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chameo.ttl
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@prefix : <https://w3id.org/emmo/domain/domain-chameo/chameo#> .
@prefix owl: <http://www.w3.org/2002/07/owl#> .
@prefix rdf: <http://www.w3.org/1999/02/22-rdf-syntax-ns#> .
@prefix xml: <http://www.w3.org/XML/1998/namespace> .
@prefix xsd: <http://www.w3.org/2001/XMLSchema#> .
@prefix bibo: <http://purl.org/ontology/bibo/> .
@prefix emmo: <https://w3id.org/emmo#> .
@prefix foaf: <http://xmlns.com/foaf/0.1/> .
@prefix rdfs: <http://www.w3.org/2000/01/rdf-schema#> .
@prefix skos: <http://www.w3.org/2004/02/skos/core#> .
@prefix vann: <http://purl.org/vocab/vann/> .
@prefix chameo: <https://w3id.org/emmo/domain/domain-chameo/chameo#> .
@prefix dcterms: <http://purl.org/dc/terms/> .
@prefix datacite: <http://purl.org/spar/datacite/> .
@base <https://w3id.org/emmo/domain/domain-chameo/chameo#> .
<https://w3id.org/emmo/domain/domain-chameo/chameo> rdf:type owl:Ontology ;
owl:versionIRI <http://w3id.org/emmo-chameo/1.0.0-beta5/chameo> ;
owl:imports <https://w3id.org/emmo/1.0.0-rc3/mereocausality> ,
<https://w3id.org/emmo/1.0.0-rc3/disciplines/computerscience> ,
<https://w3id.org/emmo/1.0.0-rc3/disciplines/isq> ,
<https://w3id.org/emmo/1.0.0-rc3/disciplines/manufacturing> ,
<https://w3id.org/emmo/1.0.0-rc3/disciplines/math> ,
<https://w3id.org/emmo/1.0.0-rc3/disciplines/metrology> ,
<https://w3id.org/emmo/1.0.0-rc3/disciplines/models> ,
<https://w3id.org/emmo/1.0.0-rc3/reference/persholistic> ,
<https://w3id.org/emmo/1.0.0-rc3/reference/workflow> ,
<https://w3id.org/emmo/1.0.0-rc3/reference/data> ,
<https://w3id.org/emmo/1.0.0-rc3/perspectives/holistic> ,
<https://w3id.org/emmo/1.0.0-rc3/perspectives/persistence> ;
dcterms:abstract "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en ;
dcterms:alternative "CHAMEO" ;
dcterms:bibliographicCitation "Del Nostro, P., Goldbeck, G., Toti, D., 2022. CHAMEO: An ontology for the harmonisation of materials characterisation methodologies. Applied Ontology 17, 401–421. doi:10.3233/AO-220271." ;
dcterms:contributor <https://orcid.org/0000-0002-4181-2852> ,
<https://orcid.org/0000-0002-5174-8508> ,
<https://orcid.org/0000-0002-9668-6961> ;
dcterms:created "2021-12-20" ;
dcterms:creator <https://orcid.org/0000-0002-4181-2852> ,
<https://orcid.org/0000-0002-5174-8508> ,
<https://orcid.org/0000-0002-9668-6961> ;
dcterms:description "Characterisation Methodology Ontology"@en ;
dcterms:hasFormat <https://www.w3.org/TR/turtle/> ;
dcterms:identifier "https://w3id.org/emmo/domain/domain-chameo/chameo" ;
dcterms:issued "2024-04-12" ;
dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ;
dcterms:modified "2024-04-12" ;
dcterms:publisher "EMMC ASBL" ;
dcterms:source "" ;
dcterms:title "CHAracterisation MEthodology Ontology"@en ;
bibo:doi "" ;
bibo:status "" ;
vann:preferredNamespacePrefix "chameo"@en ;
vann:preferredNamespaceUri "https://w3id.org/emmo/domain/domain-chameo/chameo" ;
rdfs:comment """Contacts:
Gerhard Goldbeck
Goldbeck Consulting Ltd (UK)
email: [email protected]"""@en ;
owl:backwardCompatibleWith "" ;
owl:priorVersion "1.0.0-beta2" ;
owl:versionInfo "1.0.0-beta3" ;
skos:hiddenLabel "CHAMEO" ;
foaf:homepage <https://github.com/emmo-repo/domain-chameo> ;
foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-chameo/main/images/chameo_logo_small.png" ;
foaf:page <https://github.com/emmo-repo/domain-chameo> .
#################################################################
# Annotation properties
#################################################################
### http://purl.org/dc/terms/alternative
dcterms:alternative rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/bibliographicCitation
dcterms:bibliographicCitation rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/created
dcterms:created rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/description
dcterms:description rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/hasFormat
dcterms:hasFormat rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/identifier
dcterms:identifier rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/issued
dcterms:issued rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/modified
dcterms:modified rdf:type owl:AnnotationProperty .
### http://purl.org/dc/terms/source
dcterms:source rdf:type owl:AnnotationProperty .
### http://purl.org/ontology/bibo/doi
bibo:doi rdf:type owl:AnnotationProperty .
### http://purl.org/ontology/bibo/status
bibo:status rdf:type owl:AnnotationProperty .
### http://purl.org/vocab/vann/preferredNamespacePrefix
vann:preferredNamespacePrefix rdf:type owl:AnnotationProperty .
### http://purl.org/vocab/vann/preferredNamespaceUri
vann:preferredNamespaceUri rdf:type owl:AnnotationProperty .
### http://xmlns.com/foaf/0.1/homepage
foaf:homepage rdf:type owl:AnnotationProperty .
### http://xmlns.com/foaf/0.1/logo
foaf:logo rdf:type owl:AnnotationProperty .
### http://xmlns.com/foaf/0.1/name
foaf:name rdf:type owl:AnnotationProperty .
### http://xmlns.com/foaf/0.1/page
foaf:page rdf:type owl:AnnotationProperty .
#################################################################
# Object Properties
#################################################################
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasAccessConditions
chameo:hasAccessConditions rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationTechnique ;
rdfs:range chameo:AccessConditions ;
rdfs:comment "" ;
rdfs:label "hasAccessConditions"@en ;
skos:prefLabel "hasAccessConditions"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasBeginCharacterisationTask
chameo:hasBeginCharacterisationTask rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_4ab7fb52_cec3_4c00_90c0_5648f01e3296 ;
rdfs:domain chameo:CharacterisationWorkflow ;
rdfs:range chameo:CharacterisationTask .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationComponent
chameo:hasCharacterisationComponent rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_3c7f239f_e833_4a2b_98a1_c88831770c1b .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationEnvironment
chameo:hasCharacterisationEnvironment rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationProcedure ;
rdfs:range chameo:CharacterisationEnvironment ;
rdfs:comment "" ;
rdfs:label "hasCharacterisationEnvironment"@en ;
skos:prefLabel "hasCharacterisationEnvironment"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationEnvironmentProperty
chameo:hasCharacterisationEnvironmentProperty rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationEnvironment ;
rdfs:range chameo:CharacterisationEnvironmentProperty ;
rdfs:comment "" ;
rdfs:label "hasCharacterisationEnvironmentProperty"@en ;
skos:prefLabel "hasCharacterisationEnvironmentProperty"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationInput
chameo:hasCharacterisationInput rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationMeasurementInstrument
chameo:hasCharacterisationMeasurementInstrument rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:CharacterisationMeasurementProcess ;
rdfs:range chameo:CharacterisationMeasurementInstrument .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationOutput
chameo:hasCharacterisationOutput rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_c4bace1d_4db0_4cd3_87e9_18122bae2840 .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationProcedureValidation
chameo:hasCharacterisationProcedureValidation rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationTechnique ;
rdfs:range chameo:CharacterisationProcedureValidation ;
rdfs:comment "" ;
rdfs:label "hasCharacterisationProcedureValidation"@en ;
skos:prefLabel "hasCharacterisationProcedureValidation"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationProperty
chameo:hasCharacterisationProperty rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_fd689787_31b0_41cf_bf03_0d69af76469d ;
rdfs:domain chameo:Sample ;
rdfs:range chameo:CharacterisationProperty ;
rdfs:comment "" ;
rdfs:label "hasCharacterisationProperty"@en ;
skos:prefLabel "hasCharacterisationProperty"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationSoftware
chameo:hasCharacterisationSoftware rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:range chameo:CharacterisationSoftware ;
rdfs:comment "" ;
rdfs:label "hasCharacterisationSoftware"@en ;
skos:prefLabel "hasCharacterisationSoftware"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasCharacterisationTask
chameo:hasCharacterisationTask rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_70da982d_1810_4b01_9630_a28e216ecd9a ;
rdfs:domain chameo:CharacterisationWorkflow ;
rdfs:range chameo:CharacterisationTask .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasDataAcquisitionRate
chameo:hasDataAcquisitionRate rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:RawData ;
rdfs:range chameo:DataAcquisitionRate ;
rdfs:comment "" ;
rdfs:label "hasDataAcquisitionRate"@en ;
skos:prefLabel "hasDataAcquisitionRate"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasDataProcessingThroughCalibration
chameo:hasDataProcessingThroughCalibration rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationMeasurementProcess ;
rdfs:range chameo:DataProcessingThroughCalibration ;
rdfs:comment "" ;
rdfs:label "hasDataProcessingThroughCalibration"@en ;
skos:prefLabel "hasDataProcessingThroughCalibration"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasDataQuality
chameo:hasDataQuality rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:MeasurementDataPostProcessing ;
rdfs:range chameo:DataQuality ;
rdfs:comment "" ;
rdfs:label "hasDataQuality"@en ;
skos:prefLabel "hasDataQuality"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasDataset
chameo:hasDataset rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_60577dea_9019_4537_ac41_80b0fb563d41 ;
rdfs:range emmo:EMMO_194e367c_9783_4bf5_96d0_9ad597d48d9a ;
rdfs:comment "" ;
rdfs:label "hasDataset"@en ;
skos:prefLabel "hasDataset"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasEndCharacterisationTask
chameo:hasEndCharacterisationTask rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_92227f7f_22e9_4b19_a011_920eac3c7b75 ;
rdfs:domain chameo:CharacterisationWorkflow ;
rdfs:range chameo:CharacterisationTask .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasHardwareSpecification
chameo:hasHardwareSpecification rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationHardware ;
rdfs:range chameo:CharacterisationHardwareSpecification ;
rdfs:comment "" ;
rdfs:label "hasHardwareSpecification"@en ;
skos:prefLabel "hasHardwareSpecification"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasHazard
chameo:hasHazard rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:range chameo:Hazard ;
rdfs:comment "" ;
rdfs:label "hasHazard"@en ;
skos:prefLabel "hasHazard"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasHolder
chameo:hasHolder rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:SamplePreparation ;
rdfs:range chameo:Holder ;
rdfs:comment "" ;
rdfs:label "hasHolder"@en ;
skos:prefLabel "hasHolder"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasInstrumentForCalibration
chameo:hasInstrumentForCalibration rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:CalibrationProcess ;
rdfs:range chameo:CharacterisationMeasurementInstrument .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasInteractionVolume
chameo:hasInteractionVolume rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ;
rdfs:domain chameo:ProbeSampleInteraction ;
rdfs:range chameo:InteractionVolume ;
rdfs:comment "" ;
rdfs:label "hasInteractionVolume"@en ;
skos:prefLabel "hasInteractionVolume"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasInteractionWithProbe
chameo:hasInteractionWithProbe rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ;
rdfs:domain chameo:ProbeSampleInteraction ;
rdfs:range chameo:Probe ;
rdfs:comment "" ;
rdfs:label "hasInteractionWithProbe"@en ;
skos:prefLabel "hasInteractionWithProbe"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasInteractionWithSample
chameo:hasInteractionWithSample rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:ProbeSampleInteraction ;
rdfs:range chameo:Sample ;
rdfs:comment "" ;
rdfs:label "hasInteractionWithSample"@en ;
skos:prefLabel "hasInteractionWithSample"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasLab
chameo:hasLab rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:range chameo:Laboratory ;
rdfs:comment "" ;
rdfs:label "hasLab"@en ;
skos:prefLabel "hasLab"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasLevelOfAutomation
chameo:hasLevelOfAutomation rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationTechnique ;
rdfs:range chameo:LevelOfAutomation ;
rdfs:comment "" ;
rdfs:label "hasLevelOfAutomation"@en ;
skos:prefLabel "hasLevelOfAutomation"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasMeasurementDetector
chameo:hasMeasurementDetector rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:range chameo:Detector ;
rdfs:comment "" ;
rdfs:label "hasMeasurementDetector"@en ;
skos:prefLabel "hasMeasurementDetector"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasMeasurementParameter
chameo:hasMeasurementParameter rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ;
rdfs:domain chameo:CharacterisationMeasurementProcess ;
rdfs:range chameo:MeasurementParameter ;
rdfs:comment "" ;
rdfs:label "hasMeasurementParameter"@en ;
skos:prefLabel "hasMeasurementParameter"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasMeasurementProbe
chameo:hasMeasurementProbe rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:range chameo:Probe ;
rdfs:comment "" ;
rdfs:label "hasMeasurementProbe"@en ;
skos:prefLabel "hasMeasurementProbe"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasMeasurementSample
chameo:hasMeasurementSample rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:CharacterisationMeasurementProcess ;
rdfs:range chameo:Sample ;
rdfs:comment "" ;
rdfs:label "hasMeasurementSample"@en ;
skos:prefLabel "hasMeasurementSample"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasMeasurementTime
chameo:hasMeasurementTime rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:CharacterisationMeasurementProcess ;
rdfs:range chameo:MeasurementTime ;
rdfs:comment "" ;
rdfs:label "hasMeasurementTime"@en ;
skos:prefLabel "hasMeasurementTime"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasOperator
chameo:hasOperator rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_cd24eb82_a11c_4a31_96ea_32f870c5580a ;
rdfs:range chameo:Operator ;
rdfs:comment "" ;
rdfs:label "hasOperator"@en ;
skos:prefLabel "hasOperator"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasPeerReviewedArticle
chameo:hasPeerReviewedArticle rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_eb3518bf_f799_4f9e_8c3e_ce59af11453b ;
rdfs:domain chameo:CharacterisationProcedureValidation ;
rdfs:range datacite:ResourceIdentifier ;
rdfs:comment "" ;
rdfs:label "hasPeerReviewedArticle"@en ;
skos:prefLabel "hasPeerReviewedArticle"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasPhysicsOfInteraction
chameo:hasPhysicsOfInteraction rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_24c71baf_6db6_48b9_86c8_8c70cf36db0c ;
rdfs:domain chameo:ProbeSampleInteraction ;
rdfs:range chameo:PhysicsOfInteraction ;
rdfs:comment "" ;
rdfs:label "hasPhysicsOfInteraction"@en ;
skos:prefLabel "hasPhysicsOfInteraction"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasPostProcessingModel
chameo:hasPostProcessingModel rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:MeasurementDataPostProcessing ;
rdfs:range chameo:PostProcessingModel ;
rdfs:comment "" ;
rdfs:label "hasPostProcessingModel"@en ;
skos:prefLabel "hasPostProcessingModel"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasProcessingReproducibility
chameo:hasProcessingReproducibility rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:domain chameo:MeasurementDataPostProcessing ;
rdfs:range chameo:ProcessingReproducibility ;
rdfs:comment "" ;
rdfs:label "hasProcessingReproducibility"@en ;
skos:prefLabel "hasProcessingReproducibility"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasReferenceSample
chameo:hasReferenceSample rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:CalibrationProcess ;
rdfs:range chameo:ReferenceSample .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasSampleForInspection
chameo:hasSampleForInspection rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:SampleInspection ;
rdfs:range chameo:Sample .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasSampleForPreparation
chameo:hasSampleForPreparation rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:SamplePreparation ;
rdfs:range chameo:Sample ;
rdfs:comment "" ;
rdfs:label "hasSampleForPreparation"@en ;
skos:prefLabel "hasSampleBeforeSamplePreparation"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasSampleInspectionInstrument
chameo:hasSampleInspectionInstrument rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:SampleInspection .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasSampleInspectionParameter
chameo:hasSampleInspectionParameter rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ;
rdfs:domain chameo:SampleInspection ;
rdfs:range chameo:SampleInspectionParameter .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasSamplePreparationInstrument
chameo:hasSamplePreparationInstrument rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
rdfs:domain chameo:SamplePreparation ;
rdfs:range chameo:SamplePreparationInstrument .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasSamplePreparationParameter
chameo:hasSamplePreparationParameter rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ;
rdfs:domain chameo:SamplePreparation ;
rdfs:range chameo:SamplePreparationParameter ;
rdfs:comment "" ;
rdfs:label "hasSamplePreparationParameter"@en ;
skos:prefLabel "hasSamplePreparationParameter"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasSampledSample
chameo:hasSampledSample rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_c4bace1d_4db0_4cd3_87e9_18122bae2840 ;
rdfs:domain chameo:SamplingProcess ;
rdfs:range chameo:Sample ;
rdfs:comment "" ;
rdfs:label "hasSampledSample"@en ;
skos:prefLabel "hasSampledSample"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#requiresLevelOfExpertise
chameo:requiresLevelOfExpertise rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
rdfs:range chameo:LevelOfExpertise ;
rdfs:comment "" ;
rdfs:label "requiresLevelOfExpertise"@en ;
skos:prefLabel "requiresLevelOfExpertise"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#userCaseHasCharacterisationProcedure
chameo:userCaseHasCharacterisationProcedure rdf:type owl:ObjectProperty ;
rdfs:subPropertyOf owl:topObjectProperty ;
rdfs:domain chameo:UserCase ;
rdfs:range chameo:CharacterisationProcedure ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Used to correlate a user case to a characterisation procedure"@en .
#################################################################
# Data properties
#################################################################
### https://w3id.org/emmo/domain/characterisation-methodology/chameo/hasDateOfCalibration
<https://w3id.org/emmo/domain/characterisation-methodology/chameo/hasDateOfCalibration> rdf:type owl:DatatypeProperty ;
rdfs:subPropertyOf owl:topDataProperty ;
rdfs:domain chameo:CharacterisationMeasurementInstrument ;
rdfs:range xsd:dateTime ;
rdfs:comment "" ;
rdfs:label "hasDateOfCalibration"@en ;
skos:prefLabel "hasDateOfCalibration"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasManufacturer
chameo:hasManufacturer rdf:type owl:DatatypeProperty ;
rdfs:subPropertyOf owl:topDataProperty ;
rdfs:domain chameo:CharacterisationHardware ;
rdfs:range xsd:string ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "A string representing the Manufacturer of a CharacterisationHardware" .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasModel
chameo:hasModel rdf:type owl:DatatypeProperty ;
rdfs:subPropertyOf owl:topDataProperty ;
rdfs:domain chameo:CharacterisationHardware ;
rdfs:range xsd:string ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "A string representing the model of a CharacterisationHardware"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#hasUniqueID
chameo:hasUniqueID rdf:type owl:DatatypeProperty ;
rdfs:subPropertyOf owl:topDataProperty ;
rdfs:domain chameo:CharacterisationHardware ;
rdfs:range xsd:string ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "A string representing the UniqueID of a CharacterisationHardware" .
#################################################################
# Classes
#################################################################
### http://purl.org/spar/datacite/ResourceIdentifier
datacite:ResourceIdentifier rdf:type owl:Class ;
rdfs:comment "" ;
rdfs:label "ResourceIdentifier"@en ;
skos:prefLabel "ResourceIdentifier"@en .
### http://xmlns.com/foaf/0.1/Person
foaf:Person rdf:type owl:Class ;
skos:prefLabel "Person" .
### https://w3id.org/emmo#EMMO_e94a9156_fb6c_4e16_88ee_829ac9933155
emmo:EMMO_e94a9156_fb6c_4e16_88ee_829ac9933155 owl:disjointWith chameo:Rationale .
### https://w3id.org/emmo/domain/domain-chameo/chameo#ACVoltammetry
chameo:ACVoltammetry rdf:type owl:Class ;
rdfs:subClassOf chameo:Voltammetry ;
rdfs:comment "The resulting alternating current is plotted versus imposed DC potential. The obtained AC voltammogram is peak-shaped."@en ,
"" ;
rdfs:label "ACVoltammetry"@en ;
skos:altLabel "ACV"@en ;
skos:prefLabel "ACVoltammetry"@en ;
emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120895154" ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "voltammetry in which a sinusoidal alternating potential of small amplitude (10 to 50 mV) of constant frequency (10 Hz to 100 kHz) is superimposed on a slowly and linearly varying potential ramp"@en ;
emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AbrasiveStrippingVoltammetry
chameo:AbrasiveStrippingVoltammetry rdf:type owl:Class ;
rdfs:subClassOf chameo:Voltammetry ;
rdfs:comment "electrochemical method where traces of solid particles are abrasively transferred onto the surface of an electrode, followed by an electrochemical dissolution (anodic or cathodic dissolution) that is recorded as a current–voltage curve"@en ,
"" ;
rdfs:label "AbrasiveStrippingVoltammetry"@en ;
skos:prefLabel "AbrasiveStrippingVoltammetry"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electrochemical method where traces of solid particles are abrasively transferred onto the surface of an electrode, followed by an electrochemical dissolution (anodic or cathodic dissolution) that is recorded as a current–voltage curve"@en .
[ rdf:type owl:Axiom ;
owl:annotatedSource chameo:AbrasiveStrippingVoltammetry ;
owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ;
owl:annotatedTarget "electrochemical method where traces of solid particles are abrasively transferred onto the surface of an electrode, followed by an electrochemical dissolution (anodic or cathodic dissolution) that is recorded as a current–voltage curve"@en ;
dcterms:source "Scholz F, Nitschke L, Henrion G (1989) Naturwiss 76:71;"
] .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AccessConditions
chameo:AccessConditions rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ;
rdfs:comment "" ;
rdfs:label "AccessConditions"@en ;
skos:prefLabel "AccessConditions"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Describes what is needed to repeat the experiment"@en ;
emmo:EMMO_b432d2d5_25f4_4165_99c5_5935a7763c1a "In case of national or international facilities such as synchrotrons describe the programme that enabled you to access these."@en ,
"Was the access to your characterisation tool an inhouse routine or required a 3rd party service?"@en ,
"Was the access to your sample preparation an inhouse routine or required a 3rd party service?"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AdsorptiveStrippingVoltammetry
chameo:AdsorptiveStrippingVoltammetry rdf:type owl:Class ;
rdfs:subClassOf chameo:StrippingVoltammetry ;
rdfs:comment "A peak-shaped adsorptive stripping voltammogram is obtained. Peak current depends on time of accumulation, mass transport of analyte (stirring), scan rate and mode (linear or pulse), and analyte concentration in solution."@en ,
"AdSV is usually employed for analysis of organic compounds or metal complexes with organic ligands. Stripping is done by means of an anodic or a cathodic voltammetric scan (linear or pulse), during which the adsorbed compound is oxidized or reduced."@en ,
"" ;
rdfs:label "AdsorptiveStrippingVoltammetry"@en ;
skos:altLabel "AdSV"@en ;
skos:prefLabel "AdsorptiveStrippingVoltammetry"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Stripping voltammetry involving pre-concentration by adsorption of the analyte (in contrast to electro- chemical accumulation)."@en ;
emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AlphaSpectrometry
chameo:AlphaSpectrometry rdf:type owl:Class ;
rdfs:subClassOf chameo:Spectrometry ;
rdfs:comment "" ;
rdfs:label "AlphaSpectrometry"@en ;
skos:prefLabel "AlphaSpectrometry"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Alpha spectrometry (also known as alpha(-particle) spectroscopy) is the quantitative study of the energy of alpha particles emitted by a radioactive nuclide that is an alpha emitter. As emitted alpha particles are mono-energetic (i.e. not emitted with a spectrum of energies, such as beta decay) with energies often distinct to the decay they can be used to identify which radionuclide they originated from."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#Amperometry
chameo:Amperometry rdf:type owl:Class ;
rdfs:subClassOf chameo:ElectrochemicalTesting ;
rdfs:comment "Amperometry can be distinguished from voltammetry by the parameter being controlled (electrode potential E) and the parameter being measured (electrode current I which is usually a function of time – see chronoamperometry)."@en ,
"In a non-stirred solution, a diffusion-limited current is usually measured, which is propor-tional to the concentration of an electroactive analyte."@en ,
"The current is usually faradaic and the applied potential is usually constant."@en ,
"The integral of current with time is the electric charge, which may be related to the amount of substance reacted by Faraday’s laws of electrolysis."@en ,
"" ;
rdfs:label "Amperometry"@en ;
skos:prefLabel "Amperometry"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "The amperometric method provides the ability to distinguish selectively between a number of electroactive species in solution by judicious selection of the applied potential and/or choice of electrode material."@en ;
emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AnalyticalElectronMicroscopy
chameo:AnalyticalElectronMicroscopy rdf:type owl:Class ;
rdfs:subClassOf chameo:Microscopy ;
rdfs:comment "" ;
rdfs:label "AnalyticalElectronMicroscopy"@en ;
skos:prefLabel "AnalyticalElectronMicroscopy"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Analytical electron microscopy (AEM) refers to the collection of spectroscopic data in TEM or STEM, enabling qualitative or quantitative compositional analysis."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AnodicStrippingVoltammetry
chameo:AnodicStrippingVoltammetry rdf:type owl:Class ;
rdfs:subClassOf chameo:StrippingVoltammetry ;
rdfs:comment "A peak-shaped anodic stripping voltammogram is obtained. Peak current depends on time of accumulation, mass transport of analyte (stirring), scan rate and mode (linear or pulse), and analyte concentration in solution."@en ,
"A solid electrode, carbon paste or composite electrode, bismuth film electrode, mercury film electrode, or static mercury drop electrode may be used."@en ,
"" ;
rdfs:label "AnodicStrippingVoltammetry"@en ;
skos:prefLabel "AnodicStrippingVoltammetry"@en ;
emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q939328" ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Stripping voltammetry in which material accumulated at the working electrode is electrochemically oxi- dized in the stripping step."@en ;
emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AtomProbeTomography
chameo:AtomProbeTomography rdf:type owl:Class ;
rdfs:subClassOf chameo:Tomography ;
rdfs:comment "" ;
rdfs:label "AtomProbeTomography"@en ;
skos:altLabel "3D Atom Probe" ,
"APT" ;
skos:prefLabel "AtomProbeTomography"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 """Atom Probe Tomography (APT or 3D Atom Probe) is the only material analysis technique offering extensive capabilities for both 3D imaging and chemical composition measurements at the atomic scale (around 0.1-0.3nm resolution in depth and 0.3-0.5nm laterally). Since its early developments, Atom Probe Tomography has contributed to major advances in materials science.
The sample is prepared in the form of a very sharp tip. The cooled tip is biased at high DC voltage (3-15 kV). The very small radius of the tip and the High Voltage induce a very high electrostatic field (tens V/nm) at the tip surface, just below the point of atom evaporation. Under laser or HV pulsing, one or more atoms are evaporated from the surface, by field effect (near 100% ionization), and projected onto a Position Sensitive Detector (PSD) with a very high detection efficiency. Ion efficiencies are as high as 80%, the highest analytical efficiency of any 3D microscopy."""@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#AtomicForceMicroscopy
chameo:AtomicForceMicroscopy rdf:type owl:Class ;
rdfs:subClassOf chameo:Microscopy ;
rdfs:comment "" ;
rdfs:label "AtomicForceMicroscopy"@en ;
skos:prefLabel "AtomicForceMicroscopy"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Atomic force microscopy (AFM) is an influential surface analysis technique used for micro/nanostructured coatings. This flexible technique can be used to obtain high-resolution nanoscale images and study local sites in air (conventional AFM) or liquid (electrochemical AFM) surroundings."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#BrunauerEmmettTellerMethod
chameo:BrunauerEmmettTellerMethod rdf:type owl:Class ;
rdfs:subClassOf chameo:GasAdsorptionPorosimetry ;
rdfs:label "BrunauerEmmettTellerMethod"@en ;
skos:altLabel "BET"@en ;
skos:prefLabel "BrunauerEmmettTellerMethod"@en ;
emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q795838" ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a technique used to measure the specific surface area of porous materials by analyzing the adsorption of gas molecules onto the material's surface"@en ;
emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/BET_theory" .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CalibrationData
chameo:CalibrationData rdf:type owl:Class ;
rdfs:subClassOf chameo:CharacterisationData ;
rdfs:comment "" ;
rdfs:label "CalibrationData"@en ;
skos:prefLabel "CalibrationData"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Calibration data are used to provide correction of measured data or perform uncertainty calculations. They are generally the result of a measuerement on a reference specimen."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CalibrationDataPostProcessing
chameo:CalibrationDataPostProcessing rdf:type owl:Class ;
rdfs:subClassOf chameo:DataPostProcessing ;
rdfs:comment "" ;
rdfs:label "CalibrationDataPostProcessing"@en ;
skos:prefLabel "CalibrationDataPostProcessing"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Post-processing of the output of the calibration in order to get the actual calibration data to be used as input for the measurement."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CalibrationProcess
chameo:CalibrationProcess rdf:type owl:Class ;
rdfs:subClassOf chameo:CharacterisationProcedure ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_c4bace1d_4db0_4cd3_87e9_18122bae2840 ;
owl:someValuesFrom chameo:CalibrationData
] ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ;
owl:onClass chameo:CharacterisationMeasurementInstrument
] ;
rdfs:comment "" ;
rdfs:label "CalibrationProcess"@en ;
skos:prefLabel "CalibrationProcess"@en ;
emmo:EMMO_70fe84ff_99b6_4206_a9fc_9a8931836d84 """Operation performed on a measuring instrument or a measuring system that, under specified conditions
1. establishes a relation between the values with measurement uncertainties provided by measurement standards and corresponding indications with associated measurement uncertainties and
2. uses this information to establish a relation for obtaining a measurement result from an indication
NOTE 1 The objective of calibration is to provide traceability of measurement results obtained when using a calibrated measuring instrument or measuring system.
NOTE 2 The outcome of a calibration may be expressed by a statement, calibration function, calibration diagram, calibration curve, or calibration table. In some cases, it may consist of an additive or multiplicative correction of the indication with associated measurement uncertainty.
NOTE 3 Calibration should not be confused with adjustment of a measuring system, often mistakenly called “selfcalibration”, nor with verification of calibration. Calibration is sometimes a prerequisite for verification, which provides confirmation that specified requirements (often maximum permissible errors) are met. Calibration is sometimes also a prerequisite for adjustment, which is the set of operations carried out on a measuring system such that the system provides prescribed indications corresponding to given values of quantities being measured, typically obtained from
measurement standards.
NOTE 4 Sometimes the first step alone of the operation mentioned in the definition is intended as being calibration, as it was in previous editions of this Vocabulary. The second step is in fact required to establish instrumental uncertainty
for the measurement results obtained when using the calibrated measuring system. The two steps together aim to demonstrate the metrological traceability of measurement results obtained by a calibrated measuring system. In the
past the second step was usually considered to occur after the calibration.
NOTE 5 A comparison between two measurement standards may be viewed as a calibration if the comparison is used to check and, if necessary, correct the value and measurement uncertainty attributed to one of the measurement
standards.
-- International Vocabulary of Metrology(VIM)"""@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Sequence of operations/actions that are needed to convert the initial signal (as produced by the detector) into a meaningful and useable raw data."@en ;
emmo:EMMO_b432d2d5_25f4_4165_99c5_5935a7763c1a "In nanoindentation, the electrical signal coming from capacitive displacement gauge is converted into a real raw-displacement signal after using a proper calibration function (as obtained by the equipment manufacturer). Then, additional calibration procedures are applied to define the point of initial contact and to correct for instrument compliance, thermal drift, and indenter area function to obtain the real useable displacement data."@en ;
emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "Usually the calibration process involve a reference sample (with pre-defined, specific, and stable physical characteristics and known properties), in order to extract calibration data. In this way, the accuracy of the measurement tool and its components (for example the probe) will be evaluated and confirmed."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CalibrationTask
chameo:CalibrationTask rdf:type owl:Class ;
rdfs:subClassOf chameo:CharacterisationTask ,
[ rdf:type owl:Restriction ;
owl:onProperty [ owl:inverseOf emmo:EMMO_70da982d_1810_4b01_9630_a28e216ecd9a
] ;
owl:someValuesFrom chameo:CalibrationProcess
] ;
rdfs:comment "" ;
rdfs:label "CalibrationTask" ;
skos:prefLabel "CalibrationTask" ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Used to break-down a CalibrationProcess into his specific tasks."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#Calorimetry
chameo:Calorimetry rdf:type owl:Class ;
rdfs:subClassOf chameo:ThermochemicalTesting ;
rdfs:comment "" ;
rdfs:label "Calorimetry"@en ;
skos:prefLabel "Calorimetry"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "In chemistry and thermodynamics, calorimetry (from Latin calor 'heat', and Greek μέτρον (metron) 'measure') is the science or act of measuring changes in state variables of a body for the purpose of deriving the heat transfer associated with changes of its state due, for example, to chemical reactions, physical changes, or phase transitions under specified constraints. Calorimetry is performed with a calorimeter."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CathodicStrippingVoltammetry
chameo:CathodicStrippingVoltammetry rdf:type owl:Class ;
rdfs:subClassOf chameo:StrippingVoltammetry ;
rdfs:comment "A peak-shaped cathodic stripping voltammogram is obtained. Peak current depends on time of accumulation, mass transport of analyte (stirring), scan rate and mode (linear or pulse), and analyte concentration in solution."@en ,
"" ;
rdfs:label "CathodicStrippingVoltammetry"@en ;
skos:altLabel "CSV"@en ;
skos:prefLabel "CathodicStrippingVoltammetry"@en ;
emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q4016325" ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "stripping voltammetry in which material accumulated at the working electrode is electrochemically reduced in the stripping step"@en ;
emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1515/pac-2018-0109"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationComponent
chameo:CharacterisationComponent rdf:type owl:Class ;
skos:prefLabel "CharacterisationComponent" .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationData
chameo:CharacterisationData rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_3e7add3d_e6ed_489a_a796_8e31fef9b490 ;
rdfs:comment "" ;
rdfs:label "CharacterisationData" ;
skos:prefLabel "CharacterisationData" ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Represents every type of data that is produced during a characterisation process"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationDataValidation
chameo:CharacterisationDataValidation rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_1c7f2dfe_0db4_4bf6_a0f6_853054a34ead ;
rdfs:comment "" ;
rdfs:label "CharacterisationDataValidation"@en ;
skos:prefLabel "CharacterisationDataValidation"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Procedures to validate the characterisation data."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationEnvironment
chameo:CharacterisationEnvironment rdf:type owl:Class ;
rdfs:subClassOf [ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_e1097637_70d2_4895_973f_2396f04fa204 ;
owl:someValuesFrom chameo:CharacterisationEnvironmentProperty
] ;
rdfs:comment "" ;
rdfs:label "CharacterisationEnvironment"@en ;
skos:prefLabel "CharacterisationEnvironment"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Medium of the characterisation experiment defined by the set of environmental conditions that are controlled and measured over time during the experiment."@en ;
emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "Characterisation can either be made in air (ambient conditions, without specific controls on environmental parameters), or at different temperatures, different pressures (or in vacuum), or using different types of working gases (inert or reactive with respect to sample), different levels of humidity, etc."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationEnvironmentProperty
chameo:CharacterisationEnvironmentProperty rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_b7bcff25_ffc3_474e_9ab5_01b1664bd4ba ;
rdfs:comment "" ;
rdfs:label "CharacterisationEnvironmentProperty" ;
skos:prefLabel "CharacterisationEnvironmentProperty" .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationExperiment
chameo:CharacterisationExperiment rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_22522299_4091_4d1f_82a2_3890492df6db ;
rdfs:comment "" ;
rdfs:label "CharacterisationExperiment"@en ;
skos:prefLabel "CharacterisationExperiment"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "A characterisation experiment is the process by which a material's structure and properties are probed and measured. It is a fundamental process in the field of materials science, without which no scientific understanding of engineering materials could be ascertained."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationHardware
chameo:CharacterisationHardware rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_494b372c_cfdf_47d3_a4de_5e037c540de8 ;
rdfs:comment "" ;
rdfs:label "CharacterisationHardware"@en ;
skos:prefLabel "CharacterisationHardware"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Whatever hardware is used during the characterisation process."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationHardwareManufacturer
chameo:CharacterisationHardwareManufacturer rdf:type owl:Class ;
rdfs:subClassOf chameo:CharacterisationHardwareSpecification ;
owl:disjointWith chameo:CharacterisationHardwareModel ;
rdfs:comment "" ;
rdfs:label "HardwareManufacturer"@en ;
skos:prefLabel "HardwareManufacturer"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationHardwareModel
chameo:CharacterisationHardwareModel rdf:type owl:Class ;
rdfs:subClassOf chameo:CharacterisationHardwareSpecification ;
rdfs:comment "" ;
rdfs:label "HardwareModel"@en ;
skos:prefLabel "HardwareModel"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationHardwareSpecification
chameo:CharacterisationHardwareSpecification rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_b7bcff25_ffc3_474e_9ab5_01b1664bd4ba ;
rdfs:comment "" ;
rdfs:label "CharacterisationHardwareSpecification"@en ;
skos:prefLabel "CharacterisationHardwareSpecification"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationMeasurementInstrument
chameo:CharacterisationMeasurementInstrument rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_f2d5d3ad_2e00_417f_8849_686f3988d929 ,
chameo:CharacterisationHardware ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_8e52c42b_e879_4473_9fa1_4b23428b392b ;
owl:someValuesFrom chameo:Detector
] ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_8e52c42b_e879_4473_9fa1_4b23428b392b ;
owl:someValuesFrom chameo:Probe
] ;
rdfs:comment "" ;
rdfs:label "CharacterisationMeasurementInstrument" ;
skos:prefLabel "CharacterisationMeasurementInstrument" ;
emmo:EMMO_70fe84ff_99b6_4206_a9fc_9a8931836d84 """Device used for making measurements, alone or in conjunction with one or more supplementary
devices
NOTE 1 A measuring instrument that can be used alone for making measurements is a measuring system.
NOTE 2 A measuring instrument is either an indicating measuring instrument or a material measure."""@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "The instrument used for characterising a material, which usually has a probe and a detector as parts."@en ;
emmo:EMMO_b432d2d5_25f4_4165_99c5_5935a7763c1a "In nanoindentation is the nanoindenter" ;
emmo:EMMO_bb49844b_45d7_4f0d_8cae_8e552cbc20d6 "Measuring instrument"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationMeasurementProcess
chameo:CharacterisationMeasurementProcess rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_463bcfda_867b_41d9_a967_211d4d437cfb ,
chameo:CharacterisationProcedure ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
owl:someValuesFrom chameo:CharacterisationEnvironment
] ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
owl:someValuesFrom chameo:CharacterisationMeasurementInstrument
] ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_35c29eb6_f57e_48d8_85af_854f9e926e77 ;
owl:someValuesFrom chameo:Sample
] ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_36e69413_8c59_4799_946c_10b05d266e22 ;
owl:someValuesFrom chameo:MeasurementParameter
] ,
[ rdf:type owl:Restriction ;
owl:onProperty emmo:EMMO_c4bace1d_4db0_4cd3_87e9_18122bae2840 ;
owl:someValuesFrom chameo:CharacterisationData
] ;
rdfs:comment "" ;
rdfs:label "CharacterisationMeasurementProcess"@en ;
skos:prefLabel "CharacterisationMeasurementProcess"@en ;
emmo:EMMO_70fe84ff_99b6_4206_a9fc_9a8931836d84 """Process of experimentally obtaining one or more values that can reasonably be attributed to a quantity together with any other available relevant information
NOTE 1 The quantity mentioned in the definition is an individual quantity.
NOTE 2 The relevant information mentioned in the definition may be about the values obtained by the measurement,
such that some may be more representative of the measurand than others.
NOTE 3 Measurement is sometimes considered to apply to nominal properties, but not in this Vocabulary, where the
process of obtaining values of nominal properties is called “examination”.
NOTE 4 Measurement requires both experimental comparison of quantities or experimental counting of entities at
some step of the process and the use of models and calculations that are based on conceptual considerations.
NOTE 5 The conditions of reasonable attribution mentioned in the definition take into account a description of the
quantity commensurate with the intended use of a measurement result, a measurement procedure, and a calibrated
measuring system operating according to the specified measurement procedure, including the measurement
conditions. Moreover, a maximum permissible error and/or a target uncertainty may be specified, and the
measurement procedure and the measuring system should then be chosen in order not to exceed these measuring
system specifications.
-- International Vocabulary of Metrology(VIM)"""@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "The measurement process associates raw data to the sample through a probe and a detector."@en ;
emmo:EMMO_bb49844b_45d7_4f0d_8cae_8e552cbc20d6 "Measurement"@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationMeasurementTask
chameo:CharacterisationMeasurementTask rdf:type owl:Class ;
rdfs:subClassOf chameo:CharacterisationTask ,
[ rdf:type owl:Restriction ;
owl:onProperty [ owl:inverseOf emmo:EMMO_70da982d_1810_4b01_9630_a28e216ecd9a
] ;
owl:someValuesFrom chameo:CharacterisationMeasurementProcess
] ;
rdfs:comment "" ;
rdfs:label "CharacterisationMeasurementTask"@en ;
skos:prefLabel "CharacterisationMeasurementTask"@en ;
emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Used to break-down a CharacterisationMeasurementProcess into his specific tasks."@en .
### https://w3id.org/emmo/domain/domain-chameo/chameo#CharacterisationProcedure
chameo:CharacterisationProcedure rdf:type owl:Class ;
rdfs:subClassOf emmo:EMMO_472a0ca2_58bf_4618_b561_6fe68bd9fd49 ;
rdfs:comment "" ;