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Large Scale Collocation Data and Their Application to Japanese Word Processor Technology.

, , , and . COLING-ACL, page 694-698. Morgan Kaufmann Publishers / ACL, (1998)

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Processing Homonyms in the Kana-to-Kanji Conversion., , , and . COLING, page 1135-1138. (1996)Morfawk.ja: A Japanese Token Level Pattern Matching and Processing Language with Dependency Analysis., , , and . ICSCA, page 335-341. ACM, (2023)A Method for Quantifying the Risks of Human Error from Experiments with the Ship Bridge Simulator., , , , and . ICETET, page 86-92. IEEE, (2012)Common Performance Condition for Marine Accident - Experimental Approach., , , , and . ICETET, page 100-104. IEEE, (2012)Collocations as Word Co-ocurrence Restriction Data - An Application to Japanese Word Processor., , , and . LREC, European Language Resources Association, (2000)Evaluation of ship navigator's mental workload for ship handling based on salivary NO3-., , , , , , , , and . SMC, page 1531-1535. IEEE, (2012)Questionnaire Survey for Adapting Common Performance Conditions to Marine Accidents., , and . SMC, page 3339-3343. IEEE, (2013)Understanding human factors in long-distance vehicle operation., and . IFAC HMS, page 330-335. International Federation of Automatic Control, (2007)A study on navigator's performance in ship bridge simulator using heart rate variability., , , , , and . SMC, page 1520-1524. IEEE, (2012)Japanese Kana-to-Kanji Conversion Using Large Scale Collocation Data., , , and . PACLIC, page 295-302. Chinese and Oriental Languages Information Processing Society, (1998)