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<?xml version="1.0" standalone="yes"?> <Paper uid="C94-2140"> <Title>Free-ordered CUG on ChemicM Abstract; Mzmhine</Title> <Section position="2" start_page="0" end_page="0" type="intro"> <SectionTitle> 1 Introduction </SectionTitle> <Paragraph position="0"> PArA\[le\] a.nd distributed computation is expected to be tlhe too.in streAnn of infbrlnAtion processint. In the conventionAl generation, the rules for compositi(m are given from the outside ~nd those rules control All the behavior of the symbols or the objects, for ~tssembling A hierarchicaJ tree structure. D)r exAmple, Ml the linguistic objects, such a.s words And phrases must be Applied to socaJled gra,mlm~r rules to form gr;mmlAtica.1 structures or r;~tionaJ semantic represen rations, under A strict controller process. However, this ldnd of formMizAtion obviously contradicts the partiAl / distributed processing that would be required in pa,rAlle\] architecture in future,.</Paragraph> <Paragraph position="1"> In order to represent grammttr rules distributivdy, we adopt cAtegorial grammar, where we can an AttAch local grAmma,r rule to e~ch word and phrase. WhAt we Mm in this paper is to propose A pAra.digm that ena, bles partial / local generation through decompositions And reorganizations of ten tAtive local str u ct ures.</Paragraph> <Paragraph position="2"> In the following section, we introduce the extended ,\-calculus. Therea.fter we introduce the ChAM model And we reinterpret the mode\[ il, terms of natural language processhGs. Then we show the model of membrane interaction model with the example of ,lap~mese causative sentence that requires drastic change of domination of cases. FinMly we will discuss the fllture of the model.</Paragraph> </Section> class="xml-element"></Paper>