<codeBook xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xsi:schemaLocation="ddi:codebook:2_5 http://www.ddialliance.org/Specification/DDI-Codebook/2.5/XMLSchema/codebook.xsd" xmlns="ddi:codebook:2_5">
  <docDscr>
    <citation>
      <titlStmt>
        <titl xml:lang="sv">Data till: Transport of magma in granitic mush systems; An example from the Götemar pluton, Sweden</titl>
        <parTitl xml:lang="en">Data from: Transport of magma in granitic mush systems; An example from the Götemar pluton, Sweden</parTitl>
        <IDNo agency="SND">2023-206-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.58141/3w7y-3n17</IDNo>
      </titlStmt>
      <prodStmt>
        <producer xml:lang="en" abbr="SND">Swedish National Data Service</producer>
        <producer xml:lang="sv" abbr="SND">Svensk nationell datatjänst</producer>
      </prodStmt>
      <holdings URI="https://doi.org/10.58141/3w7y-3n17">Landing page</holdings>
    </citation>
  </docDscr>
  <stdyDscr>
    <citation>
      <titlStmt>
        <titl xml:lang="sv">Data till: Transport of magma in granitic mush systems; An example from the Götemar pluton, Sweden</titl>
        <parTitl xml:lang="en">Data from: Transport of magma in granitic mush systems; An example from the Götemar pluton, Sweden</parTitl>
        <IDNo agency="SND">2023-206-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.58141/3w7y-3n17</IDNo>
        <IDNo agency="DOI">10.1029/2023GC011061</IDNo>
      </titlStmt>
      <rspStmt>
        <AuthEnty xml:lang="en" affiliation="Department of Geological Sciences, Stockholm University">Mattsson, Tobias</AuthEnty>
        <AuthEnty xml:lang="sv" affiliation="Institutionen för geologiska vetenskaper, Stockholms universitet">Mattsson, Tobias</AuthEnty>
        <AuthEnty xml:lang="en" affiliation="School of Earth and Environmental Sciences, University of St Andrews">McCarthy, William</AuthEnty>
        <AuthEnty xml:lang="sv" affiliation="School of Earth and Environmental Sciences, St Andrews Universitet">McCarthy, William</AuthEnty>
        <AuthEnty xml:lang="en" affiliation="Faculty of Civil Engineering and Geosciences, TU Delft">Schmiedel, Tobias</AuthEnty>
        <AuthEnty xml:lang="sv" affiliation="Faculty of Civil Engineering and Geosciences, Tekniska Universitet i Delft">Schmiedel, Tobias</AuthEnty>
      </rspStmt>
      <prodStmt>
        <grantNo xml:lang="en" agency="Swedish Research Council">2019-06300</grantNo>
        <grantNo xml:lang="sv" agency="Vetenskapsrådet">2019-06300</grantNo>
      </prodStmt>
      <distStmt>
        <distrbtr xml:lang="en" abbr="SND" URI="https://snd.se">Swedish National Data Service</distrbtr>
        <distrbtr xml:lang="sv" abbr="SND" URI="https://snd.se">Svensk nationell datatjänst</distrbtr>
        <distDate xml:lang="en" date="2023-10-06" />
      </distStmt>
      <verStmt>
        <version elementVersion="1" elementVersionDate="2023-10-06" />
      </verStmt>
      <holdings URI="https://doi.org/10.58141/3w7y-3n17">Landing page</holdings>
    </citation>
    <stdyInfo>
      <subject>
        <keyword xml:lang="en" vocab="GCMD" vocabURI="https://gcmd.nasa.gov/kms/concept/40f0a368-7261-43f7-839c-64e428270442">MAGMA COMPOSITION/TEXTURE</keyword>
        <keyword xml:lang="en" vocab="GCMD" vocabURI="https://gcmd.nasa.gov/kms/concept/af04626c-fe27-4ac6-a948-e93debb6c2d6">MAGMA SPEED/FLOW</keyword>
        <keyword xml:lang="en" vocab="INSPIRE Spatial Data Themes" vocabURI="http://inspire.ec.europa.eu/theme/ge">Geology</keyword>
        <keyword xml:lang="sv" vocab="INSPIRE Spatial Data Themes" vocabURI="http://inspire.ec.europa.eu/theme/ge">Geologi</keyword>
        <topcClas xml:lang="en" vocab="INSPIRE topic categories" vocabURI="http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/geoscientificInformation">Geoscientific Information</topcClas>
        <topcClas xml:lang="sv" vocab="INSPIRE topic categories" vocabURI="http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/geoscientificInformation">Geovetenskap</topcClas>
      </subject>
      <abstract xml:lang="en" contentType="abstract">Data collected for a study on magma transport in the Götemar mushy granite pluton.

The data were generated for the study:
Mattsson, T., McCarthy, W., &amp; Schmiedel, T. (2024). Transport of magma in granitic mush systems; an example from the Götemar pluton, Sweden. Geochemistry, Geophysics, Geosystems, 25, e2023GC011061. https://doi.org/10.1029/2023GC011061

Description of the data, variables and file format are provided in attached the README file and Variable codebook.

Below follow a short description of the methods used to collect the data.
We mapped magma transport features by tracing magma sheet contacts with tracks using a handheld GPS. The orientation (strike and dip) of magma transport features was measured with an electronic compass using an Iphone 8. 53 granite samples were collected from the Götemar granite. Between six and 27 (avg. 15 per sample), 25 mm × 22 mm core (sub)specimens were extracted from each of the oriented block samples and were used for rock magnetic analysis undertaken at the M3Ore lab at the University of St. Andrews. The cores were analysed with Anisotropy of Magnetic Susceptibility using a KLY-5 Kappabridge using a 3D automatic spinning holder in a field 400 A/m and with a frequency of 1440 Hz. To characterise the magnetic mineralogy we used several different remanent magnetization techniques on the cores including, Isothermal remanent magnetization and demagnetization, Anhysteretic remanent magnetization and demagnetization, Natural remanent demagnetization and 3-component demagnetization measurements. Core specimen magnetization was measured in a shielded room with a Agico JR-6a Magnetometer. Core specimens were magnetized with a Magnetic Instruments pulse magnetizer and Agico PAM pulse and anhysteretic magnetizer. Core specimens were demagnetized with a LDA5 Agico Alternating Field demagnetizer and a MMTD thermal demagnetizer.</abstract>
      <abstract xml:lang="sv" contentType="abstract">Data insamlade för en studie om magmatransport i Götemars granitpluton.

Data genererades för studien:
Mattsson, T., McCarthy, W., &amp; Schmiedel, T. (2024). Transport of magma in granitic mush systems; an example from the Götemar pluton, Sweden. Geochemistry, Geophysics, Geosystems, 25, e2023GC011061. https://doi.org/10.1029/2023GC011061

Beskrivning av data, variabler och filformat finns i den bifogade README-filen och variabelkodboken.

Nedan följer en kort beskrivning av metoderna som användes för att samla in data.

Vi kartlade magmatransportgångar genom att spåra magmatiska gångkontakter med hjälp av en handhållen GPS. Orienteringen (strike och dip) av stelnade magmagångar mättes med en elektronisk kompass med hjälp av en Iphone 8. 53 granitprover samlades in från Götemargraniten. Mellan sex och 27 (genomsnitt 15 per prov), 25 mm × 22 mm kärna (del)prover extraherades från vart och ett av de orienterade blockproverna och användes för bergmagnetisk analys som utfördes vid M3Ore-labbet vid University of St. Andrews . Kärnorna analyserades med Anisotropy of Magnetic Susceptibility med en KLY-5 Kappabridge och 3D automatisk spinnhållare i ett fält 400 A/m och med en frekvens på 1440 Hz. För att karakterisera den magnetiska mineralogin använde vi flera olika remanens magnetiseringstekniker på kärnorna, inklusive isotermisk remanent magnetisering och avmagnetisering, anhysteretisk remanent magnetisering och avmagnetisering, naturlig remanent avmagnetisering och 3-komponents avmagnetiseringsmätningar. Kärnprovets magnetisering mättes i ett avskärmat rum med en Agico JR-6a magnetometer. Kärnprover magnetiserades med en Magnetic Instruments pulsmagnetiserare och Agico PAM puls och anhysteretisk magnetiserare. Kärnprover avmagnetiserades med en LDA5 Agico Alternating Field-avmagnetiserare och en MMTD termisk avmagnetiserare.</abstract>
      <sumDscr>
        <collDate xml:lang="en" date="2020-08-17" event="start">2020-08-17</collDate>
        <collDate xml:lang="en" date="2022-11-13" event="end">2022-11-13</collDate>
        <collDate xml:lang="en" date="2020-10-10" event="start">2020-10-10</collDate>
        <collDate xml:lang="en" date="2022-08-16" event="end">2022-08-16</collDate>
        <collDate xml:lang="en" date="2021-01-31" event="start">2021-01-31</collDate>
        <collDate xml:lang="en" date="2022-08-17" event="end">2022-08-17</collDate>
        <collDate xml:lang="en" date="2021-03-17" event="start">2021-03-17</collDate>
        <collDate xml:lang="en" date="2022-08-17" event="end">2022-08-17</collDate>
        <nation xml:lang="en" abbr="SE">Sweden</nation>
        <nation xml:lang="sv" abbr="SE">Sverige</nation>
        <dataKind xml:lang="en">Numeric</dataKind>
        <dataKind xml:lang="en">Text</dataKind>
        <dataKind xml:lang="en">Geospatial</dataKind>
      </sumDscr>
    </stdyInfo>
    <method>
      <dataColl>
        <collMode xml:lang="en">Measuring geological structures<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">Measuring geological structures</concept></collMode>
        <collMode xml:lang="sv">Mätning av geologiska strukturer<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">Mätning av geologiska strukturer</concept></collMode>
        <collMode xml:lang="en">Observation<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">Observation</concept></collMode>
        <collMode xml:lang="sv">Observation<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">Observation</concept></collMode>
        <collMode xml:lang="en">Anisotropy of magnetic susceptibility<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">Anisotropy of magnetic susceptibility</concept></collMode>
        <collMode xml:lang="sv">Anisotropi av magnetisk susceptibilitet<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">Anisotropi av magnetisk susceptibilitet</concept></collMode>
        <collMode xml:lang="en">Measurements and tests<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">Measurements and tests</concept></collMode>
        <collMode xml:lang="sv">Mätningar och tester<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">Mätningar och tester</concept></collMode>
        <collMode xml:lang="en">Magnetic Remanence<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">Magnetic Remanence</concept></collMode>
        <collMode xml:lang="sv">Magnetic Remanens<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">Magnetic Remanens</concept></collMode>
        <collMode xml:lang="en">Measurements and tests<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">Measurements and tests</concept></collMode>
        <collMode xml:lang="sv">Mätningar och tester<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">Mätningar och tester</concept></collMode>
        <collMode xml:lang="en">GPS trace of microgranite sheet contact<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">GPS trace of microgranite sheet contact</concept></collMode>
        <collMode xml:lang="sv">GPS data kontakt till mikrogranit gång<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">GPS data kontakt till mikrogranit gång</concept></collMode>
        <collMode xml:lang="en">Measurements and tests<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=en-5.0.0">Measurements and tests</concept></collMode>
        <collMode xml:lang="sv">Mätningar och tester<concept vocab="DDI Mode of Collection" vocabURI="https://vocabularies.cessda.eu/v2/vocabularies/ModeOfCollection/5.0.0?languageVersion=sv-5.0.0">Mätningar och tester</concept></collMode>
      </dataColl>
    </method>
    <dataAccs>
      <useStmt>
        <restrctn xml:lang="en">Access to data through SND. Data are freely accessible.</restrctn>
        <restrctn xml:lang="sv">Åtkomst till data via SND. Data är fritt tillgängliga.</restrctn>
        <conditions elementVersion="info:eu-repo-Access-Terms vocabulary">openAccess</conditions>
      </useStmt>
    </dataAccs>
    <othrStdyMat>
      <relPubl>
        <citation>
          <titlStmt>
            <titl xml:lang="sv">Mattsson, T., McCarthy, W., &amp; Schmiedel, T. (2024). Transport of magma in granitic mush systems; an example from the Götemar pluton, Sweden. Geochemistry, Geophysics, Geosystems, 25, e2023GC011061. https://doi.org/10.1029/2023GC011061</titl>
            <parTitl xml:lang="en">Mattsson, T., McCarthy, W., &amp; Schmiedel, T. (2024). Transport of magma in granitic mush systems; an example from the Götemar pluton, Sweden. Geochemistry, Geophysics, Geosystems, 25, e2023GC011061. https://doi.org/10.1029/2023GC011061</parTitl>
            <IDNo agency="DOI">10.1029/2023GC011061</IDNo>
          </titlStmt>
          <distStmt>
            <distDate date="2024">2024</distDate>
          </distStmt>
        </citation>
      </relPubl>
    </othrStdyMat>
  </stdyDscr>
</codeBook>