quantitykind:ThermalDiffusionRatio

URI: http://qudt.org/vocab/quantitykind/ThermalDiffusionRatio

Type
Description

The "Thermal Diffusion Ratio" is proportional to the product of the component concentrations.

Properties
qudt:plainTextDescription
The "Thermal Diffusion Ratio" is proportional to the product of the component concentrations.
qudt:latexDefinition
In a steady state of a binary mixture in which thermal diffusion occurs, $grad x_B = -(\frac{k_T}{T}) grad T$, where $x_B$ is the amount-of-substance fraction of the heavier substance $B$, and $T$ is the local thermodynamic temperature.
Annotations
rdfs:comment
Applicable units are those of quantitykind:ThermalDiffusionRatio
dcterms:description
The "Thermal Diffusion Ratio" is proportional to the product of the component concentrations.
rdfs:label
Thermal Diffusion Ratio(en)
View as:  CSV

Work in progress

RDF/XML
<rdf:RDF
    xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#"
    xmlns:j.0="http://qudt.org/schema/qudt/"
    xmlns:j.1="http://purl.org/dc/terms/"
    xmlns:owl="http://www.w3.org/2002/07/owl#"
    xmlns:rdfs="http://www.w3.org/2000/01/rdf-schema#"
    xmlns:xsd="http://www.w3.org/2001/XMLSchema#" > 
  <rdf:Description rdf:about="http://qudt.org/vocab/quantitykind/ThermalDiffusionRatio">
    <rdfs:label xml:lang="en">Thermal Diffusion Ratio</rdfs:label>
    <j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/UNITLESS"/>
    <rdfs:comment>Applicable units are those of quantitykind:ThermalDiffusionRatio</rdfs:comment>
    <j.0:plainTextDescription>The "Thermal Diffusion Ratio" is proportional to the product of the component concentrations.</j.0:plainTextDescription>
    <j.0:latexDefinition rdf:datatype="http://qudt.org/schema/qudt/LatexString">In a steady state of a binary mixture in which thermal diffusion occurs, $grad x_B  = -(\frac{k_T}{T}) grad T$, where $x_B$ is the amount-of-substance fraction of the heavier substance $B$, and $T$ is the local thermodynamic temperature.</j.0:latexDefinition>
    <rdf:type rdf:resource="http://qudt.org/schema/qudt/QuantityKind"/>
    <j.0:symbol>k_T</j.0:symbol>
    <j.0:isoNormativeReference rdf:datatype="http://www.w3.org/2001/XMLSchema#anyURI">http://www.iso.org/iso/catalogue_detail?csnumber=31894</j.0:isoNormativeReference>
    <j.1:description rdf:datatype="http://qudt.org/schema/qudt/LatexString">The "Thermal Diffusion Ratio" is proportional to the product of the component concentrations.</j.1:description>
    <j.0:hasDimensionVector rdf:resource="http://qudt.org/vocab/dimensionvector/A0E0L0I0M0H0T0D1"/>
    <j.0:informativeReference rdf:datatype="http://www.w3.org/2001/XMLSchema#anyURI">http://www.thermopedia.com/content/1189/</j.0:informativeReference>
    <rdfs:isDefinedBy rdf:resource="http://qudt.org/2.1/vocab/quantitykind"/>
  </rdf:Description>
</rdf:RDF>
TURTLE
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@prefix rdfs: <http://www.w3.org/2000/01/rdf-schema#> .
@prefix xsd: <http://www.w3.org/2001/XMLSchema#> .

<http://qudt.org/vocab/quantitykind/ThermalDiffusionRatio>
  rdf:type <http://qudt.org/schema/qudt/QuantityKind> ;
  <http://purl.org/dc/terms/description> "The \"Thermal Diffusion Ratio\" is proportional to the product of the component concentrations."^^<http://qudt.org/schema/qudt/LatexString> ;
  <http://qudt.org/schema/qudt/applicableUnit> <http://qudt.org/vocab/unit/UNITLESS> ;
  <http://qudt.org/schema/qudt/hasDimensionVector> <http://qudt.org/vocab/dimensionvector/A0E0L0I0M0H0T0D1> ;
  <http://qudt.org/schema/qudt/informativeReference> "http://www.thermopedia.com/content/1189/"^^xsd:anyURI ;
  <http://qudt.org/schema/qudt/isoNormativeReference> "http://www.iso.org/iso/catalogue_detail?csnumber=31894"^^xsd:anyURI ;
  <http://qudt.org/schema/qudt/latexDefinition> "In a steady state of a binary mixture in which thermal diffusion occurs, $grad x_B  = -(\\frac{k_T}{T}) grad T$, where $x_B$ is the amount-of-substance fraction of the heavier substance $B$, and $T$ is the local thermodynamic temperature."^^<http://qudt.org/schema/qudt/LatexString> ;
  <http://qudt.org/schema/qudt/plainTextDescription> "The \"Thermal Diffusion Ratio\" is proportional to the product of the component concentrations." ;
  <http://qudt.org/schema/qudt/symbol> "k_T" ;
  rdfs:comment "Applicable units are those of quantitykind:ThermalDiffusionRatio" ;
  rdfs:isDefinedBy <http://qudt.org/2.1/vocab/quantitykind> ;
  rdfs:label "Thermal Diffusion Ratio"@en ;
.
JSON
{"resource":"Thermal Diffusion Ratio" 
 ,"qname":"quantitykind:ThermalDiffusionRatio" 
 ,"uri":"http:\/\/qudt.org\/vocab\/quantitykind\/ThermalDiffusionRatio" 
 ,"properties":["applicable unit":"unit:UNITLESS" 
    ,"comment":"Applicable units are those of quantitykind:ThermalDiffusionRatio" 
    ,"description":"The \"Thermal Diffusion Ratio\" is proportional to the product of the component concentrations." 
    ,"description (plain text)":"The \"Thermal Diffusion Ratio\" is proportional to the product of the component concentrations." 
    ,"has dimension vector":"dimension:A0E0L0I0M0H0T0D1" 
    ,"informative reference":"http:\/\/www.thermopedia.com\/content\/1189\/" 
    ,"isDefinedBy":"&lt;http:\/\/qudt.org\/2.1\/vocab\/quantitykind&gt;" 
    ,"label":"Thermal Diffusion Ratio" 
    ,"latex definition":"In a steady state of a binary mixture in which thermal diffusion occurs, $grad x_B  = -(\\frac{k_T}{T}) grad T$, where $x_B$ is the amount-of-substance fraction of the heavier substance $B$, and $T$ is the local thermodynamic temperature." 
    ,"normative reference (ISO)":"http:\/\/www.iso.org\/iso\/catalogue_detail?csnumber=31894" 
    ,"symbol":"k_T" 
    ,"type":"qudt:QuantityKind" 
    ]}
JSON-LD
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  "description" : "The \"Thermal Diffusion Ratio\" is proportional to the product of the component concentrations.",
  "applicableUnit" : "http://qudt.org/vocab/unit/UNITLESS",
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  "plainTextDescription" : "The \"Thermal Diffusion Ratio\" is proportional to the product of the component concentrations.",
  "symbol" : "k_T",
  "comment" : "Applicable units are those of quantitykind:ThermalDiffusionRatio",
  "isDefinedBy" : "http://qudt.org/2.1/vocab/quantitykind",
  "label" : {
    "@language" : "en",
    "@value" : "Thermal Diffusion Ratio"
  },
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}

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