To the matter in a given domain, $\bar{\varepsilon} = R_{in} - R_{out} + \sum Q$, where $R_{in}$ is the radiant energy of all those charged and uncharged ionizing particles that enter the domain, $R_{out}$ is the radiant energy of all those charged and uncharged ionizing particles that leave the domain, and $\sum Q$ is the sum of all changes of the rest energy of nuclei and elementary particles that occur in that domain.
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<rdf:Description rdf:about="http://qudt.org/vocab/quantitykind/MeanEnergyImparted">
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/TonEnergy"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/PlanckEnergy"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/E_h"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloBTU_TH"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloV-A-HR"/>
<rdfs:comment>Applicable units are those of quantitykind:Energy</rdfs:comment>
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<j.0:symbol>ε̅</j.0:symbol>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/MegaTOE"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/THM_EEC"/>
<j.0:latexDefinition rdf:datatype="http://qudt.org/schema/qudt/LatexString">To the matter in a given domain, $\bar{\varepsilon} = R_{in} - R_{out} + \sum Q$, where $R_{in}$ is the radiant energy of all those charged and uncharged ionizing particles that enter the domain, $R_{out}$ is the radiant energy of all those charged and uncharged ionizing particles that leave the domain, and $\sum Q$ is the sum of all changes of the rest energy of nuclei and elementary particles that occur in that domain.</j.0:latexDefinition>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/MegaV-A_Reactive-HR"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/MegaW-HR"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloW-HR"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloBTU_IT"/>
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<rdfs:label xml:lang="en">Mean Energy Imparted</rdfs:label>
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<j.0:hasDimensionVector rdf:resource="http://qudt.org/vocab/dimensionvector/A0E0L2I0M1H0T-2D0"/>
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<j.0:plainTextDescription>The "Mean Energy Imparted", is the average energy imparted to irradiated matter.</j.0:plainTextDescription>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/TeraW-HR"/>
<j.0:normativeReference rdf:datatype="http://www.w3.org/2001/XMLSchema#anyURI">http://www.iso.org/iso/catalogue_detail?csnumber=31895</j.0:normativeReference>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/FT-PDL"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/FemtoJ"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/THM_US"/>
<j.1:description rdf:datatype="http://qudt.org/schema/qudt/LatexString">The "Mean Energy Imparted", is the average energy imparted to irradiated matter.</j.1:description>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/CAL_TH"/>
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