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Modeling the properties of German phrasal compounds within a usage-based constructional approach
(2017)
This paper discusses phrasal compounds in German (e.g.“Man-muss-doch-überalles-reden-können”-Credo, ‘one-should-be-able-to-talk-about-everything motto’). It provides the first empirically based investigation and description of this wordformation type within the theoretical framework of construction grammar. While phrasal compounds pose a problem for “traditional” generative approaches, I argue that a usage-based constructional model (e.g. Langacker 1987; Goldberg 2006) which takes into consideration aspects of frequency provides a suitable approach to modeling and explaining their properties. For this purpose, a large inventory of phrasal compounds was extracted from the German Reference Corpus (DeReKo) and modeled as pairings of form and meaning at different levels of specificity and abstractness within a bottom-up process.
Overall, this paper not only presents a new and original approach to phrasal compounds, but also offers interesting perspectives for dealing with composition in general.
This paper studies the morphological productivity of German N+N compounding patterns from a diachronic perspective. It argues that the productivity of compounds increases due to syntactic influence from genitive constructions (“improper compounds”) in Early New High German. Both quantitative and qualitative productivity measures are adapted from derivational morphology and tested on compound data from the Mainz Corpus of (Early) New High German (1500–1710).
This paper deals with the creation of the first morphological treebank for German by merging two pre-existing linguistic databases. The first of these is the linguistic database CELEX which is a standard resource for German morphology. We build on its refurbished and modernized version. The second resource is GermaNet, a lexical-semantic network which also provides partial markup for compounds. We describe the state of the art and the essential characteristics of both databases and our latest revisions. As the merging involves two data sources with distinct annotation schemes, the derivation of the morphological trees for the unified resource is not trivial. We discuss how we overcome problems with the data and format, in particular how we deal with overlaps and complementary scopes. The resulting database comprises about 100,000 trees whose format can be chosen according to the requirements of the application at hand. In our discussion, we show some future directions for morphological treebanks. The Perl script for the generation of the data from the sources will be made publicly available on our website.