<?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="YNDXUCZADRHECN-JNQJZLCISA-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-374508-mz-values.txt-20190109-20465-5yvdtq" name="msms-374508-mz-values.txt-20190109-20465-5yvdtq" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/917/980/original/msms-374508-mz-values.txt-20190109-20465-5yvdtq?1547065831">
        <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-374508-mz-values.txt-20190109-20465-5yvdtq">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374508-mz-values.txt-20190109-20465-5yvdtq" index="0" defaultArrayLength="513">
        <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="5564" 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>E0iJXdt9RkAZxt0gWglHQPPGSWHej0dASMX/HVH3R0Auknajjw1IQKvRqwFK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</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="5564" 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>AAAAAAAAaEAAAAAAAABnQAAAAAAAgGNAAAAAAACAYUAAAAAAAIBpQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
