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Diffusion Reaction Interaction for a Pair of Spheres - ETD ...

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f Equation coefficient <strong>of</strong> sphere 2 defined in (2.16)<br />

2 n<br />

F Matrix defined in equation (2.19)<br />

g Equation coefficient <strong>of</strong> sphere 1 defined in (5.31)<br />

1 n<br />

G n<br />

i<br />

G n<br />

h1n<br />

Equation Coefficient defined in (2.41)<br />

Matrix elements <strong>for</strong> the concentration expansion defined in (2.43) and<br />

(2.44)<br />

Coefficient <strong>of</strong> sphere 1 defined in (2.20)<br />

h Trans<strong>for</strong>m expression from spherical to bispherical coordinates<br />

μ<br />

h Trans<strong>for</strong>m expression from spherical to bispherical coordinates<br />

η<br />

h Trans<strong>for</strong>m expression from spherical to bispherical coordinates<br />

φ<br />

H Matrix defined in equation (5.28)<br />

i Equation coefficient defined in (5.12)<br />

n<br />

i' First derivative <strong>of</strong> function defined in (5.23)<br />

n<br />

I Modified Bessel Function <strong>of</strong> the first kind <strong>of</strong> half integer order (5.12)<br />

1<br />

n+<br />

2<br />

J Matrix defined in equation (3.20)<br />

k1<br />

k2<br />

kseff<br />

kint<br />

First order reaction rate constant at the surface <strong>of</strong> sphere 1<br />

First order reaction rate constant at the surface <strong>of</strong> sphere s<br />

Effective first order surface reaction rate constant <strong>for</strong> reaction inside<br />

sphere 1 (5.48)<br />

First order reaction rate constant inside sphere 1<br />

K Equation coefficients defined in (2.22)<br />

nm<br />

xvi

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