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Sentence
ara
bul
dan
eng
est
deu
fra
hin
ind
ita
kan
ltz
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nld
pol
por
ron
rus
spa
srp
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Go
Parse
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visual
HTML
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I
NP
look
(S[dcl]\NP)/(S[adj]\NP)
forward
(S[adj]\NP)/PP
to
PP/(S[ng]\NP)
seeing
(S[ng]\NP)/NP
you
NP
S[ng]\NP
>
0
again
(S\NP)\(S\NP)
S[ng]\NP
<
0
PP
>
0
S[adj]\NP
>
0
S[dcl]\NP
>
0
.
.
S[dcl]\NP
.
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 lex" data-token="I" data-from="0" data-to="1" data-cat="NP"> <tr><td class="token">I</td></tr> <tr><td class="cat" tabindex="0">NP</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent binaryrule" data-cat="S[dcl]\NP"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent binaryrule" data-cat="S[dcl]\NP"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="look" data-from="2" data-to="6" data-cat="(S[dcl]\NP)/(S[adj]\NP)"> <tr><td class="token">look</td></tr> <tr><td class="cat" tabindex="0">(S[dcl]\NP)/(S[adj]\NP)</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent binaryrule" data-cat="S[adj]\NP"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="forward" data-from="7" data-to="14" data-cat="(S[adj]\NP)/PP"> <tr><td class="token">forward</td></tr> <tr><td class="cat" tabindex="0">(S[adj]\NP)/PP</td></tr> <tr><td class="span-swiper"> </td></tr> </table></td> <td class="daughter daughter-right"><table class="constituent binaryrule" data-cat="PP"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="to" data-from="15" data-to="17" data-cat="PP/(S[ng]\NP)"> <tr><td class="token">to</td></tr> <tr><td class="cat" tabindex="0">PP/(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 binaryrule" data-cat="S[ng]\NP"> <tr class="daughters"> <td class="daughter daughter-left"><table class="constituent lex" data-token="seeing" data-from="18" data-to="24" data-cat="(S[ng]\NP)/NP"> <tr><td class="token">seeing</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 lex" data-token="you" data-from="25" data-to="28" data-cat="NP"> <tr><td class="token">you</td></tr> <tr><td class="cat" tabindex="0">NP</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[ng]\NP</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="again" data-from="29" data-to="34" data-cat="(S\NP)\(S\NP)"> <tr><td class="token">again</td></tr> <tr><td class="cat" tabindex="0">(S\NP)\(S\NP)</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[ng]\NP</div> <div class="rule" title="Backward Application">< <sup>0</sup> </div> </div></td></tr> </table></td> </tr> <tr><td colspan="2" class="rulecat"><div class="rulecat"> <div class="cat">PP</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[adj]\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]\NP</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="34" data-to="35" data-cat="."> <tr><td class="token">.</td></tr> <tr><td class="cat" tabindex="0">.</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]\NP</div> <div class="rule" title="Remove Punctuation">.</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="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*{idm8}{I}{\catNP}{} \& \lexnode*{idm30}{look}{(\catS[dcl]\?\catNP)/(\catS[adj]\?\catNP)}{} \& \lexnode*{idm51}{forward}{(\catS[adj]\?\catNP)/\catPP}{} \& \lexnode*{idm68}{to}{\catPP/(\catS[ng]\?\catNP)}{} \& \lexnode*{idm94}{seeing}{(\catS[ng]\?\catNP)/\catNP}{} \& \lexnode*{idm106}{you}{\catNP}{} \& \lexnode*{idm114}{again}{(\catS\?\catNP)\?(\catS\?\catNP)}{} \& \lexnode*{idm128}{.}{\cat.}{} \\ }; \binnode*{idm87}{idm94-cat}{idm106-cat}{\FC{0}}{\catS[ng]\?\catNP}{} \binnode*{idm80}{idm87}{idm114-cat}{\BC{0}}{\catS[ng]\?\catNP}{} \binnode*{idm63}{idm68-cat}{idm80}{\FC{0}}{\catPP}{} \binnode*{idm44}{idm51-cat}{idm63}{\FC{0}}{\catS[adj]\?\catNP}{} \binnode*{idm23}{idm30-cat}{idm44}{\FC{0}}{\catS[dcl]\?\catNP}{} \binnode*{idm16}{idm23}{idm128-cat}{.}{\catS[dcl]\?\catNP}{} \binnode*{idm3}{idm8-cat}{idm16}{\BC{0}}{\catS[dcl]}{} \end{tikzpicture}
Use with
ccgsym.sty
and
tikzlibraryccgder.code.tex
.
Translations
deu
Ich freue mich darauf, dich wiedersehen zu können.
fra
Je me réjouis de vous revoir.
fra
Je me réjouis de te revoir.
rus
Мне не терпится снова тебя увидеть.
spa
Estoy deseando volver a verte.