<?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="DRLFMBDRBRZALE-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-374702-mz-values.txt-20190109-20465-caqki2" name="msms-374702-mz-values.txt-20190109-20465-caqki2" location="http://test.hmdb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/174/original/msms-374702-mz-values.txt-20190109-20465-caqki2?1547065838">
        <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-374702-mz-values.txt-20190109-20465-caqki2">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374702-mz-values.txt-20190109-20465-caqki2" 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>38SQnEyERkCQ+YBAZ4hGQBbe5SK+oUZAiGNd3EbFRkDvrrMh/8ZGQDikUYGT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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>AAAAAACAY0AAAAAAAIBkQAAAAAAAgGRAAAAAAACAYkAAAAAAAIBiQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
