorded of wnter on Seale we of daring lost temperahune And Pressune cf the raom 24 hours the are kapt 25'c and 1 atm Question A. find the diffusional MAS flux the Polymer (Nolar Mass Y radius of beaker ALross Sample in kmol Of watan kpor = 18.Okg/Kmol) (ocm) Cuvestian B. if excess the beauere to is Present inside anintain the equiliurium w hat is the Conctntration waser with warer Vapor Uaper Present iaside of cunter (Saturated in 2.646 kps and R i's the lbeaar Uapor Pressume inside tu beauer 8314 T/kAmal.k) Queestiun-c A fan un polyaner Saample water vapor throughout te wed to blo dy air over the there fore aintains 2ero Concentrarian Constantly Consider analysis. you Can that interval Caleulated d the thieuness of the Pelymeric Sample water vapar Concentration Part (L)is also Constnt. in Calculate the dirfusion of cwater is Coefficient Vapor threuph the polymeric Sample in

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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Question
Cenducted te arplain
through the
hunter
neuly produced
Vapor diffusion
ematerial
ith unter
tweighing Scale, and recorded
test
of sg of
on
water during
And the
24 hours
Pressune f the reom.
25'c and
temperatune
kapt at
are
atm
Gestion A
find the diffusi onal MASS Flux
the Polymer Sample in
( Nolar Mass of water kipor = 18-Okg/kmel)
Y radius of
ALross
beaker
Cocm)
auesticn B.
if
the beakere to
is Present inside
the equilivrium
u hat is the Comentration
Excess
waser
Aalntain
Va por
VApor Present raside
twith
water
f cunter
(Saturated Usper Pressume
is 2.646 k pa
beaver
ieside tu beaver
And R is
auestiun-e
A fan eny
polganer Smple
wed to blow dry air over the
therefore
aintains
Concentration Constantly
Censider
Zero
water
vapon
turoughout tha Gnalysis. you Can
Concentration
G Constt.
that interval
Caleulated
f the thieunss of the polymeric Sample
is
water vapor
Part () isalso
20 Hm, calculate the diffusion
Coefficient
Polymeric
of
cwater Vapor through the
Sample in
if the Steady Sfate
's S83 W,
the air
heat transfor
Calculate the thickness
Column
rate
required to
of
maintain the outside
heating
25
wall
without
Above
the
room tempPerant ore
at
aplain
This
> Uhy ae Put (-) in ficks equation.
Transcribed Image Text:Cenducted te arplain through the hunter neuly produced Vapor diffusion ematerial ith unter tweighing Scale, and recorded test of sg of on water during And the 24 hours Pressune f the reom. 25'c and temperatune kapt at are atm Gestion A find the diffusi onal MASS Flux the Polymer Sample in ( Nolar Mass of water kipor = 18-Okg/kmel) Y radius of ALross beaker Cocm) auesticn B. if the beakere to is Present inside the equilivrium u hat is the Comentration Excess waser Aalntain Va por VApor Present raside twith water f cunter (Saturated Usper Pressume is 2.646 k pa beaver ieside tu beaver And R is auestiun-e A fan eny polganer Smple wed to blow dry air over the therefore aintains Concentration Constantly Censider Zero water vapon turoughout tha Gnalysis. you Can Concentration G Constt. that interval Caleulated f the thieunss of the polymeric Sample is water vapor Part () isalso 20 Hm, calculate the diffusion Coefficient Polymeric of cwater Vapor through the Sample in if the Steady Sfate 's S83 W, the air heat transfor Calculate the thickness Column rate required to of maintain the outside heating 25 wall without Above the room tempPerant ore at aplain This > Uhy ae Put (-) in ficks equation.
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