<?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="LNPDTQAFDNKSHK-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-374972-mz-values.txt-20190109-20465-efranl" name="msms-374972-mz-values.txt-20190109-20465-efranl" location="http://staging.bovinedb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/444/original/msms-374972-mz-values.txt-20190109-20465-efranl?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-374972-mz-values.txt-20190109-20465-efranl">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374972-mz-values.txt-20190109-20465-efranl" 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>G/Z7Yp2aRkDz/6ojR7JGQGb35GGhuEZA8DMuHAgzR0Bq3JvfMDtHQOmcn+I4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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>AAAAAAAAX0AAAAAAAABlQAAAAAAAgGVAAAAAAACAYkAAAAAAAABtQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
