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    <!-- http://biomodels.net/SBO/SBO_0000095 -->

    <Class rdf:about="http://biomodels.net/SBO/SBO_0000095">
        <rdfs:label>mass action rate law for second order forward, third order reverse, reversible reactions, one reactant</rdfs:label>
    </Class>
    


    <!-- http://biomodels.net/SBO/SBO_0000097 -->

    <Class rdf:about="http://biomodels.net/SBO/SBO_0000097">
        <rdfs:label>mass action rate law for second order forward, third order reverse, reversible reactions, one reactant, two products, continuous scheme</rdfs:label>
        <rdfs:subClassOf rdf:resource="http://biomodels.net/SBO/SBO_0000095"/>
        <rdfs:seeAlso>&lt;n0:math xmlns:n0=&quot;http://www.w3.org/1998/Math/MathML&quot;&gt;
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     &lt;n2:bvar&gt;&lt;n2:ci definitionURL=&quot;http://biomodels.net/SBO/#SBO:0000040&quot;&gt;kr&lt;/n2:ci&gt;&lt;/n2:bvar&gt;
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&lt;/n0:math&gt;</rdfs:seeAlso>
        <rdfs:comment>Reaction scheme where the products are created from the reactants and the change of a product quantity is proportional to the product of reactant activities. The reaction scheme does include a reverse process that creates the reactants from the products. The rate of the forward process is proportional to the square of one reactant quantity. The rate of the reverse process is proportional to the quantity of one product and the square of the quantity of the other product. It is to be used in a reaction modelled using a continuous framework. </rdfs:comment>
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