other,6-1-P06-4011,ak This paper introduces a method for <term> computational analysis </term> of <term> move structures </term> in <term>
other,9-1-P06-4011,ak <term> computational analysis </term> of <term> move structures </term> in <term> abstracts </term> of research
other,12-1-P06-4011,ak </term> of <term> move structures </term> in <term> abstracts </term> of research articles . In our approach
other,4-2-P06-4011,ak research articles . In our approach , <term> sentences </term> in a given abstract are analyzed
other,16-2-P06-4011,ak analyzed and labeled with a specific <term> move </term> in light of various <term> rhetorical
other,21-2-P06-4011,ak <term> move </term> in light of various <term> rhetorical functions </term> . The method involves automatically
other,9-3-P06-4011,ak automatically gathering a large number of <term> abstracts </term> from the <term> Web </term> and building
other,12-3-P06-4011,ak number of <term> abstracts </term> from the <term> Web </term> and building a <term> language model
model,16-3-P06-4011,ak the <term> Web </term> and building a <term> language model </term> of <term> abstract moves </term> . We
other,19-3-P06-4011,ak building a <term> language model </term> of <term> abstract moves </term> . We also present a <term> prototype
tech,4-4-P06-4011,ak abstract moves </term> . We also present a <term> prototype concordancer </term> , <term> CARE </term> , which exploits
tool,7-4-P06-4011,ak <term> prototype concordancer </term> , <term> CARE </term> , which exploits the <term> move-tagged
other,12-4-P06-4011,ak <term> CARE </term> , which exploits the <term> move-tagged abstracts </term> for <term> digital learning </term> .
tech,15-4-P06-4011,ak <term> move-tagged abstracts </term> for <term> digital learning </term> . This system provides a promising
tech,7-5-P06-4011,ak system provides a promising approach to <term> Web-based computer-assisted academic writing </term> . The <term> LOGON MT demonstrator </term>
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