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<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE Technique SYSTEM "animl_unit_entities.dtd">
<Technique name="Indexing" version="0.90"
xmlns="urn:org:astm:animl:schema:technique:draft:0.90"
xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"
xsi:schemaLocation="urn:org:astm:animl:schema:technique:draft:0.90 http://schemas.animl.org/current/animl-technique.xsd">
<Documentation>
The purpose of this technique definition is to allow multiple experiment steps to be put into a
context, further describing the circumstances under which they were executed. This may include
time, sequence order, physical coordinates on a surface or microplate, but also temperature and
pressure.
</Documentation>
<ResultBlueprint name="Indexing" modality="required">
<Documentation>
The Sequence series is always required. It uniquely identifies an indexing data point and
defines the order in which the data should be interpreted. Additional series may be added
to describe the conditions under which an Experiment Step is executed. Such Experiment
Steps are to be nested underneath this Result and should include a ParentDataPointReference
to the Sequence vector value.
</Documentation>
<SeriesSetBlueprint name="Index">
<SeriesBlueprint name="Sequence" dependency="independent" seriesType="Int" modality="required" maxOccurs="1"
plotScale="none">
<Documentation>Numeric identifier for indexing data point. Used to reflect the order.</Documentation>
</SeriesBlueprint>
<SeriesBlueprint name="Time" dependency="dependent" seriesType="Float" modality="optional" maxOccurs="1"
plotScale="none">
<Documentation>Time value</Documentation>
<Quantity name="Time">
<Unit label="s">
<SIUnit>s</SIUnit>
</Unit>
</Quantity>
</SeriesBlueprint>
<SeriesBlueprint name="Temperature" dependency="dependent" seriesType="Float" modality="optional"
maxOccurs="1" plotScale="linear">
<Documentation>Temperature value</Documentation>
<Quantity name="Temperature">
<Unit label="K">
<SIUnit>K</SIUnit>
</Unit>
</Quantity>
</SeriesBlueprint>
<SeriesBlueprint name="pH" dependency="dependent" seriesType="Float" modality="optional" maxOccurs="1"
plotScale="linear">
<Documentation>pH value</Documentation>
</SeriesBlueprint>
<SeriesBlueprint name="Pressure" dependency="dependent" seriesType="Float" modality="optional" maxOccurs="1"
plotScale="linear">
<Documentation>Pressure</Documentation>
<Quantity name="Pressure">
<Unit label="Pa"/>
</Quantity>
</SeriesBlueprint>
<SeriesBlueprint name="x" dependency="dependent" seriesType="Float" modality="optional" maxOccurs="1"
plotScale="none">
<Documentation>x coordinate</Documentation>
<Quantity name="Length">
<Unit label="mm">
<SIUnit factor=".001">m</SIUnit>
</Unit>
</Quantity>
</SeriesBlueprint>
<SeriesBlueprint name="y" dependency="dependent" seriesType="Float" modality="optional" maxOccurs="1"
plotScale="none">
<Documentation>y coordinate</Documentation>
<Quantity name="Length">
<Unit label="mm">
<SIUnit factor=".001">m</SIUnit>
</Unit>
</Quantity>
</SeriesBlueprint>
<SeriesBlueprint name="z" dependency="dependent" seriesType="Float" modality="optional" maxOccurs="1"
plotScale="none">
<Documentation>z coordinate</Documentation>
<Quantity name="Length">
<Unit label="mm">
<SIUnit factor=".001">m</SIUnit>
</Unit>
</Quantity>
</SeriesBlueprint>
</SeriesSetBlueprint>
</ResultBlueprint>
</Technique>