<?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="InChIKey=QWGDMFLQWFTERH-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-374925-mz-values.txt-20190109-20465-g0kbxv" name="msms-374925-mz-values.txt-20190109-20465-g0kbxv" location="http://t3db.cahttp://moldb.wishartlab.com/system/documents/files/001/918/397/original/msms-374925-mz-values.txt-20190109-20465-g0kbxv?1547065851">
        <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-374925-mz-values.txt-20190109-20465-g0kbxv">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374925-mz-values.txt-20190109-20465-g0kbxv" 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>WyiZnNq7RkCNfjScMsdGQD+MEB5tAEdAAySaQBEbR0DLLhhccylHQLHdPUD3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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>AAAAAAAAUEAAAAAAAABTQAAAAAAAAEhAAAAAAAAAUEAAAAAAAABXQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
