
<ns0:uwmetadata xmlns:ns0="http://phaidra.univie.ac.at/XML/metadata/V1.0" xmlns:ns1="http://phaidra.univie.ac.at/XML/metadata/lom/V1.0" xmlns:ns10="http://phaidra.univie.ac.at/XML/metadata/provenience/V1.0" xmlns:ns11="http://phaidra.univie.ac.at/XML/metadata/provenience/V1.0/entity" xmlns:ns12="http://phaidra.univie.ac.at/XML/metadata/digitalbook/V1.0" xmlns:ns13="http://phaidra.univie.ac.at/XML/metadata/etheses/V1.0" xmlns:ns2="http://phaidra.univie.ac.at/XML/metadata/extended/V1.0" xmlns:ns3="http://phaidra.univie.ac.at/XML/metadata/lom/V1.0/entity" xmlns:ns4="http://phaidra.univie.ac.at/XML/metadata/lom/V1.0/requirement" xmlns:ns5="http://phaidra.univie.ac.at/XML/metadata/lom/V1.0/educational" xmlns:ns6="http://phaidra.univie.ac.at/XML/metadata/lom/V1.0/annotation" xmlns:ns7="http://phaidra.univie.ac.at/XML/metadata/lom/V1.0/classification" xmlns:ns8="http://phaidra.univie.ac.at/XML/metadata/lom/V1.0/organization" xmlns:ns9="http://phaidra.univie.ac.at/XML/metadata/histkult/V1.0">
  <ns1:general>
    <ns1:identifier>o:29017</ns1:identifier>
    <ns1:title language="en">Monte Carlo calculation of the organ equivalent dose and effective dose due to immersion in a 16N beta source in air using the ICRP reference phantoms</ns1:title>
    <ns1:language>en</ns1:language>
    <ns1:description language="en">Abstract:
This work summarises the results of a comparison organized by EURADOS focused on the usage of the ICRP Reference Computational Phantoms. This activity aimed to provide training for the implementation of voxel phantoms in Monte Carlo radiation transport codes and the calculation of the dose equivalent in organs and the effective dose. This particular case describes a scenario of immersion in a16N beta source distributed in the air of a room with concrete walls where the phantom is located. Seven participants took part in the comparison of results using GEANT4, TRIPOLI-4 and MCNP family codes, and there was detected a general problem when calculating the dose to skeletal tissue and the remainder tissue. After a process of feedback with the participants the errors were corrected and the final results reached an agreement of ±5%.</ns1:description>
    <ns1:keyword language="en">Keywords: ICRP reference Phantom; Monte Carlo; Voxel phantom</ns1:keyword>
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      <ns2:identifier>10.1016/j.radmeas.2021.106612</ns2:identifier>
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      <ns2:identifier>1350-4487</ns2:identifier>
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    <ns1:upload_date>2023-05-04T08:54:21.711Z</ns1:upload_date>
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    <ns2:peer_reviewed>no</ns2:peer_reviewed>
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        <ns3:firstname>Montserrat</ns3:firstname>
        <ns3:lastname>Gómez-Ros, José M. Moraleda</ns3:lastname>
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        <ns3:firstname>Han Sung</ns3:firstname>
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        <ns3:firstname> Michał</ns3:firstname>
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        <ns3:firstname>Ngoc-Thiem</ns3:firstname>
        <ns3:lastname>Le</ns3:lastname>
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        <ns3:firstname>Yi-Kang</ns3:firstname>
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        <ns3:firstname>Dragoslav</ns3:firstname>
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        <ns3:institution>Državni univerzitet u Novom Pazaru</ns3:institution>
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  <ns12:digitalbook>
    <ns12:name_magazine language="en">Radiation Measurements</ns12:name_magazine>
    <ns12:volume>145</ns12:volume>
    <ns12:booklet>106612</ns12:booklet>
    <ns12:releaseyear>2021</ns12:releaseyear>
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