For a unit cube containing a dispersion of 2nd phase particles with radius r the number of particles N₂ . The average distanced between particles is given by the equation λ = = 4/3πr3 1 1 (N₂)3 - 2r 1/3 (a) Show that λ = 2r[(₁)¹³-1] (b) For f=0.001, 0.01, 0.1 and r= 106,105,104 and 10-³ cm, calculate 1. (c) Plot f versus

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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For a unit cube containing a dispersion of 2nd phase particles with radius r the number of
f
The average distanced between particles is given by the equation
4/3πr³
λ =
particles N₂
=
1
1
(N₂)³
2r
(a) Show that λ = 2r[(¹/³-11
1.91)
(b) For f=0.001, 0.01, 0.1 and r= 106,105,104 and 10-³ cm, calculate 1.
(c) Plot f versus
Transcribed Image Text:For a unit cube containing a dispersion of 2nd phase particles with radius r the number of f The average distanced between particles is given by the equation 4/3πr³ λ = particles N₂ = 1 1 (N₂)³ 2r (a) Show that λ = 2r[(¹/³-11 1.91) (b) For f=0.001, 0.01, 0.1 and r= 106,105,104 and 10-³ cm, calculate 1. (c) Plot f versus
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