<?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="OUZWUKMCLIBBOG-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-374966-mz-values.txt-20190109-20465-mpieoo" name="msms-374966-mz-values.txt-20190109-20465-mpieoo" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/438/original/msms-374966-mz-values.txt-20190109-20465-mpieoo?1547065853">
        <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-374966-mz-values.txt-20190109-20465-mpieoo">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374966-mz-values.txt-20190109-20465-mpieoo" index="0" defaultArrayLength="902">
        <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="9785" 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>stR6v9F6RkBQcLGiBo1GQMAlAP+UmEZASL99HTi1RkD+RGXDmrxGQFGFP8Ob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</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="9785" 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>AAAAAACAZUAAAAAAAABjQAAAAAAAgGVAAAAAAACAaEAAAAAAAIBnQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
