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

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and<br />

( 0)<br />

K = K<br />

nm<br />

nm<br />

. (2.30)<br />

Then equation (2.26) is used to explicitly express h11 as a function <strong>of</strong> all terms<br />

where<br />

or<br />

m ≥ 2<br />

∑ ∞<br />

m=<br />

1<br />

( 1)<br />

( 1)<br />

h 11 = Q1<br />

+ h1mK<br />

1m<br />

, (2.31)<br />

h<br />

11<br />

Q<br />

=<br />

( 1)<br />

1<br />

+<br />

( 1)<br />

∑ K1m<br />

h1m<br />

m 2<br />

( 1)<br />

− 11<br />

∞<br />

=<br />

1 K<br />

.<br />

(2.32)<br />

Now that h is known it may be eliminated from the remaining expressions.<br />

11<br />

Substituting equation (2.32) into (2.21) can be written in a <strong>for</strong>m similar to<br />

equation (2.26) <strong>for</strong><br />

in short<br />

n ≥ 2<br />

h1n ⎛<br />

⎞<br />

= + + ∑ ⎜ +<br />

⎟<br />

−<br />

⎝ − ⎠<br />

∞<br />

( 1)<br />

( 1)<br />

( 1)<br />

( 1)<br />

( 1)<br />

Q1<br />

K n1<br />

( 1)<br />

K n1<br />

K1m<br />

h1n<br />

Qn<br />

h<br />

( 1)<br />

1m<br />

K nm<br />

, n ≥ 2,<br />

( 1)<br />

(2.33)<br />

1 K11<br />

m=<br />

2 1 K11<br />

26

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