Difference between revisions of "Binding of R2 to OR operator"

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(Rate equation)
(Rate equation)
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== Rate equation ==
 
== Rate equation ==
  
<center><math> r= \frac{k^{-}_{1}}{K_{d1}}\cdot O_{R}\cdot R^{2}_{2} - k^{-}_{1}\cdot O_{R}-R_{2}</math></center>
+
<center><math> r= \frac{k^{-}_{1}}{K_{d1}}\cdot [O_{R}]\cdot [R^{2}_{2}] - k^{-}_{1}\cdot [O_{R}-R_{2}]</math></center>
  
 
== Parameters ==
 
== Parameters ==

Revision as of 04:37, 23 September 2015

Chemical equation

O_{R} + 2R_{2} \rightleftharpoons O_{R}-R_{2}

Rate equation

 r= \frac{k^{-}_{1}}{K_{d1}}\cdot [O_{R}]\cdot [R^{2}_{2}] - k^{-}_{1}\cdot [O_{R}-R_{2}]

Parameters

References