Unit 3 Consonants (1) Approaching consonants via anatomy and articulatory phonetics

Similar documents
LINGUISTICS 221 LECTURE #3 Introduction to Phonetics and Phonology THE BASIC SOUNDS OF ENGLISH

o Spectrogram: Laterals have weak formants around 250, 1200, and 2400 Hz.

Place and Manner of Articulation Sounds in English. Dr. Bushra Ni ma

It is important to understand as to how do we hear sounds. There is air all around us. The air carries the sound waves but it is below 20Hz that our

LINGUISTICS 221 LECTURE #6 Introduction to Phonetics and Phonology. Consonants (continued)

LINGUISTICS 130 LECTURE #4 ARTICULATORS IN THE ORAL CAVITY

Ling 205 Final Dec 2005 NAME ID Page 1 of 12 University of Alberta LING 205 LEC A1. Final Examination Tuesday, Dec.

Spoken language phonetics: Consonant articulation and transcription. LING 200 Spring 2006

Speech (Sound) Processing

IN THE UNITED STATES PATENT AND TRADEMARK OFFICE. For PROVISIONAL APPLICATION FOR LETTERS PATENT. Inventor: David Rexford. Logical Phonetic Alphabet

Sort of Alphabetic Table of IPA Characters (excluding the standard characters a-z, which you already know how to type)

Overview. Acoustics of Speech and Hearing. Source-Filter Model. Source-Filter Model. Turbulence Take 2. Turbulence

Consonant Perception test

Perceptual Organization and Pattern Recognition. Lecture 15

Acoustics of Speech and Environmental Sounds

Experimental Analysis of Voicing Contrast in Igbo Linda Chinelo Nkamigbo* DOI:

Def. - the process of exchanging information and ideas

Voicing Contrast of Stops in the Palestinian Arabic Dialect

Cleft Palate Speech-Components and Assessment Voice and Resonance Disorders-ASLS-563. Key Components of Cleft Palate Speech.

Downloaded on T04:25:43Z. Title. Abnormal patterns of tongue-palate contact in the speech of individuals with cleft palate

Sylvia Rotfleisch, M.Sc.(A.) hear2talk.com HEAR2TALK.COM

Speech Spectra and Spectrograms

Laryngeal Features and Sonorancy

how stopped air is released when released with puff of air = aspirated when release is unaspirated, captured air is released into vowel (i.e.

Bark and Hz scaled F2 Locus equations: Sex differences and individual differences

A PALATOGRAPHIC INVESTIGATION OF PLACE OF ARTICULATION IN KOREAN CORONAL OBSTRUENTS

ARTICULATION THERAPY FOR CHILDREN WITH CLEFT PALATE USING VISUAL ARTICULATORY MODELS AND ULTRASOUND BIOFEEDBACK

ASHA 2007 Boston, Massachusetts

This lecture. Acoustics. Speech production. Speech perception.

Speech Generation and Perception

RESEARCH ON SPOKEN LANGUAGE PROCESSING Progress Report No. 24 (2000) Indiana University

Lecture 5. Brief review and more exercises for consonants Vowels Even more exercises

SLHS 1301 The Physics and Biology of Spoken Language. Practice Exam 2. b) 2 32

The use of onomatopoeias to describe environmental sounds

Phonetics is the study of vocal sounds. Phonetics and flight safety - An orodental view point. Gp Capt K Ravishankar *, Air Cmde GP Singh VSM +

Research Article Measurement of Voice Onset Time in Maxillectomy Patients

Constriction Goals of Gestures

한국어 Hearing in Noise Test(HINT) 문장의개발

City, University of London Institutional Repository

Rachel Rees, University College London Cate Calder, Cued Speech Association UK

Evaluating the Clinical Effectiveness of EPG. in the Assessment and Diagnosis of Children with Intractable Speech Disorders

Automatic Judgment System for Chinese Retroflex and Dental Affricates Pronounced by Japanese Students

LIST OF FIGURES. viii

Syllabic position effects in articulation: Are word-medial and word-final codas equivalent?

Production of Stop Consonants by Children with Cochlear Implants & Children with Normal Hearing. Danielle Revai University of Wisconsin - Madison

Speech production: disordered EPG data

Effect of tones on voice onset time (VOT) in Cantonese aspirated stops. Title. Lam, Chung-ling; 林松齡

ACOUSTIC AND PERCEPTUAL PROPERTIES OF ENGLISH FRICATIVES

Exploiting visual information for NAM recognition

Minerva Access is the Institutional Repository of The University of Melbourne

Voice Aid Design Issues for Hearing Impaired

Effects of Multi-talker Noise on the Acoustics of Voiceless Stop Consonants in Parkinson's Disease

An MRI study of vocalic context effects and lip rounding in the production of English sibilants

A Senior Honors Thesis. Brandie Andrews

NIH Public Access Author Manuscript J Magn Reson Imaging. Author manuscript; available in PMC 2013 April 1.

Communication disorders in individuals with cleft lip and palate: An overview

CLEFT PALATE & MISARTICULATION

Efforts and coordination in the production of bilabial consonants

ACOUSTIC SIGNALS AS VISUAL BIOFEEDBACK IN THE SPEECH TRAINING OF HEARING IMPAIRED CHILDREN. Elizabeth E. Crawford. Master of Audiology

A SYMBOLIC SYSTEM FOR MULTI-PURPOSE DESCRIPTION OF THE MOUTH SHAPES

Speech Sound Disorders Alert: Identifying and Fixing Nasal Fricatives in a Flash

An Experimental Acoustic Study of Dental and Interdental Nonsibilant Fricatives in the Speech of a Single Speaker * Mark J. Jones

Outline.! Neural representation of speech sounds. " Basic intro " Sounds and categories " How do we perceive sounds? " Is speech sounds special?

Kerry Callahan Mandulak, PhD, CCC-SLP Department of Speech and Hearing Sciences Portland State University, Portland, OR

ACOUSTIC MOMENTS DATA

Introduction to Audio Forensics 8 th MyCERT SIG 25/04/2006

Phonetics in Complete Denture A Review

Acoustic analysis of occlusive weakening in Parkinsonian French speech

Speech habilitation of hard of hearing adolescents using electropalatography and ultrasound as evaluated by trained listeners

A psychoacoustic method for studying the necessary and sufficient perceptual cues of American English fricative consonants in noise

11 Music and Speech Perception

Does Wernicke's Aphasia necessitate pure word deafness? Or the other way around? Or can they be independent? Or is that completely uncertain yet?

Clinical skills training for speech and language therapists: using the evidence-base to treat speech sound disorders using electropalatography (EPG)

RESEARCH ON SPOKEN LANGUAGE PROCESSING Progress Report No. 22 (1998) Indiana University. Speech Production by Users of Cochlear Implants:A Review 1

School of Health Sciences Department or equivalent Division of Language and Communication Science UK credits 15 ECTS 7.5 Level 7

A Longitudinal Study of the Acquisition of English Speech Sounds by a Minimally Verbal Child with Autism Spectrum Disorder: A Case Study

Classification of Fricatives Using Novel Modulation Spectrogram Based Features

Asia Pacific Journal of Research ISSN (Print) : ISSN (Online) :

The perception of high frequency sibilants in Hungarian male speech

Tyler Phillips Levee M.Cl.Sc (SLP) Candidate University of Western Ontario: School of Communication Sciences and Disorders

Assignment #4: Speech Target /p/ By: Robyn Black STAGE MODALITY STRATEGIES/TECHNIQUES MATERIALS

Statistical descriptors in the characterization of some Brazilian Portuguese fricatives: analysis of spectral moments

Audio-Visual Integration: Generalization Across Talkers. A Senior Honors Thesis

Topics in Linguistic Theory: Laboratory Phonology Spring 2007

Formant-cavity affiliation in sibilant fricatives. Martine Toda, Shinji Maeda and Kiyoshi Honda

FREQUENCY. Prof Dr. Mona Mourad Dr.Manal Elbanna Doaa Elmoazen ALEXANDRIA UNIVERSITY. Background

Developmental communication disorders

Made available courtesy of the Acoustical Society of America:

Acoustic and Spectral Characteristics of Young Children's Fricative Productions: A Developmental Perspective

Production of word-initial fricatives of Mandarin Chinese in prelingually deafened children with cochlear implants

Associations between speech features and phenotypic severity in Treacher Collins syndrome

ON THE DESIGN OF VISUAL FEEDBACK FOR THE REHABILITATION OF HEARING-IMPAIRED SPEECH

The pattern of tongue pressure against the palate during articulating glossal sounds in normal subjects and glossectomy patients

The Effects of Simultaneous Communication on Production and Perception of Speech

Language Speech. Speech is the preferred modality for language.

Resonance Disorders & Velopharyngeal Dysfunction

SPEECH AND SWALLOWING FUNCTION AFTER RECONSTRUCTION WITH A RADIAL FOREARM FREE FLAP OR A PECTORALIS MAJOR FLAP

ACOUSTIC ANALYSIS AND PERCEPTION OF CANTONESE VOWELS PRODUCED BY PROFOUNDLY HEARING IMPAIRED ADOLESCENTS

Audiology Curriculum Foundation Course Linkages

Resonance Disorders and Velopharyngeal Dysfunction: Evaluation and Treatment

Transcription:

Unit 3 Approaching consonants via anatomy and articulatory phonetics English Phonetics lecture given on 26 brumaire de l an CCXXIII de la République / 17 November 2014 Angewandte Sprachwissenschaft Universität des Saarlandes 3.1

English Phonetics: Unit 3: [ˈɪŋɡlɪʃ fəˈnetɪks ˈjuːnɪt ˈθɾiː] [ˈkʰɒnsənən(t)s ˈwʌn] Approaching consonants via anatomy and articulatory phonetics [əˈpɹ ə ʊʧɪŋ ˈkʰɒnsənən(t)s ˌva ɪəɹ əˈnætəmi n ɑːˈtʰɪkjələtɹ i fəˈnetɪks] [ˈɹɒbət ˈspens] based on material by William Barry and Ingmar Steiner [ˈbe ɪst ɒn məˈtʰɪ əɹiəɫ ba ɪ ˈwɪljəm ˈbæɹi ən ˈɪŋmɑːɹ ˈsta ɪnɝ[ Fachrichtung 4.6, Universität des Saarlandes [ˈfaxʁɪçtʊŋ ˈfɪ ɐ ˈpʰʊŋkt ˈzɛks ˌʔuˑnivɛ ɐziˈtʰɛːt dɛs ˈza ɐlandəs] le 26 brumaire de l an ccxxɪɪɪ de la République / 17 November 2014 [lə vɛ t.si bʁy.mɛːʁ də lɑ dø.sɑ.vɛ t.tʁwɑ də la ʁe.py.blik][ˈsevn tiːn θ əv nəˈvembə ˈtw enti fɔːˈtʰiːn] 3.2

Our topic for the next four meetings: Over this four-lecture block we shall be looking at consonants and vowels in more detail. 3.3

Our topic for the next four meetings: Over this four-lecture block we shall be looking at consonants and vowels in more detail. We shall begin with consonants, approaching them (this week) via anatomy and articulatory phonetics. 3.3

Our topic for the next four meetings: Over this four-lecture block we shall be looking at consonants and vowels in more detail. We shall begin with consonants, approaching them (this week) via anatomy and articulatory phonetics. Next week we shall switch our attention temporarily to vowels, approaching them via physics and acoustic phonetics. 3.3

Our topic for the next four meetings: Over this four-lecture block we shall be looking at consonants and vowels in more detail. We shall begin with consonants, approaching them (this week) via anatomy and articulatory phonetics. Next week we shall switch our attention temporarily to vowels, approaching them via physics and acoustic phonetics. We shall then proceed to look at vowels in more detail, taking a constrastive view of the vowel systems of English and German. 3.3

Our topic for the next four meetings: Over this four-lecture block we shall be looking at consonants and vowels in more detail. We shall begin with consonants, approaching them (this week) via anatomy and articulatory phonetics. Next week we shall switch our attention temporarily to vowels, approaching them via physics and acoustic phonetics. We shall then proceed to look at vowels in more detail, taking a constrastive view of the vowel systems of English and German. Finally, we shall return to consonants, doing a contrastive study of the consonant systems of English and German. 3.3

The human vocal tract (after Catford) Figure: The vocal tract as a machine (J.C. Catford, Fundamental Problems of Phonetics, Bloomington: Indiana University Press, 1977) 3.4

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: PLACE of (the horizontal dimension) specifying upper (passive) and (if necessary, also:) lower (active) articulators 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: PLACE of (the horizontal dimension) specifying upper (passive) and (if necessary, also:) lower (active) articulators bilabial, labiodental, dental, alveolar, postalveolar, retroflex, palatal, velar, uvular, pharyngeal, glottal 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: PLACE of (the horizontal dimension) specifying upper (passive) and (if necessary, also:) lower (active) articulators bilabial, labiodental, dental, alveolar, postalveolar, retroflex, palatal, velar, uvular, pharyngeal, glottal more delicately: apico-alveolar, lamino-alveolar, (antero)dorsal-palatal, (postero)dorsal-velar, etc. 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: PLACE of (the horizontal dimension) specifying upper (passive) and (if necessary, also:) lower (active) articulators bilabial, labiodental, dental, alveolar, postalveolar, retroflex, palatal, velar, uvular, pharyngeal, glottal more delicately: apico-alveolar, lamino-alveolar, (antero)dorsal-palatal, (postero)dorsal-velar, etc. MANNER of (the vertical ) dimension 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: PLACE of (the horizontal dimension) specifying upper (passive) and (if necessary, also:) lower (active) articulators bilabial, labiodental, dental, alveolar, postalveolar, retroflex, palatal, velar, uvular, pharyngeal, glottal more delicately: apico-alveolar, lamino-alveolar, (antero)dorsal-palatal, (postero)dorsal-velar, etc. MANNER of (the vertical ) dimension plosive, nasal, trill, tap or flap, fricative, lateral fricative, approximant, lateral approximant (and note Eckert and Barry s way of classifying these into obstruents and sonorants ) 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: PLACE of (the horizontal dimension) specifying upper (passive) and (if necessary, also:) lower (active) articulators bilabial, labiodental, dental, alveolar, postalveolar, retroflex, palatal, velar, uvular, pharyngeal, glottal more delicately: apico-alveolar, lamino-alveolar, (antero)dorsal-palatal, (postero)dorsal-velar, etc. MANNER of (the vertical ) dimension plosive, nasal, trill, tap or flap, fricative, lateral fricative, approximant, lateral approximant (and note Eckert and Barry s way of classifying these into obstruents and sonorants ) VOICING 3.5

Consonants (dt. Mitlaute) can be looked at in terms of their, their acoustics, or their auditory perception Their can be described in terms of: PLACE of (the horizontal dimension) specifying upper (passive) and (if necessary, also:) lower (active) articulators bilabial, labiodental, dental, alveolar, postalveolar, retroflex, palatal, velar, uvular, pharyngeal, glottal more delicately: apico-alveolar, lamino-alveolar, (antero)dorsal-palatal, (postero)dorsal-velar, etc. MANNER of (the vertical ) dimension plosive, nasal, trill, tap or flap, fricative, lateral fricative, approximant, lateral approximant (and note Eckert and Barry s way of classifying these into obstruents and sonorants ) VOICING voiceless [stimmlos] or voiced [stimmhaft] 3.5

3.6

3.7

Can you make the following sounds? 3.8

Can you make the following sounds? a voiceless velar fricative 3.8

Can you make the following sounds? a voiceless velar fricative a voiceless uvular fricative 3.8

Can you make the following sounds? a voiceless velar fricative a voiceless uvular fricative a voiceless uvular plosive 3.8

Can you make the following sounds? a voiceless velar fricative a voiceless uvular fricative a voiceless uvular plosive a voiced velar nasal 3.8

Can you make the following sounds? a voiceless velar fricative a voiceless uvular fricative a voiceless uvular plosive a voiced velar nasal a voiced bilabial fricative 3.8

Can you make the following sounds? a voiceless velar fricative a voiceless uvular fricative a voiceless uvular plosive a voiced velar nasal a voiced bilabial fricative a voiced palatal approximant 3.8

Can you make the following sounds? a voiceless velar fricative a voiceless uvular fricative a voiceless uvular plosive a voiced velar nasal a voiced bilabial fricative a voiced palatal approximant a voiced labiodental approximant 3.8

Use voicing as well as place and manner of to describe the consonant sounds indicated by the framed graphemes or by the framed IPA symbols: 3.9

Use voicing as well as place and manner of to describe the consonant sounds indicated by the framed graphemes or by the framed IPA symbols: < th is na ti on has enou gh f i sh to feed itself > 3.9

Use voicing as well as place and manner of to describe the consonant sounds indicated by the framed graphemes or by the framed IPA symbols: < th is na ti on has enou gh f i sh to feed itself > [ ɪn m eməɹi ə v ɔːl wɪmɪn ɹeɪ p t ɪn ɔːl w ɔːz ] 3.9

Use voicing as well as place and manner of to describe the consonant sounds indicated by the framed graphemes or by the framed IPA symbols: < th is na ti on has enou gh f i sh to feed itself > [ ɪn m eməɹi ə v ɔːl wɪmɪn ɹeɪ p t ɪn ɔːl w ɔːz ] Read Eckert and Barry pp 36 39 on manner of and on the voiceless/voiced opposition 3.9

Use voicing as well as place and manner of to describe the consonant sounds indicated by the framed graphemes or by the framed IPA symbols: < th is na ti on has enou gh f i sh to feed itself > [ ɪn m eməɹi ə v ɔːl wɪmɪn ɹeɪ p t ɪn ɔːl w ɔːz ] Read Eckert and Barry pp 36 39 on manner of and on the voiceless/voiced opposition We ll follow Eckert and Barry in talking about fortis consonants (stronger, like [p]) and lenis consonants (weaker, like [b]) 3.9

Language Initial (e.g.) Final (e.g.) What happens if you get it wrong? Dutch dark lekker dark wel you sound foreign German light liegen light Milch you sound foreign English light leaf dark milk you sound foreign Russian dark лук dark угол you risk being ( Zwiebel ) ( Ecke ) totally or or and light люк light уголь utterly ( Luk(e) ) ( Kohle ) misunderstood 3.10