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Articulatory Analysis of Transparent Vowel /iː/ in Harmonic and Antiharmonic Hungarian Stems: Is There a Difference?

, , , , and . INTERSPEECH, page 3327-3331. ISCA, (2019)

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Development of a Large Spontaneous Speech Database of Agglutinative Hungarian Language., , , , , and . TSD, volume 8655 of Lecture Notes in Computer Science, page 424-431. Springer, (2014)Is Spoken Hungarian Low-resource?: A Quantitative Survey of Hungarian Speech Data Sets., , , , , , and . LREC/COLING, page 9382-9388. ELRA and ICCL, (2024)Word-Initial Irregular Phonation as a Function of Speech Rate and Vowel Quality in Hungarian., , , , and . ISSP, volume 10733 of Lecture Notes in Computer Science, page 134-145. Springer, (2017)Voicing Contrast of Intervocalic Plosives in Hungarian.. ICPhS, page 759-762. (2011)V-to-V Coarticulation Induced Acoustic and Articulatory Variability of Vowels: The Effect of Pitch-Accent., , , , and . INTERSPEECH, page 3317-3321. ISCA, (2019)BEA-Base: A Benchmark for ASR of Spontaneous Hungarian., , , , , and . LREC, page 1970-1977. European Language Resources Association, (2022)Articulatory Analysis of Transparent Vowel /iː/ in Harmonic and Antiharmonic Hungarian Stems: Is There a Difference?, , , , and . INTERSPEECH, page 3327-3331. ISCA, (2019)Relation of formants and subglottal resonances in Hungarian vowels., , , , and . INTERSPEECH, page 484-487. ISCA, (2009)Context and Speaker Dependency in the Relation of Vowel Formants and Subglottal Resonances - Evidence from Hungarian., , , and . INTERSPEECH, page 1901-1904. ISCA, (2011)