<?xml version="1.0"?>
<mzML xmlns="http://psi.hupo.org/ms/mzml" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://psi.hupo.org/ms/mzml http://psidev.info/files/ms/mzML/xsd/mzML1.1.0.xsd" id="HJORMJIFDVBMOB-UHFFFAOYSA-N" version="0.1">
  <cvList count="2">
    <cv id="MS" fullName="Proteomics Standards Initiative Mass Spectrometry Ontology" version="2.26.0" URI="http://psidev.cvs.sourceforge.net/*checkout*/psidev/psi/psi-ms/mzML/controlledVocabulary/psi-ms.obo"/>
    <cv id="UO" fullName="Unit Ontology" version="14:07:2009" URI="http://obo.cvs.sourceforge.net/*checkout*/obo/obo/ontology/phenotype/unit.obo"/>
  </cvList>
  <fileDescription>
    <fileContent>
      <cvParam cvRef="MS" accession="MS:1000127" name="centroid spectrum" value=""/>
    </fileContent>
    <sourceFileList count="1">
      <sourceFile id="_msms-374878-mz-values.txt-20190109-20465-1mj1eqg" name="msms-374878-mz-values.txt-20190109-20465-1mj1eqg" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/350/original/msms-374878-mz-values.txt-20190109-20465-1mj1eqg?1547065848">
        <cvParam cvRef="MS" accession="MS:1001369" name="text file" value=""/>
      </sourceFile>
    </sourceFileList>
    <contact>
      <cvParam cvRef="MS" accession="MS:1000586" name="contact name" value="David Wishart"/>
      <cvParam cvRef="MS" accession="MS:1000590" name="contact organization" value="University of Alberta"/>
      <cvParam cvRef="MS" accession="MS:1000587" name="contact address" value="University of Alberta, Edmonton, Alberta, Canada, T6G 2E8"/>
      <cvParam cvRef="MS" accession="MS:1000588" name="contact URL" value="http://wishartlab.com"/>
      <cvParam cvRef="MS" accession="MS:1000589" name="contact email" value="david.wishart@ualberta.ca"/>
    </contact>
  </fileDescription>
  <softwareList count="1">
    <software id="SpecDB" version="0.1">
      <cvParam cvRef="MS" accession="MS:1000799" name="custom unreleased software tool" value="SpecDB Spectra management database"/>
    </software>
  </softwareList>
  <instrumentConfigurationList count="1">
    <instrumentConfiguration id="instrument">
      <cvParam cvRef="MS" accession="MS:1000031" name="instrument model" value=""/>
    </instrumentConfiguration>
  </instrumentConfigurationList>
  <dataProcessingList count="1">
    <dataProcessing id="SpecDB_processing">
      <processingMethod order="1" softwareRef="SpecDB">
        <cvParam cvRef="MS" accession="MS:1000544" name="Conversion to mzML" value=""/>
      </processingMethod>
    </dataProcessing>
  </dataProcessingList>
  <run id="run_1" defaultInstrumentConfigurationRef="instrument" defaultSourceFileRef="_msms-374878-mz-values.txt-20190109-20465-1mj1eqg">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374878-mz-values.txt-20190109-20465-1mj1eqg" index="0" defaultArrayLength="1000">
        <cvParam cvRef="MS" accession="MS:1000580" name="MSn spectrum" value=""/>
        <cvParam cvRef="MS" accession="MS:1000127" name="centroid spectrum" value=""/>
        <cvParam cvRef="MS" accession="MS:1000130" name="positive scan" value=""/>
        <binaryDataArrayList count="2">
          <binaryDataArray encodedLength="10846" dataProcessingRef="SpecDB_processing">
            <cvParam cvRef="MS" accession="MS:1000523" name="64-bit float" value=""/>
            <cvParam cvRef="MS" accession="MS:1000576" name="no compression" value=""/>
            <cvParam cvRef="MS" accession="MS:1000514" name="m/z array" value="" unitCvRef="MS" unitAccession="MS:1000040" unitName="m/z"/>
            <binary>6KIh41GARkB2GJP+XoJGQAEwnkFDi0ZApbxWQnefRkDV6NUApbFGQKPLm8O1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</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="10846" dataProcessingRef="SpecDB_processing">
            <cvParam cvRef="MS" accession="MS:1000523" name="64-bit float" value=""/>
            <cvParam cvRef="MS" accession="MS:1000576" name="no compression" value=""/>
            <cvParam cvRef="MS" accession="MS:1000515" name="intensity array" value="" unitCvRef="MS" unitAccession="MS:1000131" unitName="number of counts"/>
            <binary>AAAAAAAAYEAAAAAAAABhQAAAAAAAgGBAAAAAAAAAYEAAAAAAAABdQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
