as Q2- Find distribution of concentratin of component A (CA) function of radial co-ordinate ( r ) for the following differential equation which repersents the diffusion and reaction of component A in...

Find distribution of concentratin of component A (CA) function of radial co-ordinate ( r) for the following differential equation which repersents the diffusion and reaction of component A in a catalyst particle of radius d?CA, dCA k rCa = 0 Deff r + dr2 dr dC A(r) subject to BC 1: @r = 0 CA() = finite and = 0 dr @ r = R CA(F) = CAS BC 2: %3D Where k= reaction rate constant and Deff diffusivity.as<br>Q2- Find distribution of concentratin of component A (CA)<br>function of radial co-ordinate ( r ) for the following differential<br>equation which repersents the diffusion and reaction of component<br>A in a catalyst particle of radius R.<br>dCa<br>d² CA<br>+<br>dr<br>k<br>rCa = 0<br>Deff<br>r<br>-<br>dr2<br>dC A(r)<br>subject to BC 1: @r = 0 CA(r) = finite and<br>= 0<br>dr<br>ВС 2:<br>@ r = R<br>CA(F) = CAs<br>Where k= reaction rate constant and DeffF diffusivity .<br>

Extracted text: as Q2- Find distribution of concentratin of component A (CA) function of radial co-ordinate ( r ) for the following differential equation which repersents the diffusion and reaction of component A in a catalyst particle of radius R. dCa d² CA + dr k rCa = 0 Deff r - dr2 dC A(r) subject to BC 1: @r = 0 CA(r) = finite and = 0 dr ВС 2: @ r = R CA(F) = CAs Where k= reaction rate constant and DeffF diffusivity .

Jun 11, 2022
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