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Machine Translation and Automated Analysis of the Sumerian Language.

, , , and . LaTeCH@ACL, page 10-16. Association for Computational Linguistics, (2017)

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Towards the Unsupervised Acquisition of Implicit Semantic Roles., , and . RANLP, page 570-578. RANLP 2015 Organising Committee / ACL, (2015)Analyzing Middle High German Syntax with RDF and SPARQL., , , and . LREC, European Language Resources Association (ELRA), (2018)Diachronic proximity vs. data sparsity in cross-lingual parser projection. A case study on Germanic., and . VarDial@COLING, page 11-20. Association for Computational Linguistics and Dublin City University, (2014)A Streamlined Method for Sourcing Discourse-level Argumentation Annotations from the Crowd., , and . NAACL-HLT (1), page 1790-1796. Association for Computational Linguistics, (2019)Combining Ontologies and Neural Networks for Analyzing Historical Language Varieties. A Case Study in Middle Low German., and . LREC, European Language Resources Association (ELRA), (2016)An Ontology-based Approach To Automatic Part-of-Speech Tagging Using Heterogeneously Annotated Corpora., and . NLPLOD@RANLP, page 23-32. INCOMA Ltd. Shoumen, BULGARIA, (2017)Distantly Supervised POS Tagging of Low-Resource Languages under Extreme Data Sparsity: The Case of Hittite., , , , , and . LaTeCH@ACL, page 95-104. Association for Computational Linguistics, (2017)Machine Translation and Automated Analysis of the Sumerian Language., , , and . LaTeCH@ACL, page 10-16. Association for Computational Linguistics, (2017)A Three-Step Model of Language Detection in Multilingual Ancient Texts., , , and . JLCL, 26 (2): 165-177 (2011)New Collection Announcement: Focused Retrieval Over the Web., , , , , , , and . SIGIR, page 701-704. ACM, (2016)