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Introduction to Acoustics

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15.59 F.G. Friedlander: On the oscillation of the bowed<br />

string, Proc. Cambridge Phil. Soc. 49, 516–530<br />

(1953)<br />

15.60 M.E. McIntyre, J. Woodhouse: On the fundamentals<br />

of bowed string dynamics, Acustica 43, 93–108<br />

(1979)<br />

15.61 J. Woodhouse: On the playability of violins, Part<br />

II: Minimum bow force and transients, Acustica 78,<br />

137–153 (1993)<br />

15.62 M.E. McIntyre, R.T. Schumacher, J. Woodhouse:<br />

Aperiodicity in bowed-string motion: On the differential<br />

slipping mechanism, Acustica 49, 13–32<br />

(1981)<br />

15.63 R.T. Schumacher: Oscillations of bowed strings, J.<br />

Acoust. Soc. Am. 43, 109–120 (1979)<br />

15.64 K. Guettler: On the creation of the Helmholtz motion<br />

in bowed strings, Acustica 88, 2002 (2002)<br />

15.65 P.M. Galluzzo: On the Playability of stringed<br />

instruments, PhD Thesis (Cambridge University,<br />

Cambridge 2003)<br />

15.66 J.H. Smith, J. Woodhouse: The tribology of rosin, J.<br />

Mech. Phys. Solids 48, 1633–1681 (2000)<br />

15.67 W. Reinicke: Dissertation, Institute for Technical<br />

<strong>Acoustics</strong> (Technical University of Berlin, Berlin<br />

1973)<br />

15.68 J. Woodhouse, R.T. Schumacher, S. Garoff: Reconstruction<br />

of bowing point friction force in a bowed<br />

string, J. Acoust. Soc. Am. 108, 357–368 (2000)<br />

15.69 J.H. Smith: Stick-slip vibration and its constitutive<br />

laws, PhD thesis (Cambridge University, Cambridge<br />

1990)<br />

15.70 J. Woodhouse: Bowed string simulation using<br />

a thermal friction model, Acustica 89, 355–368<br />

(2003)<br />

15.71 W. Reinicke, L. Cremer: Application of holographic<br />

interferometry <strong>to</strong> the bodies of sting instruments,<br />

J. Acoust. Soc. Am. 48, 988–992 (1970)<br />

15.72 J. Woodhouse: data kindly provided for this chapter<br />

15.73 H. Dünnewald: Ein erweitertes Verfahren zur<br />

objektiven Bestimmung der Klangqualität von Violinen,<br />

Acustica 71, 269–276 (1990), reprinted in<br />

English as Deduction of objective quality parameters<br />

on old and new violins, J. Catgut Acoust. Soc.<br />

2nd Ser. 1(7) 1-5 (1991), included in Hutchins [15.27,<br />

Vol 1]<br />

15.74 E.V. Jansson: Admittance measurements of 25 high<br />

quality violins, Acta Acustica 83, 337–341 (1997)<br />

15.75 E.V. Jansson: Violin frequency response - bridge<br />

mobility and bridge feet distance, Appl. Acoust.<br />

65, 1197–1205 (2004)<br />

15.76 J. Woodhouse: On the "bridge hill" of the violin,<br />

Acustica 91, 155–165 (2005)<br />

15.77 J.A. Moral, E.V. Jansson: Eigenmodes, input admittance<br />

and the function of the violin, Acustica 50,<br />

329–337 (1982)<br />

Musical <strong>Acoustics</strong> References 663<br />

15.78 M. Hacklinger: Violin timbre and bridge frequency<br />

response, Acustica 39, 324–330 (1978)<br />

15.79 D. Gill: The Book of the Violin, ed. by D. Gill (Phaedon,<br />

Oxford 1984) p. 11, Prologue<br />

15.80 C.E. Gough: The theory of string resonances on<br />

musical instruments, Acustica 49, 124–141(1981)<br />

15.81 J. Woodhouse: On the synthesis of guitar plucks,<br />

Acustica 89, 928–944 (2003)<br />

15.82 J. Woodhouse: Plucked guitar transients: comparison<br />

of measurements and synthesis, Acustica 89,<br />

945–965 (2003)<br />

15.83 G. Weinreich: Coupled piano strings, J. Acoust. Soc.<br />

Am. 62, 1474–1484 (1977)<br />

15.84 C.G.B. Baker, C.M. Thair, C.E. Gough: A pho<strong>to</strong>detec<strong>to</strong>r<br />

for measuring resonances of violin strings,<br />

Acustica 44, 70 (1980)<br />

15.85 F. Savart: Mémoires sur le construction des Instruments<br />

à Cordes et à Archet (Deterville, Paris 1819),<br />

See also the brief summary and references <strong>to</strong> modern<br />

translations of Savart’s research in Hutchins<br />

15.26 Part 1, page 8<br />

15.86 M.E. McIntyre, J. Woodhouse: On measuring the<br />

elastic and damping of orthotropic sheet materials,<br />

Acta. Metall. 36, 1397–1416 (1988)<br />

15.87 M.D. Waller: Vibrations of free rectangular plates,<br />

Proc. Phys. Soc. London B 62, 277–285 (1949)<br />

15.88 A.W. Leissa: Vibration of Plates (NASA SP-160,<br />

Washing<strong>to</strong>n 1993), Reprinted by Acoust. Soc. Am.,<br />

Woodbury 1993<br />

15.89 C. Hutchins: The <strong>Acoustics</strong> of Violin Plates, Sci. Am.<br />

1, 71–186 (1981)<br />

15.90 B.E. Richardson, G.W. Roberts: The adjustment of<br />

mode frequencies in guitars: a study by means<br />

of holographic interferometry and finite element<br />

analysis. SMAC 83 (Royal Swedish Academy of Music,<br />

S<strong>to</strong>ckholm 1985) pp. 285–302<br />

15.91 C. Hutchins: A rationale for BI-TRI octave plate tuning,<br />

Catgut Acoust. Soc. J. 1(8), 36–39 (1991), Series II<br />

15.92 E. Reissner: On axi-symmetrical vibrations of shallow<br />

spherical shells, Q. Appl. Math. 13, 279–290<br />

(1955)<br />

15.93 K.D. Marshall: Modal analysis of a violin, J. Acoust.<br />

Soc. Am. 77(2), 695–709 (1985)<br />

15.94 G. Bissinger: Contemporary generalised normal<br />

mode violin acoustics, Acustica 90, 590–599 (2004)<br />

15.95 N.J.-J. Fang, O.E. Rodgers: Violin soundpost elastic<br />

vibration, Catgut Acoust. Soc. J. 2(1), 39–40 (1992)<br />

15.96 G.A. Knott: A modal Analysis of the Violin using<br />

MSC.NASTRAM and PATRAN. MSc Thesis (Naval Postgraduate<br />

School, Monterey 1987), Reproduced in<br />

Hutchins/Benade 15.27<br />

15.97 J.P. Beldie: Dissertation (Technical University of<br />

Berlin, Berlin 1975), as described in Cremer 15.29<br />

Sect. 10.4-5<br />

15.98 J. Meyer: Die Abstimmung der Grundresonanzen<br />

von Guitarren, Das Musikinstrument 23, 179–186<br />

Part E 15

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