To the matter in a given domain, , where is the radiant energy of all those charged and uncharged ionizing particles that enter the domain, is the radiant energy of all those charged and uncharged ionizing particles that leave the domain, and 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"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/MegaVAR-HR"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/FT-LB_F"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/QUAD"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/E_h"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloBTU_TH"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/BTU_TH"/>
<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/W-SEC"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/THERM_EC"/>
<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/MegaJ"/>
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<j.0:informativeReference rdf:datatype="http://www.w3.org/2001/XMLSchema#anyURI">http://www.answers.com/topic/energy-imparted</j.0:informativeReference>
<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>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/ERG"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloCAL"/>
<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"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/EV"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloJ"/>
<rdfs:label xml:lang="en">Mean Energy Imparted</rdfs:label>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/BTU_IT"/>
<j.0:hasDimensionVector rdf:resource="http://qudt.org/vocab/dimensionvector/A0E0L2I0M1H0T-2D0"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/J"/>
<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"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/FemtoJ"/>
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<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/KiloVA-HR"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/VA-HR"/>
<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>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/THERM_US"/>
<j.0:applicableUnit rdf:resource="http://qudt.org/vocab/unit/CAL_TH"/>
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