comparison test-data/tmt_data_18.mzXML @ 15:97a7f34fcb6a draft

"planemo upload for repository https://github.com/galaxyproteomics/tools-galaxyp/tree/master/tools/maxquant commit 641b1d3af3b589a861cde2dc2f8803c9b79df7be"
author galaxyp
date Wed, 11 Aug 2021 09:24:23 +0000
parents
children
comparison
equal deleted inserted replaced
14:e42225f8a659 15:97a7f34fcb6a
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</peaks>
3049 <nameValue name="total ion current" value="7.083716e06"/>
3050 <nameValue name="base peak m/z" value="394.268127441406023"/>
3051 <nameValue name="base peak intensity" value="2.25975484375e05"/>
3052 <nameValue name="lowest observed m/z" value="351.239410400391023"/>
3053 <nameValue name="highest observed m/z" value="1599.980102539059999"/>
3054 <nameValue name="filter string" value="FTMS + c NSI cv=-40.00 Full ms [350.0000-1600.0000]"/>
3055 </scan>
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</peaks>
3088 <nameValue name="total ion current" value="9.596503e06"/>
3089 <nameValue name="base peak m/z" value="394.268127441406023"/>
3090 <nameValue name="base peak intensity" value="2.1852509375e05"/>
3091 <nameValue name="lowest observed m/z" value="350.343231201171989"/>
3092 <nameValue name="highest observed m/z" value="1599.874633789059999"/>
3093 <nameValue name="filter string" value="FTMS + c NSI cv=-40.00 Full ms [350.0000-1600.0000]"/>
3094 </scan>
3095 <scan num="235" msLevel="1" peaksCount="118" polarity="+" scanType="Full" filterLine="FTMS + c NSI cv=-60.00 Full ms [350.0000-1600.0000]" retentionTime="PT68.8989052639998S" startMz="350" endMz="1600" lowMz="350.489501953125" highMz="1339.8125" basePeakMz="496.556488037108977" basePeakIntensity="2.41653921875e05" totIonCurrent="1.155711875e06">
3096 <peaks precision="32"
3097 byteOrder="network"
3098 contentType="m/z-int"
3099 compressionType="none"
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3101 <nameValue name="total ion current" value="1.155711875e06"/>
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3160 <scan num="240" msLevel="1" peaksCount="1314" polarity="+" scanType="Full" filterLine="FTMS + c NSI cv=-40.00 Full ms [350.0000-1600.0000]" retentionTime="PT70.4382959839998S" startMz="350" endMz="1600" lowMz="350.678955078125" highMz="1599.82080078125" basePeakMz="394.268005371093977" basePeakIntensity="2.3373734375e05" totIonCurrent="9.735118e06">
3161 <peaks precision="32"
3162 byteOrder="network"
3163 contentType="m/z-int"
3164 compressionType="none"
3165 compressedLen="0" 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3167 <nameValue name="base peak m/z" value="394.268005371093977"/>
3168 <nameValue name="base peak intensity" value="2.3373734375e05"/>
3169 <nameValue name="lowest observed m/z" value="350.678955078125"/>
3170 <nameValue name="highest observed m/z" value="1599.82080078125"/>
3171 <nameValue name="filter string" value="FTMS + c NSI cv=-40.00 Full ms [350.0000-1600.0000]"/>
3172 </scan>
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3184 <nameValue name="filter string" value="FTMS + c NSI cv=-60.00 Full ms [350.0000-1600.0000]"/>
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3189 contentType="m/z-int"
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3192 <nameValue name="total ion current" value="9.6742875e04"/>
3193 <nameValue name="base peak m/z" value="495.255493164063012"/>
3194 <nameValue name="base peak intensity" value="8733.8818359375"/>
3195 <nameValue name="lowest observed m/z" value="357.697662353516023"/>
3196 <nameValue name="highest observed m/z" value="1504.52099609375"/>
3197 <nameValue name="filter string" value="FTMS + c NSI cv=-80.00 Full ms [350.0000-1600.0000]"/>
3198 </scan>
3199 <scan num="243" msLevel="1" peaksCount="1193" polarity="+" scanType="Full" filterLine="FTMS + c NSI cv=-40.00 Full ms [350.0000-1600.0000]" retentionTime="PT71.3707119679998S" startMz="350" endMz="1600" lowMz="351.220245361328011" highMz="1599.349975585940001" basePeakMz="394.268096923828011" basePeakIntensity="2.18890765625e05" totIonCurrent="8.021417e06">
3200 <peaks precision="32"
3201 byteOrder="network"
3202 contentType="m/z-int"
3203 compressionType="none"
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</peaks>
3244 <nameValue name="total ion current" value="6.9281595e06"/>
3245 <nameValue name="base peak m/z" value="394.268096923828011"/>
3246 <nameValue name="base peak intensity" value="2.67918125e05"/>
3247 <nameValue name="lowest observed m/z" value="351.220855712891023"/>
3248 <nameValue name="highest observed m/z" value="1598.66796875"/>
3249 <nameValue name="filter string" value="FTMS + c NSI cv=-40.00 Full ms [350.0000-1600.0000]"/>
3250 </scan>
3251 <scan num="247" msLevel="1" peaksCount="96" polarity="+" scanType="Full" filterLine="FTMS + c NSI cv=-60.00 Full ms [350.0000-1600.0000]" retentionTime="PT72.577552224S" startMz="350" endMz="1600" lowMz="359.694000244141023" highMz="1596.7197265625" basePeakMz="496.557098388671989" basePeakIntensity="2.1703378125e05" totIonCurrent="1.000763875e06">
3252 <peaks precision="32"
3253 byteOrder="network"
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