element <list> (global)
Namespace:
Type:
anonymous complexType
Content:
complex, 5 attributes, elem. wildcard
Defined:
globally in cmlreact.xsd; see XML source
Includes:
definition of elem. wildcard
Used:
XML Representation Summary
<list
   
 = 
xsd:string
 = 
xsd:string
 = 
xsd:string
 = 
xsd:string
 = 
xsd:string
    >
   
Content: 
{any}*
</list>
Included in content model of elements (3):
conditionList, molecule, spectrumList
Known Usage Locations
Annotation
<h:div class="summary">A generic container with no implied semantics.</h:div> <h:div class="description">A generic container with no implied semantics. It just contains things and can have attributes which bind conventions to it. It could often act as the root element in an STM document.</h:div> <h:div class="example" href="list1.xml"/>
XML Source (see within schema source)
<xsd:element id="el.list" name="list">
<xsd:annotation>
<xsd:documentation>
<h:div class="summary">A generic container with no implied semantics.</h:div>
<h:div class="description">
A generic container with no implied semantics. It just contains things and can have attributes which bind conventions to it. It could often act as the root element in an STM document.
</h:div>
<h:div class="example" href="list1.xml"/>
</xsd:documentation>
</xsd:annotation>
<xsd:complexType>
<xsd:sequence>
<xsd:any maxOccurs="unbounded" minOccurs="0" processContents="lax"/>
</xsd:sequence>
<xsd:attributeGroup ref="title"/>
<xsd:attributeGroup ref="id"/>
<xsd:attributeGroup ref="convention"/>
<xsd:attributeGroup ref="dictRef"/>
<xsd:attributeGroup ref="type"/>
</xsd:complexType>
</xsd:element>
Attribute Detail (all declarations; 5/5)
convention
Type:
Use:
optional
Defined:
locally within convention attributeGroup
<h:div class="summary">A reference to a convention.</h:div> <h:div class="description">There is no controlled vocabulary for conventions, but the author must ensure that the semantics are openly available and that there are mechanisms for implementation. The convention is inherited by all the subelements, so that a convention for <h:tt>molecule</h:tt> would by default extend to its <h:tt>bond</h:tt> and <h:tt>atom</h:tt> children. This can be overwritten if necessary by an explicit <h:tt>convention</h:tt>. <h:p>It may be useful to create conventions with namespaces (e.g. <h:tt>iupac:name</h:tt>). Use of <h:tt>convention</h:tt> will normally require non-STMML semantics, and should be used with caution. We would expect that conventions prefixed with "ISO" would be useful, such as ISO8601 for dateTimes.</h:p> <h:p>There is no default, but the conventions of STMML or the related language (e.g. CML) will be assumed.</h:p> </h:div> <h:div class="example" href="convGroup1.xml" id="ex"/>
XML Source (see within schema source)
<xsd:attribute id="att.convention" name="convention" type="namespaceRefType">
<xsd:annotation>
<xsd:documentation>
<h:div class="summary">A reference to a convention.</h:div>
<h:div class="description">
There is no controlled vocabulary for conventions, but the author must ensure that the semantics are openly available and that there are mechanisms for implementation. The convention is inherited by all the subelements,
so that a convention for
<h:tt>molecule</h:tt>
would by default extend to its
<h:tt>bond</h:tt>
and
<h:tt>atom</h:tt>
children. This can be overwritten
if necessary by an explicit
<h:tt>convention</h:tt>
.
<h:p>
It may be useful to create conventions with namespaces (e.g.
<h:tt>iupac:name</h:tt>
).
Use of
<h:tt>convention</h:tt>
will normally require non-STMML semantics, and should be used with
caution. We would expect that conventions prefixed with "ISO" would be useful,
such as ISO8601 for dateTimes.
</h:p>
<h:p>
There is no default, but the conventions of STMML or the related language (e.g. CML) will be assumed.
</h:p>
</h:div>
<h:div class="example" href="convGroup1.xml" id="ex"/>
</xsd:documentation>
</xsd:annotation>
</xsd:attribute>

dictRef
Type:
Use:
optional
Defined:
locally within dictRef attributeGroup
<h:div class="summary">A reference to a dictionary entry.</h:div> <h:div class="description">Elements in data instances such as _scalar_ may have a <h:tt>dictRef</h:tt> attribute to point to an entry in a dictionary. To avoid excessive use of (mutable) filenames and URIs we recommend a namespace prefix, mapped to a namespace URI in the normal manner. In this case, of course, the namespace URI must point to a real XML document containing _entry_ elements and validated against STMML Schema. <h:p>Where there is concern about the dictionary becoming separated from the document the dictionary entries can be physically included as part of the data instance and the normal XPointer addressing mechanism can be used.</h:p> <h:p>This attribute can also be used on _dictionary_ elements to define the namespace prefix</h:p> </h:div> <h:div class="example" href="dictRefGroup1.xml"/>
XML Source (see within schema source)
<xsd:attribute id="att.dictRef" name="dictRef" type="namespaceRefType">
<xsd:annotation>
<xsd:documentation>
<h:div class="summary">A reference to a dictionary entry.</h:div>
<h:div class="description">
Elements in data instances such as _scalar_ may have a
<h:tt>dictRef</h:tt>
attribute to point to an entry in a dictionary. To avoid excessive use of (mutable) filenames and URIs we recommend a namespace prefix, mapped to a namespace URI in the normal manner. In this case, of course, the namespace URI must point to a real XML document containing _entry_ elements and validated against STMML Schema.
<h:p>
Where there is concern about the dictionary becoming separated from the document the dictionary entries can be physically included as part of the data instance and the normal XPointer addressing mechanism can be used.
</h:p>
<h:p>
This attribute can also be used on _dictionary_ elements to define the namespace prefix
</h:p>
</h:div>
<h:div class="example" href="dictRefGroup1.xml"/>
</xsd:documentation>
</xsd:annotation>
</xsd:attribute>

id
Type:
Use:
optional
Defined:
locally within id attributeGroup
<h:div class="summary">An attribute providing a unique ID for an element.</h:div> <h:div class="description"/>
XML Source (see within schema source)
<xsd:attribute id="att.id" name="id" type="idType">
<xsd:annotation>
<xsd:documentation>
<h:div class="summary">
An attribute providing a unique ID for an element.
</h:div>
<h:div class="description"/>
</xsd:documentation>
</xsd:annotation>
</xsd:attribute>

title
Type:
xsd:string, predefined
Use:
optional
Defined:
locally within title attributeGroup
<h:div class="summary">A title on an element.</h:div> <h:div class="description">No controlled value.</h:div> <h:div class="example" href="title1.xml"/>
XML Source (see within schema source)
<xsd:attribute id="att.title" name="title" type="xsd:string">
<xsd:annotation>
<xsd:documentation>
<h:div class="summary">A title on an element.</h:div>
<h:div class="description">No controlled value.</h:div>
<h:div class="example" href="title1.xml"/>
</xsd:documentation>
</xsd:annotation>
</xsd:attribute>

type
Type:
xsd:string, predefined
Use:
optional
Defined:
locally within type attributeGroup
<h:div class="summary">Type of the object.</h:div> <h:div class="description">A qualifier which may affect the semantics of the object.</h:div>
XML Source (see within schema source)
<xsd:attribute id="att.type" name="type" type="xsd:string">
<xsd:annotation>
<xsd:documentation>
<h:div class="summary">Type of the object.</h:div>
<h:div class="description">
A qualifier which may affect the semantics of the object.
</h:div>
</xsd:documentation>
</xsd:annotation>
</xsd:attribute>
Content Element Detail (all declarations; 1/1)
{any element with any namespace}
Defined:
within (this) list element
XML Source (see within schema source)
<xsd:any maxOccurs="unbounded" minOccurs="0" processContents="lax"/>

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