Forgot to take out the definitions from one file.
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@ -527,58 +527,12 @@ namespace Cantera {
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* @{
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*/
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//! This method returns an array of generalized concentrations
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/*!
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* \f$ C^a_k\f$ are defined such that \f$ a_k = C^a_k /
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* C^0_k, \f$ where \f$ C^0_k \f$ is a standard concentration
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* defined below and \f$ a_k \f$ are activities used in the
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* thermodynamic functions. These activity (or generalized)
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* concentrations are used
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* by kinetics manager classes to compute the forward and
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* reverse rates of elementary reactions. Note that they may
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* or may not have units of concentration --- they might be
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* partial pressures, mole fractions, or surface coverages,
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* for example.
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*
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* @param c Output array of generalized concentrations. The
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* units depend upon the implementation of the
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* reaction rate expressions within the phase.
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*/
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virtual void getActivityConcentrations(doublereal* c) const;
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/**
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* The standard concentration \f$ C^0_k \f$ used to normalize
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* the generalized concentration. In many cases, this quantity
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* will be the same for all species in a phase - for example,
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* for an ideal gas \f$ C^0_k = P/\hat R T \f$. For this
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* reason, this method returns a single value, instead of an
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* array. However, for phases in which the standard
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* concentration is species-specific (e.g. surface species of
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* different sizes), this method may be called with an
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* optional parameter indicating the species.
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*
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* @param k species index. Defaults to zero.
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*/
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virtual doublereal standardConcentration(int k=0) const;
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/**
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* Returns the natural logarithm of the standard
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* concentration of the kth species
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*
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* @param k species index
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*/
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virtual doublereal logStandardConc(int k=0) const;
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//! Get the array of non-dimensional molar-based activity coefficients at
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//! the current solution temperature, pressure, and solution concentration.
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/*!
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* @param ac Output vector of activity coefficients. Length: m_kk.
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*/
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virtual void getActivityCoefficients(doublereal* ac) const;
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//@}
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/// @name Partial Molar Properties of the Solution
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