quantitykind:MagneticAreaMoment

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

Type
Description

"Magnetic Area Moment", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. "Magnetic Area Moment" is also referred to as "Magnetic Moment".

Properties
qudt:plainTextDescription
"Magnetic Area Moment", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. "Magnetic Area Moment" is also referred to as "Magnetic Moment".
qudt:latexDefinition
\(m = I e_n A\), where \(I\) is electric current in a small closed loop, \(e_n\) is a unit vector perpendicular to the loop, and \(A\) is the area of the loop. The magnetic moment of a substance within a domain is the vector sum of the magnetic moments of all entities included in the domain.
Annotations
dcterms:description
"Magnetic Area Moment", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. "Magnetic Area Moment" is also referred to as "Magnetic Moment".
rdfs:label
Magnetic Area Moment(en)
View as:  CSV

Work in progress

RDF/XML
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    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/MagneticAreaMoment">
    <rdfs:label xml:lang="en">Magnetic Area Moment</rdfs:label>
    <j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/J-PER-T"/>
    <j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/A_Ab-CentiM2"/>
    <j.0:exactMatch rdf:resource="http://qudt.org/vocab/quantitykind/MagneticMoment"/>
    <j.1:description rdf:datatype="http://www.w3.org/1999/02/22-rdf-syntax-ns#HTML">"Magnetic Area Moment", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. "Magnetic Area Moment" is also referred to as "Magnetic Moment".</j.1:description>
    <j.0:latexDefinition rdf:datatype="http://qudt.org/schema/qudt/LatexString">\(m = I e_n A\), where \(I\) is electric current in a small closed loop, \(e_n\) is a unit vector perpendicular to the loop, and \(A\) is the area of the loop. The magnetic moment of a substance within a domain is the vector sum of the magnetic moments of all entities included in the domain.</j.0:latexDefinition>
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    <j.0:hasDimensionVector rdf:resource="http://qudt.org/vocab/dimensionvector/A0E1L2I0M0H0T0D0"/>
    <j.0:symbol>m</j.0:symbol>
    <j.0:plainTextDescription>"Magnetic Area Moment", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. "Magnetic Area Moment" is also referred to as "Magnetic Moment".</j.0:plainTextDescription>
    <rdf:type rdf:resource="http://qudt.org/schema/qudt/QuantityKind"/>
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TURTLE
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<http://qudt.org/vocab/quantitykind/MagneticAreaMoment>
  rdf:type <http://qudt.org/schema/qudt/QuantityKind> ;
  <http://purl.org/dc/terms/description> "\"Magnetic Area Moment\", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. \"Magnetic Area Moment\" is also referred to as \"Magnetic Moment\"."^^rdf:HTML ;
  <http://qudt.org/schema/qudt/applicableUnit> <http://qudt.org/vocab/unit/A-M2> ;
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  <http://qudt.org/schema/qudt/informativeReference> "http://www.iso.org/iso/home/store/catalogue_tc/catalogue_detail.htm?csnumber=31891"^^xsd:anyURI ;
  <http://qudt.org/schema/qudt/latexDefinition> "\\(m = I e_n A\\), where \\(I\\) is electric current in a small closed loop, \\(e_n\\) is a unit vector perpendicular to the loop, and \\(A\\) is the area of the loop. The magnetic moment of a substance within a domain is the vector sum of the magnetic moments of all entities included in the domain."^^<http://qudt.org/schema/qudt/LatexString> ;
  <http://qudt.org/schema/qudt/plainTextDescription> "\"Magnetic Area Moment\", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. \"Magnetic Area Moment\" is also referred to as \"Magnetic Moment\"." ;
  <http://qudt.org/schema/qudt/symbol> "m" ;
  rdfs:isDefinedBy <http://qudt.org/2.1/vocab/quantitykind> ;
  rdfs:label "Magnetic Area Moment"@en ;
.
JSON
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    ,"description":"\"Magnetic Area Moment\", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. \"Magnetic Area Moment\" is also referred to as \"Magnetic Moment\"." 
    ,"description (plain text)":"\"Magnetic Area Moment\", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. \"Magnetic Area Moment\" is also referred to as \"Magnetic Moment\"." 
    ,"exact match":"quantitykind:MagneticMoment" 
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    ,"isDefinedBy":"&lt;http:\/\/qudt.org\/2.1\/vocab\/quantitykind&gt;" 
    ,"label":"Magnetic Area Moment" 
    ,"latex definition":"\\(m = I e_n A\\), where \\(I\\) is electric current in a small closed loop, \\(e_n\\) is a unit vector perpendicular to the loop, and \\(A\\) is the area of the loop. The magnetic moment of a substance within a domain is the vector sum of the magnetic moments of all entities included in the domain." 
    ,"symbol":"m" 
    ,"type":"qudt:QuantityKind" 
    ]}
JSON-LD
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  "description" : "\"Magnetic Area Moment\", for a magnetic dipole, is a vector quantity equal to the product of the current, the loop area, and the unit vector normal to the loop plane, the direction of which corresponds to the loop orientation. \"Magnetic Area Moment\" is also referred to as \"Magnetic Moment\".",
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