Physics and music: the science of musical sound
"This foundational text is written for students who want to go beyond the perceptual stage of music to learn how musical sound is created and perceived. It surveys a wide range of topics related to acoustics, beginning with a brief history of the art and science of music. Succeeding chapters ex...
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Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Mineola
Dover
2014
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Schriftenreihe: | Dover books on physics
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Zusammenfassung: | "This foundational text is written for students who want to go beyond the perceptual stage of music to learn how musical sound is created and perceived. It surveys a wide range of topics related to acoustics, beginning with a brief history of the art and science of music. Succeeding chapters explore the general principles of sound, musical scales, the primary ways in which sound can be generated, the characteristics of instruments, the use of mechanical and electronic recording devices, hi-fi stereophonic and quadraphonic sound, the design of electronic musical instruments, and architectural acoustics. Comprehensive yet accessible, Physics and Music includes over 300 diagrams, photographs, and tables. Each chapter concludes with questions, problems, and projects, in addition to references for further study. 1980 edition. ".. |
Beschreibung: | Reprint. Previously published: Philadelphia : Saunders College/Holt, Rinehart and Winston, c1980. - Includes bibliographical references (pages 415-417) and index |
Beschreibung: | 422 S. zahlr. Ill. und graph. Darst. 24 cm |
ISBN: | 9780486779348 0486779343 |
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264 | 1 | |a Mineola |b Dover |c 2014 | |
300 | |a 422 S. |b zahlr. Ill. und graph. Darst. |c 24 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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490 | 0 | |a Dover books on physics | |
500 | |a Reprint. Previously published: Philadelphia : Saunders College/Holt, Rinehart and Winston, c1980. - Includes bibliographical references (pages 415-417) and index | ||
520 | |a "This foundational text is written for students who want to go beyond the perceptual stage of music to learn how musical sound is created and perceived. It surveys a wide range of topics related to acoustics, beginning with a brief history of the art and science of music. Succeeding chapters explore the general principles of sound, musical scales, the primary ways in which sound can be generated, the characteristics of instruments, the use of mechanical and electronic recording devices, hi-fi stereophonic and quadraphonic sound, the design of electronic musical instruments, and architectural acoustics. Comprehensive yet accessible, Physics and Music includes over 300 diagrams, photographs, and tables. Each chapter concludes with questions, problems, and projects, in addition to references for further study. 1980 edition. ".. | ||
650 | 7 | |a SCIENCE / Physics |2 bisacsh | |
650 | 4 | |a Musik | |
650 | 4 | |a Music |x Acoustics and physics | |
650 | 4 | |a Musical instruments |x Construction | |
650 | 4 | |a Sound |x Recording and reproducing | |
650 | 4 | |a Architectural acoustics | |
650 | 4 | |a SCIENCE / Physics | |
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Datensatz im Suchindex
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---|---|
adam_text | CONTENTS
Preface v
Part One
The Nature of Sound
1
1
THE ART AND SCIENCE OF MUSIC
3
1.1
Music of the Spheres
3
1.2
The Science of Acoustics
4
1.3
Subjective and Objective Descriptions
5
1.4
Sound
6
1.5
The Modern Metric System of Units
6
1.6
New Vocabularies
7
1.7
Projects
7
2
VIBRATING SYSTEMS
9
2.1
Periodic Motion
9
2.2
Frequency of Vibration
11
2.3
Time Graphs
12
2.4
Simple Harmonic Motion
13
2.5
Phase Angles
14
2.6
Damped Vibrations
15
2.7
Laboratory Experiments
16
3
TRANSVERSE WAVES
18
3.1
Classification of Waves
18
3.2
Traveling Transverse Waves
19
3.3
Wavelength
20
3.4
The Wave Speed
22
3.5
Standing Transverse Waves
23
3.6
Laboratory Experiment
24
3.7
Shop Projects
25
4
LONGITUDINAL WAVES
28
4.1
Traveling Longitudinal Waves
28
4.2
Standing Longitudinal Waves
30
4.3
Pressure Nodes and Antinodes
32
4.4
Laboratory Experiment
32
4.5
Shop Projects
34
5
SOUND TRANSMISSION
37
5.1
Sound Waves
37
5.2
The Speed of Sound
39
5.3
Reflection of Sound Waves
41
5.4
Refraction of Sound Waves
42
5.5
Acoustic Impedance
43
56
Impedance-matching
45
5.7
Laboratory Experiment
46
6
RESONANCE, BEATS, AND THE
DOPPLER
EFFECT
51
6.1
Resonance
51
6.2
Cavity Resonators
54
6.3
Acoustical Filters
55
6.4
Resonance Damping
56
6.5
Beats
57
6.6
The
Doppler
Effect
59
6.7
Laboratory Experiment
61
7
DIFFRACTION AND INTERFERENCE
63
7.1
Diffraction of Sound Waves
63
7.2
Directionality of Loudspeakers
65
7.3
Public-Address Speaker Arrays
66
7.4
Acoustical Interference
66
7.5
Interference in Stereophonic Sound
72
7.6
Laboratory Experiment
72
Part Two
Hearing and Harmony
77
8
HARMONICS AND WAVE COMBINATIONS
78
8.1
Wave Analysis
78
8.2
Partials
and Harmonics
79
8.3
Two Pure Tones in Unison
80
8.4
Many Vibrations with Random Phases
82
8.5
The Chorus Effect
83
8.6
Composition of First and Second Harmonics
84
8.7
Two, Three, and Four Harmonics
86
8.8
Wave Generation
86
8.9
Sound Spectra
90
8.10
Formants
91
8.11
Vibrato
93
9
SOUND INTENSITY AND HEARING
97
9.1
The Human Ear
97
9.2
Sound Intensity
/ 101
9.3
Intensity versus Loudness
103
9.4
Sound Intensity Levels
103
9.5
The Inverse Square Law
107
9.6
Sound Pressure Levels
109
10
PERCEPTION OF LOUDNESS
113
10.1
Sound Loudness Level
113
10.2
Adding Sounds of the Same Frequency
115
10.3
Frequency Discrimination and the Critical Band
116
10.4
Subjective Loudness
118
10.5
Masking
120
10.6
Hearing Losses
123
11
VIBRATING STRINGS
127
11.1
The Fundamental Frequency
127
11.2
Modes of String Vibration
128
11.3
Mersenne s Rules
133
11.4
The Theory of Vibrating Strings
133
11.5
Laboratory Experiment
136
12
VIBRATING AIR COLUMNS
138
12.1
Air Column Resonance
138
12.2
Vibration Modes in Pipes
140
12.3
Pressure Nodes and Antinodes
141
12.4
Frequency of a Vibrating Gas Column
142
12.5
Fluid Friction
145
12.6
Edge Tones
147
12.7
The Pipe Organ
148
12.8
Pipe Dimensions
149
12.9
The Hummer
151
13
VIBRATING
В
ARS,
PLATES, AND MEMBRANES
154
13.1
Vibrating Bars
154
13.2
Tuned Bars
157
13.3
Longitudinal and
Torsionai
Vibrations
159
13.4
Vibrating Plates
160
13.5
Bells
162
13.6
Vibrating Membranes
163
13.7
Laboratory Experiment
165
14
MUSICAL INTERVALS AND SCALES
168
14.1
Frequency and Pitch
168
14.2
The Pythagorean Scale
170
14.3
Pitch Nomenclature
172
14.4
The Just Diatonic Scale
173
14.5
A Standard of Pitch
174
14.6
The Chromatic Scale
175
14.7
The Equal-tempered Scale
176
14.8
Frequency Ratio
178
14.9
Melody and Memory
179
14.10
Perception of Pitch
179
14.11
Intonation
180
14.12
Notes
181
15
COMBINATION TONES AND AURAL
HARMONICS
184
15.1
Combination Tones
184
15.2
Nonlinear Systems
186
15.3
Aural Harmonics
188
15.4
Phase Changes Can Be Heard
189
15.5
Periodicity
Tones:
The Missing
Fundamental 190
15.6
Consonant and Dissonant Dyads
193
15.7
Chords
194
15.8
Periodicity Tones in Dyads and Chords
Part Three
Musical Instruments
201
16
STRINGED INSTRUMENT DESIGN
203
16.1
Instrument Design
203
16.2
The Vibrating String
204
16.3
Few-String Instruments
205
16.4
The Violin
207
16.5
Timbre of a Vibrating String
207
16.6
Selecting Harmonics
208
16.7
Percussive String Excitation
209
16.8
Bowing
210
16.9
Body Resonance
211
16.10
Cavity Resonance
213
16.11
The Energy Chain
213
17
STRINGED INSTRUMENTS
216
216
218
221
223
223
225
226
227
228
17.10
Piano Characteristics
230
18
WIND INSTRUMENTS
232
233
236
237
239
241
242
17.1
The
Violin Family
17.2
The
Guitar
17.3
The
Banjo
17.4
The
Sitar
17.5
The
Harp
17.6
The
Harpsichord
17.7
The
Pianoforte
17.8
The
Concert Grand Piano
17.9
The
Piano Action
18.1
The Flute
18.2
Reeds
18.3
The Clarinet
18.4
The Register Hole
18.5
Conical Bores
18.6
Conical Wind Instruments
18.7 The Theater
Organ
243
18.8
The Ocarina
245
18.9
Materials
245
18.10
The Energy Chain
246
19
BRASSES AND THE HUMAN VOICE
248
19.1
Modern Horn Design
248
19.2
The Mouthpiece
249
19.3
The Bell
250
19-4
The Pedal Tone
252
19.5
The
Alpenhorn
and Bugle
252
19.6
The Trombone
254
19.7
The Trumpet
255
19.8
Compensation Crooks
257
19.9
Other Brasses
258
19.10
Brasses versus Woodwinds
258
19.11
The Human Voice
259
19.12
Vowels
264
1913
Semivowels and Consonants
265
19.14
The Singing Voice
267
20
PERCUSSION INSTRUMENTS
269
20.1
Percussive Notes
269
20.2
Types of Percussion Instruments
270
20.3
Tuned Bar Instruments
270
20.4
Marimba and Vibraphone
271
20.5
Tuned Tubes, Rods, and Plates
273
20.6
Indefinite Pitch Vibrators
274
20.7
Shaking, Stroking, and Scraping
275
20.8
Drums
276
20.9
Tuned Membranes
277
20.10
Tympani
278
20.11
Drum Excitation
279
Part Four
Electronic Sound Systems
283
21
HIGH-FIDELITY SOUND REPRODUCTION
285
21.1
Electronic Sound Systems
285
21.2
Transducers and Amplifiers
286
21.3
Electronic Terminology
287
21.4
Frequency Response
289
21.5
Tone Control
289
21.6
Filters
290
21.7
Multichannel Equalization
291
21.8
Amplitude Response
292
21.9
Harmonic Distortion
293
21.10
Intermodulation
Distortion
293
21.11
Noise
294
21.12
Output
295
22
TRANSDUCERS
298
298
300
302
304
305
307
308
309
309
22.10
Speaker System Design
310
23
SOUND RECORDING AND TRANSMISSION
313
23.1
Phonograph Records
313
23.2
Magnetic Tape
317
23.3
Compression-Expansion Systems
319
23.4
Radio Transmission
320
23.5 FM
Multiplex Stereo
322
24
ELECTRONIC MUSIC
325
24.1
Electronically Amplified Instruments
325
24.2
Electronic Stringed Instruments
325
24.3
Electronic Modifiers
328
24.4
Electronic Organs
328
24.5
Electronic Instruments
329
24.6
Modular Synthesizers
331
24.7
Computer Music
334
22.1
Microphones
22.2
Directional Response
22.3
Loudspeakers
22.4
Multispeaker Systems
22.5
Horn-Type Speakers
22.6
Loudspeaker Enclosures
22.7
Infinite Baffle Enclosures
22.8
Ported Enclosures
22.9
Folded Horns
25
STEREOPHONIC SOUND
338
25.1
Directional Perception of Sound
338
25.2
Other Audio Cues
339
25.3
Distance Perception
340
25.4
Stereophonic (Two-Channel) Reproduction
341
25.5
Quadraphonic (Four-Channel) Reproduction
343
Part Five
Acoustical Architecture
349
26
REFLECTION, ABSORPTION, AND
REVERBERATION
3 51
26.1
Noise
351
26.2
Surfaces
352
26.3
Sound Insulation
353
26.4
Reflection and Absorption
355
26.5
Standing Waves
357
26.6
Echoes
359
26.7
Transient Reverberation
360
26.8
Sustained Reverberation
360
27
ACOUSTICAL PARAMETERS
363
27.1
Reverberation in a Concert Hall
364
27.2
Determination of Reverberation Time
365
27.3
Total Absorbing Area
365
27.4
A Sample Calculation
367
27.5
Characteristics of Reverberation
368
27.6
Spacial Distribution of Sound
369
27.7
The Stage House Environment
370
27.8
Extraneous Sound
370
27.9
Optimization of Design
370
28
ARCHITECTURAL DESIGN
372
28.1
Concert Halls of the Past
372
28.2
The Open-Air Theater
373
28.3
Sizes of Concert Halls
374
28.4
Shapes of Concert Halls
376
28.5
Reflecting Surfaces
379
28.6
Electronic Amplification
380
28.7
The Sydney Opera House
382
APPENDIX
I
BASIC
PHYSICAL PRINCIPLES
385
Al.l Fundamental Units
385
Al.
2
Speed and Velocity
386
A1.3 Distance Traveled
386
A
1.4
Acceleration
387
A
1.5
Negative Acceleration
388
A
1.6
Free Fall
389
A
1.7
Mass and Inertia
390
Al.
8
Force Equation
391
A
1.9
Weight and Mass
392
ALIO
Action and Reaction
393
ALII Vector Addition
395
ALI
2
Work
397
ALI
3
Potential Energy
398
ALI
4
Kinetic Energy
398
ALI
5
Friction
399
ALI
6
Power
401
ALI
7
Pressure
402
ALI
8
Atmospheric Pressure
403
ALI
9
Radians
404
A1.20 Conversion Factors
405
APPENDIX II LOGARITHMS AND POWERS OF TEN
408
A2.1 Use of Exponents
408
A2.2 Multiplication and Division of Large and Small
Numbers
409
A2-3 Logarithms
410
APPENDIX III ABSORPTION COEFFICIENTS
413
BIBLIOGRAPHY
415
ANSWERS TO ODD-NUMBERED PROBLEMS
418
Index
423
|
any_adam_object | 1 |
author | White, Harvey Elliott 1902-1988 White, Donald H. |
author_GND | (DE-588)139745548 |
author_facet | White, Harvey Elliott 1902-1988 White, Donald H. |
author_role | aut aut |
author_sort | White, Harvey Elliott 1902-1988 |
author_variant | h e w he hew d h w dh dhw |
building | Verbundindex |
bvnumber | BV042056560 |
callnumber-first | M - Music |
callnumber-label | ML3805 |
callnumber-raw | ML3805 |
callnumber-search | ML3805 |
callnumber-sort | ML 43805 |
callnumber-subject | ML - Literature on Music |
ctrlnum | (OCoLC)894934125 (DE-599)BVBBV042056560 |
dewey-full | 781.2 |
dewey-hundreds | 700 - The arts |
dewey-ones | 781 - General principles and musical forms |
dewey-raw | 781.2 |
dewey-search | 781.2 |
dewey-sort | 3781.2 |
dewey-tens | 780 - Music |
discipline | Musikwissenschaft |
format | Book |
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id | DE-604.BV042056560 |
illustrated | Illustrated |
indexdate | 2024-07-10T01:11:35Z |
institution | BVB |
isbn | 9780486779348 0486779343 |
language | English |
lccn | 013049049 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-027497534 |
oclc_num | 894934125 |
open_access_boolean | |
owner | DE-12 |
owner_facet | DE-12 |
physical | 422 S. zahlr. Ill. und graph. Darst. 24 cm |
publishDate | 2014 |
publishDateSearch | 2014 |
publishDateSort | 2014 |
publisher | Dover |
record_format | marc |
series2 | Dover books on physics |
spelling | White, Harvey Elliott 1902-1988 Verfasser (DE-588)139745548 aut Physics and music the science of musical sound Harvey E. White ; Donald H. White Mineola Dover 2014 422 S. zahlr. Ill. und graph. Darst. 24 cm txt rdacontent n rdamedia nc rdacarrier Dover books on physics Reprint. Previously published: Philadelphia : Saunders College/Holt, Rinehart and Winston, c1980. - Includes bibliographical references (pages 415-417) and index "This foundational text is written for students who want to go beyond the perceptual stage of music to learn how musical sound is created and perceived. It surveys a wide range of topics related to acoustics, beginning with a brief history of the art and science of music. Succeeding chapters explore the general principles of sound, musical scales, the primary ways in which sound can be generated, the characteristics of instruments, the use of mechanical and electronic recording devices, hi-fi stereophonic and quadraphonic sound, the design of electronic musical instruments, and architectural acoustics. Comprehensive yet accessible, Physics and Music includes over 300 diagrams, photographs, and tables. Each chapter concludes with questions, problems, and projects, in addition to references for further study. 1980 edition. ".. SCIENCE / Physics bisacsh Musik Music Acoustics and physics Musical instruments Construction Sound Recording and reproducing Architectural acoustics SCIENCE / Physics Physik (DE-588)4045956-1 gnd rswk-swf Musikinstrument (DE-588)4040851-6 gnd rswk-swf Musik (DE-588)4040802-4 gnd rswk-swf Klang (DE-588)4030933-2 gnd rswk-swf Musik (DE-588)4040802-4 s Musikinstrument (DE-588)4040851-6 s Klang (DE-588)4030933-2 s Physik (DE-588)4045956-1 s DE-604 White, Donald H. Verfasser aut Digitalisierung BSB Muenchen - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027497534&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | White, Harvey Elliott 1902-1988 White, Donald H. Physics and music the science of musical sound SCIENCE / Physics bisacsh Musik Music Acoustics and physics Musical instruments Construction Sound Recording and reproducing Architectural acoustics SCIENCE / Physics Physik (DE-588)4045956-1 gnd Musikinstrument (DE-588)4040851-6 gnd Musik (DE-588)4040802-4 gnd Klang (DE-588)4030933-2 gnd |
subject_GND | (DE-588)4045956-1 (DE-588)4040851-6 (DE-588)4040802-4 (DE-588)4030933-2 |
title | Physics and music the science of musical sound |
title_auth | Physics and music the science of musical sound |
title_exact_search | Physics and music the science of musical sound |
title_full | Physics and music the science of musical sound Harvey E. White ; Donald H. White |
title_fullStr | Physics and music the science of musical sound Harvey E. White ; Donald H. White |
title_full_unstemmed | Physics and music the science of musical sound Harvey E. White ; Donald H. White |
title_short | Physics and music |
title_sort | physics and music the science of musical sound |
title_sub | the science of musical sound |
topic | SCIENCE / Physics bisacsh Musik Music Acoustics and physics Musical instruments Construction Sound Recording and reproducing Architectural acoustics SCIENCE / Physics Physik (DE-588)4045956-1 gnd Musikinstrument (DE-588)4040851-6 gnd Musik (DE-588)4040802-4 gnd Klang (DE-588)4030933-2 gnd |
topic_facet | SCIENCE / Physics Musik Music Acoustics and physics Musical instruments Construction Sound Recording and reproducing Architectural acoustics Physik Musikinstrument Klang |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027497534&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT whiteharveyelliott physicsandmusicthescienceofmusicalsound AT whitedonaldh physicsandmusicthescienceofmusicalsound |