<?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="UREBDLICKHMUKA-CXSFZGCWSA-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-374552-mz-values.txt-20190109-20465-1p0vuk5" name="msms-374552-mz-values.txt-20190109-20465-1p0vuk5" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/024/original/msms-374552-mz-values.txt-20190109-20465-1p0vuk5?1547065832">
        <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-374552-mz-values.txt-20190109-20465-1p0vuk5">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374552-mz-values.txt-20190109-20465-1p0vuk5" index="0" defaultArrayLength="734">
        <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="7963" 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>rWhznNvIRkCV88Xei+1GQEC/79+8CkdAnPnVHCBAR0CB6h9EMnhHQFBwsaIG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</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="7963" 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>AAAAAAAAYkAAAAAAAIBpQAAAAAAAAGVAAAAAAACAZEAAAAAAAABoQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
