<?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="ZOCUOMKMBMEYQV-GSLJADNHSA-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-374994-mz-values.txt-20190109-20465-19c7sr6" name="msms-374994-mz-values.txt-20190109-20465-19c7sr6" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/466/original/msms-374994-mz-values.txt-20190109-20465-19c7sr6?1547065854">
        <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-374994-mz-values.txt-20190109-20465-19c7sr6">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374994-mz-values.txt-20190109-20465-19c7sr6" index="0" defaultArrayLength="1631">
        <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="17690" 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>t17Tg4JyRkCYw+47hodGQARyiSMPnEZAJlMFo5KcRkDYmq285K1GQG3H1F3Z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</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="17690" 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>AAAAAAAAZkAAAAAAAABnQAAAAAAAgGNAAAAAAAAAY0AAAAAAAABjQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
