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<j.1:description rdf:datatype="http://qudt.org/schema/qudt/LatexString">The "Equlilbrium Constant", also known as the thermodynamic equilibrium constant, is an expression that gives us a ratio of the products and reactants of a reaction at equilibrium with respect to a specific unit.</j.1:description>
<j.0:latexDefinition rdf:datatype="http://qudt.org/schema/qudt/LatexString">$K^\Theta = \Pi_B(\lambda_B^\Theta)^{-\nu_B}$, where $\Pi_B$ denotes the product for all substances $B$, $\lambda_B^\Theta$ is the standard absolute activity of substance $B$, and $\nu_B$ is the stoichiometric number of the substance $B$.</j.0:latexDefinition>
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<j.0:informativeReference rdf:datatype="http://www.w3.org/2001/XMLSchema#anyURI">http://en.wikipedia.org/wiki/Equilibrium_constant</j.0:informativeReference>
<rdfs:label xml:lang="en">Equilibrium Constant</rdfs:label>
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<j.0:plainTextDescription>The "Equlilbrium Constant", also known as the thermodynamic equilibrium constant, is an expression that gives us a ratio of the products and reactants of a reaction at equilibrium with respect to a specific unit.</j.0:plainTextDescription>
<j.0:latexSymbol rdf:datatype="http://qudt.org/schema/qudt/LatexString">$K^\Theta$</j.0:latexSymbol>
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<http://qudt.org/schema/qudt/latexDefinition> "$K^\\Theta = \\Pi_B(\\lambda_B^\\Theta)^{-\\nu_B}$, where $\\Pi_B$ denotes the product for all substances $B$, $\\lambda_B^\\Theta$ is the standard absolute activity of substance $B$, and $\\nu_B$ is the stoichiometric number of the substance $B$."^^<http://qudt.org/schema/qudt/LatexString> ;
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rdfs:label "Equilibrium Constant"@en ;
rdfs:seeAlso <http://qudt.org/vocab/quantitykind/EquilibriumConstantOnConcentrationBasis> ;
rdfs:seeAlso <http://qudt.org/vocab/quantitykind/EquilibriumConstantOnPressureBasis> ;
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