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É
S[dcl]/(S[ng]\NP)
tudo
(S[ng]\NP)/NP
grego
NP/N
para
N/N
mim
N
N
>
0
NP
>
0
S[ng]\NP
>
0
S[dcl]
>
0
.
S[dcl]\S[dcl]
S[dcl]
<
0
<div class="der"> <table class="constituent binaryrule" data-cat="S[dcl]"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent binaryrule" data-cat="S[dcl]"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="É" data-from="0" data-to="1" data-cat="S[dcl]/(S[ng]\NP)"> <tr><td class="token">É</td></tr> <tr><td class="cat" tabindex="0">S[dcl]/(S[ng]\NP)</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent binaryrule" data-cat="S[ng]\NP"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="tudo" data-from="2" data-to="6" data-cat="(S[ng]\NP)/NP"> <tr><td class="token">tudo</td></tr> <tr><td class="cat" tabindex="0">(S[ng]\NP)/NP</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent binaryrule" data-cat="NP"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="grego" data-from="7" data-to="12" data-cat="NP/N"> <tr><td class="token">grego</td></tr> <tr><td class="cat" tabindex="0">NP/N</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent binaryrule" data-cat="N"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="para" data-from="13" data-to="17" data-cat="N/N"> <tr><td class="token">para</td></tr> <tr><td class="cat" tabindex="0">N/N</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent lex" data-token="mim" data-from="18" data-to="21" data-cat="N"> <tr><td class="token">mim</td></tr> <tr><td class="cat" tabindex="0">N</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> </tr> <tr><td colspan="2" class="rulecat"><div class="rulecat"> <div class="cat">N</div> <div class="rule" title="Forward Application">> <sup>0</sup> </div> </div></td></tr> </table></td> </tr> <tr><td colspan="2" class="rulecat"><div class="rulecat"> <div class="cat">NP</div> <div class="rule" title="Forward Application">> <sup>0</sup> </div> </div></td></tr> </table></td> </tr> <tr><td colspan="2" class="rulecat"><div class="rulecat"> <div class="cat">S[ng]\NP</div> <div class="rule" title="Forward Application">> <sup>0</sup> </div> </div></td></tr> </table></td> </tr> <tr><td colspan="2" class="rulecat"><div class="rulecat"> <div class="cat">S[dcl]</div> <div class="rule" title="Forward Application">> <sup>0</sup> </div> </div></td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent lex" data-token="." data-from="21" data-to="22" data-cat="S[dcl]\S[dcl]"> <tr><td class="token">.</td></tr> <tr><td class="cat" tabindex="0">S[dcl]\S[dcl]</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> </tr> <tr><td colspan="2" class="rulecat"><div class="rulecat"> <div class="cat">S[dcl]</div> <div class="rule" title="Backward Application">< <sup>0</sup> </div> </div></td></tr> </table> </div>
Use with
der.css
.
\begin{tikzpicture}[ampersand replacement=\&] \matrix [column sep=9pt] at (0, 0) { \lexnode*{idm13}{É}{\catS[dcl]/(\catS[ng]\?\catNP)}{} \& \lexnode*{idm32}{tudo}{(\catS[ng]\?\catNP)/\catNP}{} \& \lexnode*{idm49}{grego}{\catNP/\catN}{} \& \lexnode*{idm64}{para}{\catN/\catN}{} \& \lexnode*{idm74}{mim}{\catN}{} \& \lexnode*{idm82}{.}{\catS[dcl]\?\catS[dcl]}{} \\ }; \binnode*{idm59}{idm64-cat}{idm74-cat}{\FC{0}}{\catN}{} \binnode*{idm44}{idm49-cat}{idm59}{\FC{0}}{\catNP}{} \binnode*{idm25}{idm32-cat}{idm44}{\FC{0}}{\catS[ng]\?\catNP}{} \binnode*{idm8}{idm13-cat}{idm25}{\FC{0}}{\catS[dcl]}{} \binnode*{idm3}{idm8}{idm82-cat}{\BC{0}}{\catS[dcl]}{} \end{tikzpicture}
Use with
ccgsym.sty
and
tikzlibraryccgder.code.tex
.
Translations
deu
Das sind für mich böhmische Dörfer.
eng
It is all Greek to me.
eng
It's all Greek to me.